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图学学报 ›› 2022, Vol. 43 ›› Issue (5): 918-926.DOI: 10.11996/JG.j.2095-302X.2022050918

• 建筑与城市信息模型 • 上一篇    下一篇

基于 BIM 和本体的建筑不规则类型审查

  

  1. 1. 上海交通大学船舶海洋与建筑工程学院,上海 200240;  2. 上海市公共建筑和基础设施数字化运维重点实验室,上海 200240;  3. 上海市城市建设设计研究总院(集团)有限公司,上海 200125
  • 出版日期:2022-10-31 发布日期:2022-10-28
  • 基金资助:
    重庆市自然科学基金项目(CSTC2021JCYJ-MSXMX0986);基于BIM+AI的智慧化建筑抗震管理系统关键技术研究项目(沪住建管科 2020-009-005);电网工程BIM关键技术国产化研究与应用项目(5200-202156486A-0-5-ZN) 

Research of BIM and ontology-based irregular building type checking 

  1. 1. School of Naval Architecture, Ocean and Civil Engineering, Shanghai Jiao Tong University, Shanghai 200240, China;  2. Shanghai Key Laboratory for Digital Maintenance of Buildings and Infrastructure, Shanghai 200240, China;  3. Shanghai Urban Construction Design & Research Institute (Group) Co., Ltd., Shanghai 200125, China
  • Online:2022-10-31 Published:2022-10-28
  • Supported by:
    Natural Science Foundation of Chongqing (CSTC2021JCYJ-MSXMX0986); BIM+AI Based Intelligent Building Seismic Management System Key Technologies Research (Urban & Rural Construction Management Department of Shanghai Residential Construction Bureau 2020-009-005); Research and Application of Localization of BIM Key Technology in Power Grid Engineering (5200-202156486A-0-5-ZN) 

摘要:

建筑不规则类型审查是建筑抗震审查的重要组成部分,对建筑抗震安全有重要意义。为提高审查 效率和准确性,提出一套基于建筑信息模型(BIM)和本体的建筑不规则类型审查方法。首先解析梳理建筑不规则 类型审查规范条文,然后将规范条文转译成计算机可识别的语义审查规则,并根据审查逻辑构建建筑不规则类型 审查本体;其次从待审查建筑的 BIM 文件中抽取审查信息,如楼层开洞面积,基于模板匹配算法从结构计算书 自动抽取审查所需计算结果参数,如扭转位移比;接着基于建筑不规则类型审查本体组织审查信息,利用审查规 则推理获得审查结果,进而生成审查报告。最后以某建筑为例验证了该方法的可行性和较强地扩展能力,为进一 步实现建筑抗震审查的自动化奠定了技术基础。

关键词: 合规审查, 建筑不规则, 建筑信息模型, 工业基础类, 本体

Abstract:

 Irregular building type checking is a significant part of building checking for seismic compliance, which is of immense significance to buildings’ seismic safety. An approach based on building information modeling (BIM) and ontology was proposed for identifying irregular building types, thus boosting efficiency and accuracy. Firstly, the rules for checking irregular building types were analyzed and then translated into semantic compliance checking rules that could be recognized by the computer. Meanwhile, the irregular building type checking ontology was created to represent the checking logic. Secondly, the building information model’s information to be checked was extracted using automatic parsing, such as floor opening area, and such information was extracted from the building finite element analysis result parameters by the pattern matching algorithm, such as torsional displacement ratio. The extracted information was organized on the basis of the proposed irregular building type checking ontology. Next, the sematic reasoning was utilized to obtain the checking results and generate the checking reports. Finally, a designed building was taken as an example to verify the feasibility and strong expansion ability of the proposed method, which could lay a technical foundation for further realizing the automatic building checking for seismic compliance. 

Key words: compliance checking, building irregularity, building information model, industry foundation class, ontology

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