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THE EFFECT OF THE COMPUTATIONAL GRID SIZE ON THE PREDICTION OF A FLAMMABLE CLOUD DISPERSION

机译:计算网格大小对可燃云散布预测的影响

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The consequence analysis is used to define the extent and nature of effects caused by undesired events being of great help when quantifying the damage caused by such events. For the case of leaking of flammable and/or toxic materials, effects are analyzed for explosions, fires and toxicity. Specific models are used to analyze the spills or jets of gas or liquids, gas dispersions, explosions and fires. The central step in the analysis of consequences in such cases is to determine the concentration of the vapor cloud of hazardous substances released into the atmosphere, in space and time. With the computational advances, CFD tools are being used to simulate short and medium scale gas dispersion events, especially in scenarios where there is a complex geometry. However, the accuracy of the simulation strongly depends on diverse simulation parameters, being of particular importance the grid resolution. This study investigates the effects of the computational grid size on the prediction of a cloud dispersion considering both the accuracy and the computational cost. Experimental data is compared with the predicted values obtained by means of CFD simulation, exploring and discussing the influence of the grid size on cloud concentration the predicted values. This study contributes to optimize CFD simulation settings concerning grid definition when applied to analyses of consequences in environments with complex geometry.
机译:结果分析用于定义不希望发生的事件造成的影响的程度和性质,在量化此类事件造成的损害时非常有帮助。对于易燃和/或有毒物质泄漏的情况,分析爆炸,火灾和毒性的影响。特定模型用于分析气体或液体的溢出或喷射,气体扩散,爆炸和火灾。在这种情况下后果分析的中心步骤是确定在空间和时间上释放到大气中的有害物质蒸气云的浓度。随着计算的进步,CFD工具被用于模拟中短尺度的气体扩散事件,特别是在几何形状复杂的情况下。但是,仿真的精度在很大程度上取决于各种仿真参数,网格分辨率尤其重要。这项研究调查了计算网格大小对云散布预测的影响,同时考虑了准确性和计算成本。将实验数据与通过CFD模拟获得的预测值进行比较,探讨并讨论了网格大小对云浓度的影响。这项研究在应用于复杂几何环境中的后果分析时,有助于优化有关网格定义的CFD模拟设置。

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