BIM-driven power plant construction risk data linkage management system and medium

By using BIM-driven data acquisition, identification, parsing, and mapping mechanisms, the problem of inconsistent formats and granularities of multi-source risk data during the construction phase of thermal power projects has been solved, enabling unified data access and coordinated management, and improving the efficiency and collaboration of construction risk management.

CN122175344APending Publication Date: 2026-06-09HEBEI GUOHUA CANGDONG POWER CO LTD

Patent Information

Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
HEBEI GUOHUA CANGDONG POWER CO LTD
Filing Date
2026-02-03
Publication Date
2026-06-09

AI Technical Summary

Technical Problem

Existing BIM applications lack sufficient risk data linkage management during the construction phase of thermal power projects, making it difficult to achieve dynamic alignment and efficient utilization of data from different sources, with different granularities and semantics within a unified framework.

Method used

Through BIM-driven data acquisition, identification, parsing, and mapping mechanisms, parameter mapping and linkage alignment of multi-source construction risk data are achieved, including data acquisition units, identification units, instruction parsing units, parameter mapping units, and data processing units, ensuring data uniformity in format, granularity, and semantics.

Benefits of technology

It has improved the efficiency of integrating construction risk data for thermal power projects and the ability to manage cross-module collaboratively, and has achieved efficient linkage and unified access to multi-source data.

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Abstract

The application discloses a BIM-driven thermal power engineering construction risk data linkage management system and medium, belongs to the technical field of data management, wherein the system comprises: a data acquisition unit for acquiring multi-source construction data sets; a data recognition unit for outputting multi-source construction risk data sets; an instruction analysis unit for analyzing data calling instructions; a parameter mapping unit for obtaining multi-source data alignment mapping templates; a data processing unit for obtaining k sets of aligned construction risk data sets; and a data return unit for returning the k sets of aligned construction risk data sets to a risk management module. The application solves the technical problem that multi-source construction risk data is difficult to be uniformly called and linkage managed due to inconsistent formats and granularities, achieves a multi-source data parameter mapping and linkage alignment mechanism driven by BIM, and improves the integration efficiency of thermal power engineering construction risk data and the cross-module collaborative management capability.
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