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Topological integration of BIM and geospatial water utility networks across the building envelope

机译:BIM和地理空间水运网络跨越建筑信封的拓扑集成

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摘要

Utility networks comprise a fundamental part of our complex urban systems and the integration of digital representations of these networks across multiple spatial scales can be used to help address priority challenges. Deteriorating water utility infrastructure and low routing redundancy result in network fragility and thus supply outages when assets fail. Water distribution network configurations can be optimised for higher resilience but digital representations of the networks used for simulations and analyses are not integrated with the finer scale networks inside buildings. This integration is hindered by differences in conceptualisation and semantics employed by the relevant data standards. We suggest that the geospatial and geometric data contained in Building Information Modelling (BIM) and water distribution network (WDN) models can be used for their integration; and that this supports the use cases of optimising dynamic network partitioning, reducing the risk of underground utility strikes and planning for future network configurations with higher topological redundancy. In this study, we develop and demonstrate the application of a weight-based spatial algorithm for inferring water network connections between urban-scale WDNs and BIM models, showing that spatial data can be used in the absence of complete or consistent semantic representations. We suggest that the method has potential for transferability to infrastructure for other utility resources (such as waste water, electricity and gas) and make recommendations such as standardising the representation of connection points between disjoint utility network models and extending the normal practical spatial remit of BIM MEP modelling to encompass the space between buildings and WDNs.
机译:实用网络包括我们复杂的城市系统的基本部分,并且可以使用这些网络的数字表示的集成,可用于帮助解决优先级挑战。水实用基础设施恶化和低路由冗余导致网络脆性,从而在资产失败时供应中断。可以针对较高的弹性优化水分配网络配置,但用于模拟和分析的网络的数字表示不会与建筑物内的更精细的刻度网络集成。这种集成因相关数据标准采用的概念化和语义的差异受阻。我们建议建筑信息建模(BIM)和水分配网络(WDN)模型中包含的地理空间和几何数据可用于它们的集成;并且这支持优化动态网络分区的用例,从而降低地下实用程序罢工的风险和规划未来的拓扑冗余的未来网络配置。在本研究中,我们开发并展示了一种基于权重的空间算法来推断出城市规模WDN和BIM模型之间的水网络连接,表明空间数据可以在没有完整或一致的语义表示中使用。我们建议该方法具有对其他公用事业资源(如废水,电力和天然气)的基础设施的可转换性,并提出标准化不相交的公用事业网络模型之间的连接点的表示,并扩展了BIM的正常实用空间汇率的建议MEP建模包含建筑物和WDN之间的空间。

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  • 来源
    《Computers, Environment and Urban Systems》 |2021年第3期|101570.1-101570.12|共12页
  • 作者单位

    Newcastle Univ Newcastle Upon Tyne Tyne & Wear England;

    Newcastle Univ Urban Data Newcastle Upon Tyne Tyne & Wear England|Newcastle Univ Natl Urban Observ Facil Newcastle Newcastle Upon Tyne Tyne & Wear England;

    Newcastle Univ Natl Urban Observ Facil Newcastle Newcastle Upon Tyne Tyne & Wear England|Newcastle Univ Data Centr Civil Engn Newcastle Upon Tyne Tyne & Wear England;

    Univ Melbourne Australian Urban Res Infrastruct Network Melbourne Vic Australia;

    Ordnance Survey Southampton Hants England;

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  • 正文语种 eng
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