The construction industry is now facing a major cost control challenge. BIM technology has become a key approach to driving digital transformation and offers a brand-new solution to the problem of cost management. The...The construction industry is now facing a major cost control challenge. BIM technology has become a key approach to driving digital transformation and offers a brand-new solution to the problem of cost management. The article focuses on BIM technology and delves into how to achieve effective cost control in every aspect of construction. The article carefully analyzes the various stages of a construction project from start to finish, as well as the specific circumstances of information transmission and resource allocation, and clearly explains the problems of inaccurate information and slow response in traditional cost control methods. The article builds a complete cost control system that relies entirely on BIM technology, starting from how BIM technology helps design teams cooperate better, how it optimizes construction plans, and how it controls construction progress in real time. After actually using BIM technology, it is possible to share data among multiple departments and monitor progress at any time, greatly enhancing the transparency of cost control and the ability to identify problems in advance, making the allocation of project resources more scientific and the management process smoother. This cost control system has shown very high practical value and broad prospects for future development in specific tasks such as coordinating management, early detection of potential risks, and control of construction progress. The conclusions drawn from the research not only provide a solid theoretical basis for construction cost management, but also point out the correct way forward on how to improve the economic benefits of the project and ensure the quality of the project, which has very important practical significance and promotion potential.展开更多
Abstract: This paper focuses on prefabricated construction as its research subject, primarily exploring how Building Information Modeling (BIM) technology can enhance construction processes to address critical challen...Abstract: This paper focuses on prefabricated construction as its research subject, primarily exploring how Building Information Modeling (BIM) technology can enhance construction processes to address critical challenges in the current development of prefabricated buildings. The study first conducts an in-depth analysis of major issues inherent in traditional construction methods for prefabricated buildings, such as inefficient collaboration due to information silos across design, production, and construction phases, coupled with difficulties in ensuring construction precision and managing project timelines. Subsequently, the paper elaborates on BIM's powerful capabilities—including visualization, coordination, simulation, and information integration—which demonstrate its full alignment with the practical demands of industrialized and refined prefabricated construction. It further highlights BIM's significant role in elevating overall project management efficiency. Building on this foundation, the study proposes a BIM-based construction optimization methodology: creating comprehensive BIM models enables cross-disciplinary conflict detection and visual simulation of construction plans to preemptively resolve potential clashes;integrating BIM data into every stage of component manufacturing and logistics management ensures accurate prefabricated component design and seamless collaboration with supply chain partners;additionally, establishing a digital management platform that consolidates schedule and cost data facilitates thorough on-site monitoring and control. Finally, drawing on concrete experiences from real-world engineering projects, this study provides a detailed explanation of the implementation steps for BIM application solutions. Through comparative analysis and research, it is demonstrated that these optimization measures effectively enhance collaboration efficiency among all stakeholders, reduce construction errors and rework incidents, ensure construct展开更多
As the level of construction informatization continues to rise, BIM technology is bringing new directions and opportunities to cost management in engineering projects. This article focuses on the full-process manageme...As the level of construction informatization continues to rise, BIM technology is bringing new directions and opportunities to cost management in engineering projects. This article focuses on the full-process management approach for project cost control from initiation to completion, thoroughly examining the specific applications of BIM technology at each stage and its practical value. It first outlines that full-process management encompasses multiple phases, including investment estimation at project initiation, preliminary design budgeting, detailed design budgeting, cost control during bidding and procurement, and final settlement after project acceptance. The article then elaborates on the core characteristics of BIM technology—information integration, visualization, collaboration, and simulation. Next, it critically analyzes the evident shortcomings of traditional management methods, such as fragmented information, redundant data entry, slow adjustment processes, and low team coordination efficiency. A key section details how BIM technology enables rapid acquisition of complete quantity data required for investment estimation and preliminary design budgeting, significantly improving accuracy by leveraging existing price databases. In the stages of construction drawing budgeting and bidding procurement, precise 3D modeling generates detailed bill of quantities, serving as a crucial reference for setting bid control prices and calculating tender quotations. During actual construction, integrating model data with cost management systems allows real-time monitoring and adjustment of progress payments, analysis of cost changes due to contract modifications. Finally, the article summarizes ongoing challenges in the widespread adoption of BIM technology, including inconsistent technical standards, insufficient funding for hardware, inadequate expertise among professionals. It also forecasts that future BIM technology will closely integrate with emerging technologies展开更多
