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A new Lagrangian particle model for the simulation of dense gas dispersion

机译:一种新的拉格朗日粒子模型,用于模拟密集气体扩散

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摘要

A Lagrangian stochastic model (MicroSpray), able to simulate the airborne dispersion in complex terrain and in presence of obstacles, was modified to simulate the dispersion of dense gas clouds. This is accomplished by taking into account the following processes: negative buoyancy, gravity spreading and the particle's reflection at the bottom computational boundary. Elevated and ground level sources, continuous and instantaneous emissions, time varying sources, plumes with initial momentum (horizontal, vertical or oblique in any direction), plumes without initial momentum are considered. MicroSpray is part of the model system MSS, which also includes the diagnostic MicroSwift model for the reconstruction of the 3-D wind field in presence of obstacles and orography. To evaluate the MSS ability to simulate the dispersion of heavy gases, its simulation performances are compared in detail to two field experiments (Thorney Island and Kit Fox) and to a chlorine railway accident (Macdona). Then, a comprehensive analysis considering several experiments of the Modelers Data Archive is presented. The statistical analysis on the overall available data reveals that the performance of the new MicroSpray version for dense gas releases is generally reliable. For instance, the agreement between concentration predictions and observations is within a factor of two in the 72% up to 99% of the occurrences for the case studies considered. The values of other performance measures, such as correlation coefficient, geometric mean bias and geometric variance, mostly set in the ranges indicated as good-model performances in the specialized literature.
机译:修改了拉格朗日随机模型(MicroSpray),该模型能够模拟复杂地形中存在障碍物时的机载扩散,从而模拟了密集气体云的扩散。这是通过考虑以下过程来实现的:负浮力,重力扩散和底部计算边界处的粒子反射。高架和地平面源,连续和瞬时排放,时变源,初始动量(水平,垂直或任意方向倾斜)的羽流,无初始动量的羽流都应考虑在内。 MicroSpray是模型系统MSS的一部分,该系统还包括诊断性MicroSwift模型,用于在存在障碍物和地形的情况下重建3-D风场。为了评估MSS模拟重气扩散的能力,将其模拟性能与两个现场实验(Thorney Island和Kit Fox)和一次氯铁路事故(Macdona)进行了详细比较。然后,提出了一个综合分析,考虑了Modelers Data Archive的几个实验。对全部可用数据的统计分析表明,新的MicroSpray版本在致密气体释放方面的性能通常是可靠的。例如,在所考虑的案例研究中,浓度预测值和观测值之间的一致性在发生率的72%到99%之间是两倍。其他性能度量的值,例如相关系数,几何平均偏差和几何方差,大多设置在专门文献中表示为良好模型性能的范围内。

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