首页> 外文会议>2002 ASME International Mechanical Engineering Congress and Exposition , Nov 17-22, 2002, New Orleans, Louisiana >PHYSICAL AND COMPUTATIONAL MODELING FOR CHEMICAL AND BIOLOGICAL WEAPONS AIRFLOW APPLICATIONS
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PHYSICAL AND COMPUTATIONAL MODELING FOR CHEMICAL AND BIOLOGICAL WEAPONS AIRFLOW APPLICATIONS

机译:化学和生物武器气流应用的物理和计算建模

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There is a need for information on dispersion and infiltration of chemical and biological agents in complex building environments. A recent collaborative study conducted at the Idaho National Engineering and Environmental Laboratory (INEEL) and Bechtel Corporation Research and Development had the objective of assessing computational fluid dynamics (CFD) models for simulation of flow around complicated buildings through a comparison of experimental and numerical results. The test facility used in the experiments was INEEL's unique large Matched-Index-of-Refraction (MIR) flow system. The CFD code used for modeling was Fluent, a widely available commercial flow simulation package. For the experiment, a building plan was selected to approximately represent an existing facility. It was found that predicted velocity profiles from above the building and in front of the building were in good agreement with the measurements.
机译:需要关于在复杂的建筑环境中化学和生物试剂的分散和渗透的信息。爱达荷州国家工程和环境实验室(INEEL)和Bechtel Corporation研究与开发机构最近进行的一项合作研究旨在通过比较实验结果和数值结果来评估用于模拟复杂建筑物周围流动的计算流体动力学(CFD)模型。实验中使用的测试设备是INEEL独特的大型匹配折射率(MIR)流量系统。用于建模的CFD代码是Fluent,这是一种广泛使用的商业流程模拟软件包。对于实验,选择了一个建筑计划以大致代表现有设施。结果发现,从建筑物上方和建筑物前面的预测速度分布与测量值非常吻合。

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