This article primarily examines the practical application effects of Building Information Modeling (BIM) technology during the construction phase. It meticulously outlines the key roles of BIM in construction processe...This article primarily examines the practical application effects of Building Information Modeling (BIM) technology during the construction phase. It meticulously outlines the key roles of BIM in construction processes, including utilizing highly precise 3D models to visualize a building's overall appearance, enabling cross-disciplinary collaboration among professionals based on a unified model, and identifying potential design inconsistencies and issues early. Additionally, BIM facilitates construction scheduling and resource allocation through simulated workflows and automated quantity calculations. The study thoroughly analyzes the tangible benefits of these advancements: BIM significantly enhances coordination between construction activities and overall efficiency, reduces on-site modifications caused by design errors, and enables flexible budget adjustments and scientific resource management through accurate quantity estimations and progress forecasting. Furthermore, by simulating potential safety hazards and providing safety training, BIM substantially strengthens site safety protocols and risk mitigation capabilities. However, the research also highlights challenges in widespread adoption—including inconsistent industry standards, limited BIM proficiency among practitioners, substantial upfront investment requirements, and compatibility issues between traditional project management approaches and this collaborative methodology. To better promote the widespread application of BIM technology, this article proposes concrete solutions from both external conditions and internal management perspectives, recommending that government departments and relevant associations promptly establish and refine corresponding policy and technical standard frameworks.展开更多
This paper focuses on the numerous problems of traditional two-dimensional design in municipal road and bridge engineering, such as low collaborative efficiency, information silos, and errors and omissions. It compreh...This paper focuses on the numerous problems of traditional two-dimensional design in municipal road and bridge engineering, such as low collaborative efficiency, information silos, and errors and omissions. It comprehensively studies and discusses the methods and practical applications of Building Information modeling (BIM) technology in promoting collaborative design in the design process. The article provides an in-depth analysis of the various difficulties currently encountered in the design of municipal roads and Bridges, and clearly explains the significance and urgent need of adopting the three-dimensional collaborative design approach. Build a complete collaborative design implementation framework that includes multiple professional collaboration processes, unified data standards, and appropriate platform options to ensure a smooth design process throughout. The focus is on core technologies such as parametric modeling, full professional information integration, and real-time collision detection. It elaborates on how to use BIM models to achieve efficient collaboration at various design stages and identify and handle potential design conflicts in advance. The case analysis reveals that this approach can significantly improve the quality and overall efficiency of design schemes, while also effectively reducing changes during construction, significantly speeding up the drawing process, and making construction drawings easier to implement in actual projects. BIM collaborative design not only enhances the overall level and efficiency of engineering design, but also helps control the cost and time schedule of the project, providing a very practical technical support and operational approach for the refined design and digital management model of municipal road and bridge projects.展开更多
The construction industry is experiencing accelerated digital transformation, with Building Information Modeling (BIM) technology revolutionizing interior decoration projects. This article examines how BIM technology ...The construction industry is experiencing accelerated digital transformation, with Building Information Modeling (BIM) technology revolutionizing interior decoration projects. This article examines how BIM technology integrates effectively within decoration workflows, elucidating its value, operational procedures, and foundational requirements for future development. Through a thorough review of conventional practices and workflows in past decoration projects, the study identifies multiple challenges—including incomplete data integration, inefficient cross-team communication, frequent design changes, excessive material and labor costs, and difficulties in rigorous quality control. Subsequently, the paper details BIM's core functionalities and critical advantages over traditional methods, highlighting its superior performance in achieving high-level information integration, intuitive visualization, early defect detection with design optimization, and seamless end-to-end collaboration throughout the project lifecycle. The latter part of the article provides a detailed discussion on the specific applications of BIM technology across various critical stages of renovation projects: During the design phase, collaboration among multiple professional teams enables comprehensive design completion and early identification of potential issues, resulting in more refined and thorough solutions;during construction, the established model facilitates construction process simulation, efficient scheduling, strict cost control, and seamless coordination among site personnel, significantly enhancing construction accuracy and efficiency;in the post-construction maintenance phase, the complete model offers accurate and reliable data support for equipment operation management, room layout adjustments, and routine maintenance tasks.展开更多
With the widespread adoption of Building Information Modeling (BIM) technology in the construction industry, its value in collaborative project cost management has become increasingly evident. This paper focuses on th...With the widespread adoption of Building Information Modeling (BIM) technology in the construction industry, its value in collaborative project cost management has become increasingly evident. This paper focuses on the application of BIM technology in construction cost collaboration, aiming to explore how BIM can enhance cost management efficiency and coordination levels. The paper first outlines the fundamental concepts and core functionalities of BIM technology, as well as the essence and objectives of collaborative project cost management. Building on this foundation, it provides a comprehensive analysis of the primary challenges inherent in traditional cost collaboration models—including inefficient information flow, data silos resulting from limited sharing, cumbersome and error-prone quantity take-off processes, and difficulties in dynamic cost control and multi-stakeholder coordination during project implementation.展开更多
