Research on the Application of BIM Technology in the Integration of Operation and Maintenance of Lianyungang-Zhenjiang Railway
As an important national transportation infrastructure,the construction,operation and maintenance of high-speed railways face enormous challenges,including high technical complexity,high construction difficulty,and strict requirements for operation and maintenance management.In order to improve the quality and efficiency of railway engineering construction,operation and maintenance,and achieve the full stage application of data,the Lianyungang-Zhenjiang Railway Project was taken as the research object.Based on the characteristics of railway engineering construction and the needs of operation and maintenance management,the application routes and effects of BIM technology in the construction,operation and maintenance integration were analyzed.The results show that by unifying BIM model standards,deepening BIM models,and building BIM information collaboration platforms,high-quality and rapid construction of projects such as pile caps,piers,and No.0 block can be achieved.By inputting operation and maintenance parameters to deepen the model,the data generated during the construction period can be directly applied in the operation and maintenance stage,which avoids information loss and damage,and improves data utilization efficiency.All participating management personnel can view the construction progress,construction quality,and equipment operation status through the platform,and monitor the operation status and performance indicators of key equipment in real time.This achieves real-time management of on-site operations and different equipment,improves operation and maintenance efficiency and response speed,effectively controls operation and maintenance costs,extends equipment life,and provides solid support for the safe and efficient operation of the railway system.
high-speed railwayoperation and maintenance managementbuilding integrated operation and maintenanceBIM information collaboration platform