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Impact of Turbulence Closures and Numerical Errors for the Optimization of Flow Control Devices

机译:紊流闭塞和数值误差对流量控制装置优化的影响

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The simulation of turbulent flows including active flow control devices, such as synthetic jets, is still a difficult task. Numerical parameters (grid size, time step, etc.) may have a significant influence on the result, while the choice of the turbulence closure is often critical. In this context, we investigate the use of a Kriging-based global optimization method to determine optimal control parameters. The objective of this study is twofold: firstly, we quantify the impact of some numerical and modeling parameters on the Kriging model constructed using a design of experiment approach. In a second phase, we conduct an optimization process and measure the impact of numerical and modeling errors on the optimal control parameters found. An approach to account for some numerical errors during the optimization is finally presented. The turbulent flow over a backward facing step, including a synthetic jet actuator, is considered as test-case. The time-averaged recirculation length is considered as control criterion, while jet frequency and amplitude are optimized.
机译:包括主动射流控制装置(例如合成射流)在内的湍流模拟仍然是一项艰巨的任务。数值参数(网格大小,时间步长等)可能会对结果产生重大影响,而湍流闭合的选择通常很关键。在这种情况下,我们调查使用基于Kriging的全局优化方法来确定最佳控制参数。这项研究的目的是双重的:首先,我们量化一些数值和建模参数对使用实验方法设计构建的克里格模型的影响。在第二阶段,我们进行优化过程,并测量数值误差和建模误差对找到的最佳控制参数的影响。最后提出了一种在优化过程中解决一些数值误差的方法。朝后的台阶上的湍流(包括合成射流致动器)被视为测试案例。将平均时间的再循环长度作为控制标准,同时优化喷射频率和幅度。

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