This paper investigates the application of Building Information Modeling(BIM)technology in architectural design and its future developmental trajectories.It begins by elucidating the advantages of BIM technology compa...This paper investigates the application of Building Information Modeling(BIM)technology in architectural design and its future developmental trajectories.It begins by elucidating the advantages of BIM technology compared to conventional design methodologies.Subsequently,it examines the specific implementations of BIM technology in architectural design,highlighting its substantial contributions to improving design precision,operational efficiency,and collaborative processes.Lastly,the paper anticipates the evolutionary trends of BIM technology.Looking ahead,as artificial intelligence,blockchain,and big data technologies continue to advance,BIM technology is poised to experience further innovations and breakthroughs,thereby presenting novel opportunities and challenges for the construction sector.展开更多
BIM technology has become an important tool in road and bridge design.Through the application of BIM technology,the entire bridge process can be modeled to form a virtual bridge form.Through the simulation of bridge c...BIM technology has become an important tool in road and bridge design.Through the application of BIM technology,the entire bridge process can be modeled to form a virtual bridge form.Through the simulation of bridge construction materials,construction techniques,and construction processes,a comprehensive analysis can be conducted to achieve visualization of the design and improve the efficiency of bridge design.This article mainly analyzes the advantages of BIM technology in bridge design,explores the application forms in bridge design,and proposes strategies to optimize bridge design,providing a certain reference for the improvement and optimization of bridge design work.展开更多
With the development of China’s construction engineering industry in recent years,a lot of modern technology has emerged in the technology industry to promote the safety management of construction engineering.BIM tec...With the development of China’s construction engineering industry in recent years,a lot of modern technology has emerged in the technology industry to promote the safety management of construction engineering.BIM technology in the process of guaranteeing the quality and safety of the project,plays an important role,this paper through the analysis of BIM technology in the process of construction management of engineering projects,is how to reflect the project quality management objectives and safety management objectives,through the analysis of the importance of safety management in the construction management work,pointed out that the application of the BIM management process needs to pay attention to the main points from the management of the drawings will be examined,Special construction program management,as well as collision detection,deepening design management and other perspectives,to launch the analysis,targeted to strengthen on-site safety education,improve the skill level of on-site construction personnel and safety awareness,from a variety of perspectives,pointed out that,in the safety management of construction projects,the application of BIM technology considerations,so as to better promote the construction project to achieve the project quality management goals and safety management goals,for reference.展开更多
Driven by the goal of carbon neutrality,prefabricated buildings,as an important form of green construction,have become a key focus in the study of lifecycle carbon footprint management.Based on this,this paper starts ...Driven by the goal of carbon neutrality,prefabricated buildings,as an important form of green construction,have become a key focus in the study of lifecycle carbon footprint management.Based on this,this paper starts from the perspective of carbon footprint and combines the digital and visual advantages of BIM technology to construct a green evaluation system for prefabricated buildings.It explores the carbon emissions in each stage of the building and proposes corresponding improvement measures,aiming to provide necessary references for the low-carbon transformation of prefabricated buildings.展开更多
This paper expounds the characteristics of BIM technology,including visualization,parameterization,and collaboration.It analyzes the quality control requirements of real estate projects and the problems of the traditi...This paper expounds the characteristics of BIM technology,including visualization,parameterization,and collaboration.It analyzes the quality control requirements of real estate projects and the problems of the traditional control system.It introduces the quality control strategies based on BIM,such as constructing the framework,combining with technologies to control deviations,etc.It also mentions the PDCA mechanism,application terminals,etc.,and points out the application obstacles and future development directions.展开更多
With the rapid advancement of information technology,Building Information Modeling(BIM)is being increasingly utilized in the construction industry,demonstrating significant potential and value in construction operatio...With the rapid advancement of information technology,Building Information Modeling(BIM)is being increasingly utilized in the construction industry,demonstrating significant potential and value in construction operations and maintenance management.Based on this,this paper conducts an in-depth discussion on BIM technology in building operation and maintenance management,analyzing its challenges and countermeasures,with the aim of providing readers with useful insights and references.展开更多
In order to improve the implementability of municipal road design,the rational application of BIM Technology in the process of road design is a common method in current road engineering design units.The advantages of ...In order to improve the implementability of municipal road design,the rational application of BIM Technology in the process of road design is a common method in current road engineering design units.The advantages of BIM Technology,such as visualization,simulation,coordination and optimization,are increasingly recognized by the industry.In this paper,the author draws on many years of practical experience to introduce the advantages of BIM Technology,as well as how to apply BIM Technology to optimize municipal road design work and to discuss some views,in the hopes of assisting in the further improvement of the level of municipal road constructions in China.展开更多
