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Computer Modeling of Time History of Velocity Field and Net Momentum Output of a Synthetic Jet Actuator

机译:合成射流作动器的速度场和净动量输出的时间历史的计算机建模

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Synthetic jet actuators have been used for control of flow separation in high performance airfoils for increasing lift and low drag. The synthetic jets have zero net mass flux but impart net momentum to the flow. In this study, LES simulations was used to study the time history of outlet velocity profile and net momentum imparted to the flow by a synthetic jet actuator (SJA). The SJA studied is not symmetric and operates with the aid of a piezoelectric (PZT) ceramic circular plate actuator. A three-dimensional mesh for the computational domain of the SJA and surrounding volume was developed and was used to evaluate the details of the airflow conditions inside the SJA as well as at the outlet. The vibration of the PZT ceramic actuator was used as a boundary condition in the computational model to drive the SJA. Particular attention was given to the time evolution of the SJA outlet velocity profile. The time history of the outlet velocity profile of the synthetic jet was curve-fitted to an empirical equation. The resulting outlet velocity could be used as an inlet velocity for active close loop control of airflow separation around an airfoil at high angle of attack.
机译:合成射流致动器已被用于控制高性能翼型中的流分离,以增加升力和低阻力。合成射流的净质量通量为零,但为流动赋予净动量。在这项研究中,使用LES模拟来研究出口速度分布和合成射流致动器(SJA)赋予流动的净动量的时间历史。所研究的SJA不对称,并且借助压电(PZT)陶瓷圆板致动器进行操作。开发了用于SJA和周围体积的计算域的三维网格,并用于评估SJA内部和出口处的气流状况的细节。在计算模型中,将PZT陶瓷执行器的振动作为边界条件来驱动SJA。特别注意了SJA出口速度曲线的时间演变。合成射流出口速度曲线的时间历史曲线拟合为经验方程式。所得的出口速度可以用作入口速度,以主动闭环控制高迎角情况下翼型周围的气流分离。

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