Abstract

The power transmission and transformation project is the carrier of power energy transmission and plays an important role in supporting economic development and improving people's living standards. Based on the application status of BIM technology and the actual situation in power transmission and transformation projects, this paper combs the application fields of BIM technology from the perspective of the whole process of project construction, and constructs an index system based on the construction effect of the whole process of the project. The analytic hierarchy process is used to calculate the index weights, and the expert scoring method is used to evaluate the effects of different projects according to the actual situation, so as to enhance the application scope of BIM technology in the construction of power transmission and transformation projects. The research results of this paper can provide support and reference for the establishment of a construction digital model covering the entire process and resources of a power project, and a BIM system suitable for the power industry.

Highlights

  • BIM (Building Information Modeling) has been continuously applied in some foreign projects in recent years, and its direct economic and social benefits have become increasingly obvious

  • The power transmission and transformation project is the carrier of power energy transmission and plays an important role in supporting economic development and improving people's living standards

  • Based on the application status of BIM technology and the actual situation in power transmission and transformation projects, this paper combs the application fields of BIM technology from the perspective of the whole process of project construction, and constructs an index system based on the construction effect of the whole process of the project

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Summary

Introduction

BIM (Building Information Modeling) has been continuously applied in some foreign projects in recent years, and its direct economic and social benefits have become increasingly obvious. The analytic hierarchy process is used to calculate the index weights, and the expert scoring method is used to evaluate the effects of different projects according to the actual situation, so as to enhance the application scope of BIM technology in the construction of power transmission and transformation projects.

Results
Conclusion

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