This paper discusses the digital application of building information model(BIM)technology in the architectural design stage.Taking the large-scale comprehensive development project of Guangxi headquarters base as an e...This paper discusses the digital application of building information model(BIM)technology in the architectural design stage.Taking the large-scale comprehensive development project of Guangxi headquarters base as an example,this paper analyzes in detail how BIM technology promotes the intelligence and refinement of the design process.Through the threedimensional modeling and simulation analysis of BIM technology,the project design has realized the accurate transformation from concept to operation,which not only improves the design efficiency,but also ensures the construction quality and economic benefits.This paper focuses on the application of BIM in the digital design of building structure,the deepening design of steel nodes,as well as the remarkable results in the comprehensive layout optimization of mechanical and electrical pipelines.Through the collision detection and optimization design of the BIM model,the potential design conflicts and construction problems were found and solved at the initial stage of the project,ensuring the efficient promotion and smooth implementation of the project.The research results show that BIM technology,as the core digital tool in the architectural design stage,is of great significance for improving the overall design level of the construction industry and realizing intelligent construction.展开更多
With the rapid development of urban rail transit,the traditional operation and maintenance methods mainly rely on manpower,and the pressure on equipment operation and maintenance is increasing,and the low work efficie...With the rapid development of urban rail transit,the traditional operation and maintenance methods mainly rely on manpower,and the pressure on equipment operation and maintenance is increasing,and the low work efficiency,high intensity and high operating costs have always been the main problems at this stage.Through BIM visualization technology can effectively solve those problems,the operation and maintenance mode of urban rail signal equipment at this stage is discussed,the integration and visualization of BIM technology are used to make the judgments and early warnings on the maintenance of urban rail signal equipment,and play a positive and important role in operation and maintenance work,this research result can provide ideas and references for urban rail transit operation and maintenance in the new era.展开更多
Today we are in a technologically explosive information society. The cross- border integration of manufacturing and construction is prefabricated buildings. The cross-border integration of construction and IT is ...Today we are in a technologically explosive information society. The cross- border integration of manufacturing and construction is prefabricated buildings. The cross-border integration of construction and IT is BIM technology, and the emergence of BIM technology provides new ideas for prefabricated building, and the integration of prefabricated building and BIM technology realizes the construction industrialization. This paper studies the application of BIM technology in prefabricated buildings, including the design phase, construction and assembly phase, operation and maintenance phase, and application analysis of related software, so as to improve the high efficiency, high quality and high precision development of prefabricated projects, and promote domestic green environmental protection. The development of the construction industry provides reference value for the application of BIM technology in prefabricated buildings.展开更多
Gansu Province is a large province in Western China, and its geographical location and economic status are very important. With the state’s attention to the western development, the economy of the western region repr...Gansu Province is a large province in Western China, and its geographical location and economic status are very important. With the state’s attention to the western development, the economy of the western region represented by Gansu Province has developed rapidly, and the construction of roads and other infrastructure has also been developed. Taking Gansu Province as an example, this paper studies and discusses the application of highway maintenance platform based on GIS + BIM Technology. Firstly, this paper expounds the advantages of GIS + BIM Technology in highway construction and maintenance, and analyzes the development status of GIS + BIM Technology;Secondly, it expounds how to solve the problem of highway maintenance from the aspects of GIS + BIM system and its advantages and difficulties in highway maintenance, and briefly explains the difficulties existing in highway maintenance in Gansu Province. Then, starting from the path of GIS + BIM Technology to solve highway maintenance in Gansu Province, this paper analyzes the expected effect of GIS + BIM Technology in highway maintenance in Gansu Province.展开更多
In the rapid development of modern cities, the construction of green low-car- bon livable cities and the realization of energy-saving and beautification of buildings are now being strongly promoted and ...In the rapid development of modern cities, the construction of green low-car- bon livable cities and the realization of energy-saving and beautification of buildings are now being strongly promoted and havebecome an important indicator of urban development. With the implementation of green building and BIM technology, the combination of BIM technology with green building is a new momentum in the development of the construction industry. The application of BIM can make the quantitative management of green buildings in the whole life cycle, get rid of the shackles of traditional models, make the design and construction process more accurate, and also make the whole process of green buildings more standardized. Among them, the core of BIM is the information model, and the core of green building is: low energy consumption, green and sustainable. This paper firstly explains the concepts and advantages of BIM technology and green building, and separately elaborates the significance of using both in the construction field. Secondly, the current development status of BIM technology and green building is obtained by studying and analyzing the development status and connection between them. Finally, combining BIM technology in the whole life cycle of green building, analyzing the current situation and advantages and disadvantages of using the combination of green building and BIM in actual engineering, clarifying the importance of using BIM in the whole life cycle of green building, and highlighting the combination of BIM technology and the whole life cycle of green building as an important tool for the future development of the construction industry.展开更多
