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NUMERICAL VALIDATION OF A NEW METHODOLOGY FOR THE GENERATION OF REALISTIC TURBULENT INFLOW CONDITIONS FOR LES

机译:产生真实湍流入流条件的新方法的数值验证

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摘要

Due to the difficulty of specifying realistic inflow conditions for numerical simulations, a new method has been recently developed permitting to use time-dependent highly turbulent velocity field as inflow condition for spatially developing Large Eddy Simulation. This methodology is based on experimental time histories obtained at few selected reference locations with hot wires probes. From these measurements, the instantaneous velocity field is reconstructed on the inlet mesh of a numerical simulation and this reconstructed field is used as inflow condition for the simulation. The objective of this work is to validate the present methodology by using a purely numerical approach, based on Direct Numerical Simulation, in which experimental data are replaced by numerical data. Based on statistical analysis and instantaneous vorticity field visualizations, current nu- merical validation provides promising results for this nuw inflow condition generation method based on real experimental data.
机译:由于难以为数值模拟指定实际的流入条件,因此最近开发了一种新方法,该方法允许使用与时间相关的高度湍流速度场作为空间条件来开发大型涡流模拟。该方法基于使用热线探针在几个选定参考位置获得的实验时间历史。通过这些测量,在数值模拟的入口网格上重建了瞬时速度场,并将该重建场用作模拟的流入条件。这项工作的目的是通过基于直接数值模拟的纯数值方法来验证本方法,其中将实验数据替换为数值数据。基于统计分析和瞬时涡度场可视化,当前的数值验证为这种基于真实实验数据的岩浆流入条件生成方法提供了有希望的结果。

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