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Lattice-Boltzmann large-eddy simulation of pollutant dispersion in complex urban environment with dense gas effect: Model evaluation and flow analysis

机译:具有复杂气体效应的复杂城市环境中污染物扩散的Lattice-Boltzmann大涡模拟:模型评估和流量分析

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The goal of this study is to assess the performance of an innovative Lattice Boltzmann (LB) - Large Eddy Simulation (LES) approach in simulating neutral and stratified pollutant dispersion in complex urban environments. Different simulations are performed for the central area of Paris, accounting for continuous neutral or non-neutral gas releases from a circular source located in both channeled or confined flows. Predicted concentrations are compared with detailed wind tunnel measurements from the MODITIC project (FFI, 2016). Results exhibit a good qualitative and quantitative agreement between numerical and experimental data for the different configurations studied. All the estimated quality metrics match acceptance criteria. In addition, it is shown that the new LBM LES approach is able to capture and highlight the key turbulent mechanisms underlying dispersion process in and above urban areas. Hence, being based on extensive and detailed simulations and quality assurance studies, this paper highlights that the developed approach is well suited to address urban dispersion issues, including accidental chemical releases and short term exposure problems. Such results are particularly valuable to support the design and use of fast response dispersion models.
机译:这项研究的目的是评估创新的莱迪思·玻耳兹曼(LB)-大涡模拟(LES)方法在复杂城市环境中模拟中性和分层污染物扩散的性能。对巴黎市中心地区进行了不同的模拟,以说明来自位于通道或受限流中的圆形源的连续中性或非中性气体释放。将预测的浓度与来自MODITIC项目的详细风洞测量结果进行比较(FFI,2016)。对于所研究的不同配置,结果在数值和实验数据之间显示出良好的定性和定量一致性。所有估计的质量指标均符合接受标准。此外,结果表明,新的LBM LES方法能够捕获并突显城市地区及城市上方散布过程背后的关键湍流机制。因此,基于广泛而详细的模拟和质量保证研究,本文强调指出,已开发的方法非常适合解决城市分散问题,包括意外的化学品释放和短期暴露问题。这样的结果对于支持快速响应色散模型的设计和使用特别有价值。

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