Bridge engineering is highly specialized and has spatial characteristics,which puts forward higher requirements for design work.The advancement of information technology has provided ample tools to facilitate bridge d...Bridge engineering is highly specialized and has spatial characteristics,which puts forward higher requirements for design work.The advancement of information technology has provided ample tools to facilitate bridge design work,with building information modeling(BIM)technology being one of them.BIM technology ensures the efficiency and quality of the forward design of bridges,while also reducing construction costs.This article starts with defining the concept of BIM technology,followed by a discussion on its advantages in bridge design and application process,which serves as a reference for other bridge designers.展开更多
摘要The construction industry is now facing a major cost control challenge. BIM technology has become a key approach to driving digital transformation and offers a brand-new solution to the problem of cost management. The article focuses on BIM technology and delves into how to achieve effective cost control in every aspect of construction. The article carefully analyzes the various stages of a construction project from start to finish, as well as the specific circumstances of information transmission and resource allocation, and clearly explains the problems of inaccurate information and slow response in traditional cost control methods. The article builds a complete cost control system that relies entirely on BIM technology, starting from how BIM technology helps design teams cooperate better, how it optimizes construction plans, and how it controls construction progress in real time. After actually using BIM technology, it is possible to share data among multiple departments and monitor progress at any time, greatly enhancing the transparency of cost control and the ability to identify problems in advance, making the allocation of project resources more scientific and the management process smoother. This cost control system has shown very high practical value and broad prospects for future development in specific tasks such as coordinating management, early detection of potential risks, and control of construction progress. The conclusions drawn from the research not only provide a solid theoretical basis for construction cost management, but also point out the correct way forward on how to improve the economic benefits of the project and ensure the quality of the project, which has very important practical significance and promotion potential.
摘要Abstract: This paper focuses on prefabricated construction as its research subject, primarily exploring how Building Information Modeling (BIM) technology can enhance construction processes to address critical challenges in the current development of prefabricated buildings. The study first conducts an in-depth analysis of major issues inherent in traditional construction methods for prefabricated buildings, such as inefficient collaboration due to information silos across design, production, and construction phases, coupled with difficulties in ensuring construction precision and managing project timelines. Subsequently, the paper elaborates on BIM's powerful capabilities—including visualization, coordination, simulation, and information integration—which demonstrate its full alignment with the practical demands of industrialized and refined prefabricated construction. It further highlights BIM's significant role in elevating overall project management efficiency. Building on this foundation, the study proposes a BIM-based construction optimization methodology: creating comprehensive BIM models enables cross-disciplinary conflict detection and visual simulation of construction plans to preemptively resolve potential clashes;integrating BIM data into every stage of component manufacturing and logistics management ensures accurate prefabricated component design and seamless collaboration with supply chain partners;additionally, establishing a digital management platform that consolidates schedule and cost data facilitates thorough on-site monitoring and control. Finally, drawing on concrete experiences from real-world engineering projects, this study provides a detailed explanation of the implementation steps for BIM application solutions. Through comparative analysis and research, it is demonstrated that these optimization measures effectively enhance collaboration efficiency among all stakeholders, reduce construction errors and rework incidents, ensure construct
摘要As the level of construction informatization continues to rise, BIM technology is bringing new directions and opportunities to cost management in engineering projects. This article focuses on the full-process management approach for project cost control from initiation to completion, thoroughly examining the specific applications of BIM technology at each stage and its practical value. It first outlines that full-process management encompasses multiple phases, including investment estimation at project initiation, preliminary design budgeting, detailed design budgeting, cost control during bidding and procurement, and final settlement after project acceptance. The article then elaborates on the core characteristics of BIM technology—information integration, visualization, collaboration, and simulation. Next, it critically analyzes the evident shortcomings of traditional management methods, such as fragmented information, redundant data entry, slow adjustment processes, and low team coordination efficiency. A key section details how BIM technology enables rapid acquisition of complete quantity data required for investment estimation and preliminary design budgeting, significantly improving accuracy by leveraging existing price databases. In the stages of construction drawing budgeting and bidding procurement, precise 3D modeling generates detailed bill of quantities, serving as a crucial reference for setting bid control prices and calculating tender quotations. During actual construction, integrating model data with cost management systems allows real-time monitoring and adjustment of progress payments, analysis of cost changes due to contract modifications. Finally, the article summarizes ongoing challenges in the widespread adoption of BIM technology, including inconsistent technical standards, insufficient funding for hardware, inadequate expertise among professionals. It also forecasts that future BIM technology will closely integrate with emerging technologies
