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Applications of a Coupled Multizone-CFD Model to Calculate Airflow and Contaminant Dispersion in Built Environments for Emergency Management

机译:多区域CFD耦合模型在建筑环境中计算气流和污染物扩散以进行应急管理的应用

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摘要

Current simulation tools for airflow and contaminant dispersion in built environments cannot provide detailed information with little computing effort, which is critical for emergency management. Multizone airflow network models are fast but cannot provide detailed flow and contaminant transport information in an indoor space. Computational fluid dynamics (CFD), on the other hand, gives very detailed information but requires hours or days of computing time on a PC. A coupled multizone-CFD model can offer detailed information on contaminant dispersion while reducing computing time. The study presented in this paper applied the coupled model to calculate airflow and contaminant dispersion in a three-story, naturally ventilated building with a large atrium, assuming that a contaminant was released in the atrium. This investigation studied the effectiveness using emergency ventilation to protect the building occupants. It was demonstrated that the coupled model can provide important information of contaminant distributions with a reasonable computing time. The information is useful for evaluating placement of contaminant sensors and determining evacuation strategies for emergency management.
机译:当前用于建筑环境中气流和污染物扩散的仿真工具无法通过很少的计算工作即可提供详细的信息,这对于应急管理至关重要。多区域气流网络模型速度很快,但无法提供室内空间的详细流量和污染物传输信息。另一方面,计算流体动力学(CFD)可以提供非常详细的信息,但在PC上需要数小时或数天的计算时间。耦合的多区域CFD模型可以提供有关污染物扩散的详细信息,同时减少了计算时间。本文提出的研究应用耦合模型来计算三层楼高,自然通风的大中庭自然通风建筑中的气流和污染物扩散,假设污染物在中庭释放。这项研究研究了使用紧急通风保护建筑物居民的有效性。结果表明,耦合模型可以在合理的计算时间内提供重要的污染物分布信息。该信息可用于评估污染物传感器的位置并确定应急管理的疏散策略。

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