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首页> 外文期刊>Journal of Fluids Engineering: Transactions of the ASME >Optimization of Flow Control Parameters Over SD7003 Airfoil With Synthetic Jet Actuator
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Optimization of Flow Control Parameters Over SD7003 Airfoil With Synthetic Jet Actuator

机译:用合成射流执行器优化SD7003翼型流量控制参数

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摘要

An optimization study was conducted to find the optimum operational characteristics of a synthetic jet actuator (SJA) to postpone the static stall separation over an SD7003 airfoil at Reynolds number of 60,000. A genetic algorithm (GA) coupled with an artificial neural network (ANN) was employed. Aerodynamic performance (L/D) was chosen as the objective function. Both tangent to the boundary layer (TBL) and the cross to the boundary layer (CBL) configurations of SJA were used and their effectiveness in separation control were compared. The following design variables of the SJA were allowed to change within a predetermined range: location, the opening length, the injection velocity amplitude, the injection angle, and the nondimensional frequency. It was found that for location, opening length, and velocity amplitude ratio, a narrow range near the peak optimum values achieved the best performance. However, for the nondimensional frequency and jet injection angle, the optimum values providing highest performance were in a wider range of values. Activation of SJ actuator improved the aerodynamic performance of the airfoil significantly. However, TBL configuration of SJA produced superior improvement in aerodynamic performance. The optimum aerodynamic performance achieved by TBL-SJA was 34.4, in comparison to 25.3 for CBL-SJA and 5 for the uncontrolled stalled airfoil at 13 deg angle of attack.
机译:进行了优化研究以找到合成射流执行器(SJA)的最佳操作特性,以推迟在Reynolds的60,000的SD7003翼型上的静态失速分离。采用与人工神经网络(ANN)耦合的遗传算法(GA)。选择空气动力学性能(L / D)作为目标函数。使用与边界层(TBL)的切线和向边界层(CBL)构型的SJA的构型进行比较,并比较它们的分离控制的有效性。允许在预定范围内改变SJ的以下设计变量:位置,开口长度,注射速度幅度,注射角度和非幂频率。结果发现,对于位置,开口长度和速度幅度比,峰值最佳值附近的窄范围实现了最佳性能。然而,对于非跨度频率和喷射注射角度,提供最高性能的最佳值在更广泛的值范围内。 SJ致动器的激活显着提高了翼型的空气动力学性能。然而,SJ的TBL配置产生了卓越的空气动力学性能。通过TBL-SJA实现的最佳空气动力学性能为34.4,与CBL-SJA和5.对于13°次迎角的不受控制的停滞翼型,5.3相比,由25.3进行比较。

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