一种基于BIM模型的施工单元工程量预测方法及装置

By constructing an underwater soil property database in the BIM model and combining it with environmental impact factors, the problem of traditional BIM models being unable to accurately predict the quantity of construction units in waterway construction has been solved. This has enabled high-precision, dynamically responsive prediction of the quantity of construction units, supporting construction organization optimization and cost control.

CN121145294BActive Publication Date: 2026-07-17CHANGJIANG WUHAN WATERWAY ENG CO

Patent Information

Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
CHANGJIANG WUHAN WATERWAY ENG CO
Filing Date
2025-07-30
Publication Date
2026-07-17

AI Technical Summary

Technical Problem

Traditional BIM models cannot achieve high-precision prediction of construction unit quantities in waterway construction, mainly due to the lack of a real-time update mechanism for the dynamic environment of the underwater construction site and the ability to perceive unforeseen factors during the construction process.

Method used

By acquiring physical property data of underwater soil, an initial soil property database is constructed, and dynamic quantitative updates are performed in conjunction with environmental impact factors to establish a database of soil properties to be predicted. This database is then mapped into a BIM model using a GIS-BIM fusion interface, and the impact of blasting operations is simulated using finite element analysis to achieve high-precision prediction of the engineering quantities of construction units.

Benefits of technology

It significantly improves the environmental adaptability of BIM models in predicting the quantity of construction work in waterway construction, realizes high-precision and dynamic response prediction of construction unit quantities, overcomes prediction errors caused by factors such as soil disturbance and bearing capacity differences, and supports construction organization optimization and cost control.

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Abstract

本申请提供一种基于BIM模型的施工单元工程量预测方法及装置,涉及数据处理领域。在该方法中,获取目标航道施工区域内水下土壤对应的物理特性数据;将物理特性数据输入至BIM模型中,构建得到初始土壤特性数据库;获取针对目标航道施工区域内水下土壤的影响因子;对影响因子进行量化处理,并根据量化结果对初始土壤特性数据库进行更新,得到待预测土壤特性数据库;按照待预测土壤特性数据库,对目标航道施工区域对应的施工单元工程量进行修正,得到施工单元工程量预测数据。实施本申请提供的技术方案,便于对航道施工过程中施工单元工程量进行高精度预测。
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