摘要This article primarily examines the practical application effects of Building Information Modeling (BIM) technology during the construction phase. It meticulously outlines the key roles of BIM in construction processes, including utilizing highly precise 3D models to visualize a building's overall appearance, enabling cross-disciplinary collaboration among professionals based on a unified model, and identifying potential design inconsistencies and issues early. Additionally, BIM facilitates construction scheduling and resource allocation through simulated workflows and automated quantity calculations. The study thoroughly analyzes the tangible benefits of these advancements: BIM significantly enhances coordination between construction activities and overall efficiency, reduces on-site modifications caused by design errors, and enables flexible budget adjustments and scientific resource management through accurate quantity estimations and progress forecasting. Furthermore, by simulating potential safety hazards and providing safety training, BIM substantially strengthens site safety protocols and risk mitigation capabilities. However, the research also highlights challenges in widespread adoption—including inconsistent industry standards, limited BIM proficiency among practitioners, substantial upfront investment requirements, and compatibility issues between traditional project management approaches and this collaborative methodology. To better promote the widespread application of BIM technology, this article proposes concrete solutions from both external conditions and internal management perspectives, recommending that government departments and relevant associations promptly establish and refine corresponding policy and technical standard frameworks.
摘要This paper focuses on the numerous problems of traditional two-dimensional design in municipal road and bridge engineering, such as low collaborative efficiency, information silos, and errors and omissions. It comprehensively studies and discusses the methods and practical applications of Building Information modeling (BIM) technology in promoting collaborative design in the design process. The article provides an in-depth analysis of the various difficulties currently encountered in the design of municipal roads and Bridges, and clearly explains the significance and urgent need of adopting the three-dimensional collaborative design approach. Build a complete collaborative design implementation framework that includes multiple professional collaboration processes, unified data standards, and appropriate platform options to ensure a smooth design process throughout. The focus is on core technologies such as parametric modeling, full professional information integration, and real-time collision detection. It elaborates on how to use BIM models to achieve efficient collaboration at various design stages and identify and handle potential design conflicts in advance. The case analysis reveals that this approach can significantly improve the quality and overall efficiency of design schemes, while also effectively reducing changes during construction, significantly speeding up the drawing process, and making construction drawings easier to implement in actual projects. BIM collaborative design not only enhances the overall level and efficiency of engineering design, but also helps control the cost and time schedule of the project, providing a very practical technical support and operational approach for the refined design and digital management model of municipal road and bridge projects.
摘要The construction industry is experiencing accelerated digital transformation, with Building Information Modeling (BIM) technology revolutionizing interior decoration projects. This article examines how BIM technology integrates effectively within decoration workflows, elucidating its value, operational procedures, and foundational requirements for future development. Through a thorough review of conventional practices and workflows in past decoration projects, the study identifies multiple challenges—including incomplete data integration, inefficient cross-team communication, frequent design changes, excessive material and labor costs, and difficulties in rigorous quality control. Subsequently, the paper details BIM's core functionalities and critical advantages over traditional methods, highlighting its superior performance in achieving high-level information integration, intuitive visualization, early defect detection with design optimization, and seamless end-to-end collaboration throughout the project lifecycle. The latter part of the article provides a detailed discussion on the specific applications of BIM technology across various critical stages of renovation projects: During the design phase, collaboration among multiple professional teams enables comprehensive design completion and early identification of potential issues, resulting in more refined and thorough solutions;during construction, the established model facilitates construction process simulation, efficient scheduling, strict cost control, and seamless coordination among site personnel, significantly enhancing construction accuracy and efficiency;in the post-construction maintenance phase, the complete model offers accurate and reliable data support for equipment operation management, room layout adjustments, and routine maintenance tasks.
摘要With the widespread adoption of Building Information Modeling (BIM) technology in the construction industry, its value in collaborative project cost management has become increasingly evident. This paper focuses on the application of BIM technology in construction cost collaboration, aiming to explore how BIM can enhance cost management efficiency and coordination levels. The paper first outlines the fundamental concepts and core functionalities of BIM technology, as well as the essence and objectives of collaborative project cost management. Building on this foundation, it provides a comprehensive analysis of the primary challenges inherent in traditional cost collaboration models—including inefficient information flow, data silos resulting from limited sharing, cumbersome and error-prone quantity take-off processes, and difficulties in dynamic cost control and multi-stakeholder coordination during project implementation.
