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数字孪生流域框架下涉河建设项目合规性研判模型

李岸昀 许婧 黄仁勇

人民长江2025,Vol.56Issue(4):221-228,8.
人民长江2025,Vol.56Issue(4):221-228,8.DOI:10.16232/j.cnki.1001-4179.2025.04.030

数字孪生流域框架下涉河建设项目合规性研判模型

Regulatory compliance judgement model for river related construction projects based on digital twin basin

李岸昀 1许婧 1黄仁勇2

作者信息

  • 1. 长江水利委员会网络与信息中心,湖北武汉 430010||长江水利委员会流域管理数字赋能技术创新中心,湖北武汉 430010
  • 2. 长江科学院河流研究所,湖北武汉 430010||水利部长江中下游河湖治理与防洪重点实验室,湖北武汉 430010
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摘要

Abstract

In order to solve time-consuming and error prone problems of manual judgment in the administrative approval work of river related construction projects at all levels,by analyzing the core requirements of river related construction project approval,an integrated theoretical model of intelligent approval of water administrative licensing under the framework of digital twin basin was proposed.In this model,a river related construction project management data system and a five-level modeling standard were established to accurately map the proposed project to the digital twin scene in the form of virtual ground objects.Thus a regulatory compliance judgment model driven by domain knowledge was constructed.This model has been applied in the construction of dig-ital twin of Changjiang River,and has been used in the approval of river related construction projects in the Changjiang River Ba-sin.The results show that the intelligent judgement results are consistent with the actual situation,and blind spot problems in the traditional artificial mode can be identified by this model.This method has successfully supported hundreds of project approvals,and can provide theoretical reference and practical examples for similar complex approval works in other fields.

关键词

涉河建设项目/数字孪生流域/行政许可/领域知识驱动/虚拟地物/数字阴影/水域岸线空间管控/长江流域

Key words

river related construction projects/digital twin watershed/administrative licensing/domain knowledge driven/vir-tual ground objects/digital shadows/space control of water area shoreline

分类

建筑与水利

引用本文复制引用

李岸昀,许婧,黄仁勇..数字孪生流域框架下涉河建设项目合规性研判模型[J].人民长江,2025,56(4):221-228,8.

基金项目

国家重点研发计划项目(2021YFC3200305) (2021YFC3200305)

人民长江

OA北大核心

1001-4179

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