基金Scientific and Technological Research Program of Chongqing Municipal Education Commission(Project No.:KJQN202301907)。
摘要This paper investigates the application of Building Information Modeling(BIM)technology in architectural design and its future developmental trajectories.It begins by elucidating the advantages of BIM technology compared to conventional design methodologies.Subsequently,it examines the specific implementations of BIM technology in architectural design,highlighting its substantial contributions to improving design precision,operational efficiency,and collaborative processes.Lastly,the paper anticipates the evolutionary trends of BIM technology.Looking ahead,as artificial intelligence,blockchain,and big data technologies continue to advance,BIM technology is poised to experience further innovations and breakthroughs,thereby presenting novel opportunities and challenges for the construction sector.
摘要BIM technology has become an important tool in road and bridge design.Through the application of BIM technology,the entire bridge process can be modeled to form a virtual bridge form.Through the simulation of bridge construction materials,construction techniques,and construction processes,a comprehensive analysis can be conducted to achieve visualization of the design and improve the efficiency of bridge design.This article mainly analyzes the advantages of BIM technology in bridge design,explores the application forms in bridge design,and proposes strategies to optimize bridge design,providing a certain reference for the improvement and optimization of bridge design work.
摘要With the development of China’s construction engineering industry in recent years,a lot of modern technology has emerged in the technology industry to promote the safety management of construction engineering.BIM technology in the process of guaranteeing the quality and safety of the project,plays an important role,this paper through the analysis of BIM technology in the process of construction management of engineering projects,is how to reflect the project quality management objectives and safety management objectives,through the analysis of the importance of safety management in the construction management work,pointed out that the application of the BIM management process needs to pay attention to the main points from the management of the drawings will be examined,Special construction program management,as well as collision detection,deepening design management and other perspectives,to launch the analysis,targeted to strengthen on-site safety education,improve the skill level of on-site construction personnel and safety awareness,from a variety of perspectives,pointed out that,in the safety management of construction projects,the application of BIM technology considerations,so as to better promote the construction project to achieve the project quality management goals and safety management goals,for reference.
摘要Driven by the goal of carbon neutrality,prefabricated buildings,as an important form of green construction,have become a key focus in the study of lifecycle carbon footprint management.Based on this,this paper starts from the perspective of carbon footprint and combines the digital and visual advantages of BIM technology to construct a green evaluation system for prefabricated buildings.It explores the carbon emissions in each stage of the building and proposes corresponding improvement measures,aiming to provide necessary references for the low-carbon transformation of prefabricated buildings.
摘要This paper expounds the characteristics of BIM technology,including visualization,parameterization,and collaboration.It analyzes the quality control requirements of real estate projects and the problems of the traditional control system.It introduces the quality control strategies based on BIM,such as constructing the framework,combining with technologies to control deviations,etc.It also mentions the PDCA mechanism,application terminals,etc.,and points out the application obstacles and future development directions.
基金“Research on Operation and Maintenance Management Technology based on BIM and GIS for the Research Basic Ability Improvement Project of Young and Middle-aged Teachers in Universities in Guangxi in 2024--Taking a building in Guilin as an example”(Project No.:2024KY1760)School-level Scientific Research Project of Nanning University of Technology in 2023,“Research on BIM Based Energy Consumption Management Mode of Building Operation and Maintenance”(Project No.:KY202306)。
摘要With the rapid advancement of information technology,Building Information Modeling(BIM)is being increasingly utilized in the construction industry,demonstrating significant potential and value in construction operations and maintenance management.Based on this,this paper conducts an in-depth discussion on BIM technology in building operation and maintenance management,analyzing its challenges and countermeasures,with the aim of providing readers with useful insights and references.
摘要In order to improve the implementability of municipal road design,the rational application of BIM Technology in the process of road design is a common method in current road engineering design units.The advantages of BIM Technology,such as visualization,simulation,coordination and optimization,are increasingly recognized by the industry.In this paper,the author draws on many years of practical experience to introduce the advantages of BIM Technology,as well as how to apply BIM Technology to optimize municipal road design work and to discuss some views,in the hopes of assisting in the further improvement of the level of municipal road constructions in China.
基金The 2023 Guangxi University Young and Middle-Aged Teachers’Scientific Research Basic Ability Improvement Project“Research on Seismic Performance of Prefabricated CFST Column-SRC Beam Composite Joints”(Project No.2023KY1204)The 2023 Guangxi Vocational Education Teaching Reform Research Project“Research and Practice on the Cultivation of Digital Talents in Prefabricated Buildings in the Context of Deepening the Integration of Industry and Education”(Project No.GXGZJG2023B052)The 2022 Guangxi Polytechnic of Construction School-Level Teaching Innovation Team Project“Prefabricated and Intelligent Teaching Innovation Team”(Project No.Gui Jian Yuan Ren[2022]No.15)。
摘要This paper discusses the digital application of building information model(BIM)technology in the architectural design stage.Taking the large-scale comprehensive development project of Guangxi headquarters base as an example,this paper analyzes in detail how BIM technology promotes the intelligence and refinement of the design process.Through the threedimensional modeling and simulation analysis of BIM technology,the project design has realized the accurate transformation from concept to operation,which not only improves the design efficiency,but also ensures the construction quality and economic benefits.This paper focuses on the application of BIM in the digital design of building structure,the deepening design of steel nodes,as well as the remarkable results in the comprehensive layout optimization of mechanical and electrical pipelines.Through the collision detection and optimization design of the BIM model,the potential design conflicts and construction problems were found and solved at the initial stage of the project,ensuring the efficient promotion and smooth implementation of the project.The research results show that BIM technology,as the core digital tool in the architectural design stage,is of great significance for improving the overall design level of the construction industry and realizing intelligent construction.
摘要With the rapid development of urban rail transit,the traditional operation and maintenance methods mainly rely on manpower,and the pressure on equipment operation and maintenance is increasing,and the low work efficiency,high intensity and high operating costs have always been the main problems at this stage.Through BIM visualization technology can effectively solve those problems,the operation and maintenance mode of urban rail signal equipment at this stage is discussed,the integration and visualization of BIM technology are used to make the judgments and early warnings on the maintenance of urban rail signal equipment,and play a positive and important role in operation and maintenance work,this research result can provide ideas and references for urban rail transit operation and maintenance in the new era.
摘要Today we are in a technologically explosive information society. The cross- border integration of manufacturing and construction is prefabricated buildings. The cross-border integration of construction and IT is BIM technology, and the emergence of BIM technology provides new ideas for prefabricated building, and the integration of prefabricated building and BIM technology realizes the construction industrialization. This paper studies the application of BIM technology in prefabricated buildings, including the design phase, construction and assembly phase, operation and maintenance phase, and application analysis of related software, so as to improve the high efficiency, high quality and high precision development of prefabricated projects, and promote domestic green environmental protection. The development of the construction industry provides reference value for the application of BIM technology in prefabricated buildings.
摘要Gansu Province is a large province in Western China, and its geographical location and economic status are very important. With the state’s attention to the western development, the economy of the western region represented by Gansu Province has developed rapidly, and the construction of roads and other infrastructure has also been developed. Taking Gansu Province as an example, this paper studies and discusses the application of highway maintenance platform based on GIS + BIM Technology. Firstly, this paper expounds the advantages of GIS + BIM Technology in highway construction and maintenance, and analyzes the development status of GIS + BIM Technology;Secondly, it expounds how to solve the problem of highway maintenance from the aspects of GIS + BIM system and its advantages and difficulties in highway maintenance, and briefly explains the difficulties existing in highway maintenance in Gansu Province. Then, starting from the path of GIS + BIM Technology to solve highway maintenance in Gansu Province, this paper analyzes the expected effect of GIS + BIM Technology in highway maintenance in Gansu Province.
摘要In the rapid development of modern cities, the construction of green low-car- bon livable cities and the realization of energy-saving and beautification of buildings are now being strongly promoted and havebecome an important indicator of urban development. With the implementation of green building and BIM technology, the combination of BIM technology with green building is a new momentum in the development of the construction industry. The application of BIM can make the quantitative management of green buildings in the whole life cycle, get rid of the shackles of traditional models, make the design and construction process more accurate, and also make the whole process of green buildings more standardized. Among them, the core of BIM is the information model, and the core of green building is: low energy consumption, green and sustainable. This paper firstly explains the concepts and advantages of BIM technology and green building, and separately elaborates the significance of using both in the construction field. Secondly, the current development status of BIM technology and green building is obtained by studying and analyzing the development status and connection between them. Finally, combining BIM technology in the whole life cycle of green building, analyzing the current situation and advantages and disadvantages of using the combination of green building and BIM in actual engineering, clarifying the importance of using BIM in the whole life cycle of green building, and highlighting the combination of BIM technology and the whole life cycle of green building as an important tool for the future development of the construction industry.
摘要Bridge engineering is highly specialized and has spatial characteristics,which puts forward higher requirements for design work.The advancement of information technology has provided ample tools to facilitate bridge design work,with building information modeling(BIM)technology being one of them.BIM technology ensures the efficiency and quality of the forward design of bridges,while also reducing construction costs.This article starts with defining the concept of BIM technology,followed by a discussion on its advantages in bridge design and application process,which serves as a reference for other bridge designers.