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A Reduced-Order Model for Efficient Simulation of Synthetic Jet Actuators

机译:用于合成射流执行器高效仿真的降阶模型

摘要

A new reduced-order model of multidimensional synthetic jet actuators that combines the accuracy and conservation properties of full numerical simulation methods with the efficiency of simplified zero-order models is proposed. The multidimensional actuator is simulated by solving the time-dependent compressible quasi-1-D Euler equations, while the diaphragm is modeled as a moving boundary. The governing equations are approximated with a fourth-order finite difference scheme on a moving mesh such that one of the mesh boundaries coincides with the diaphragm. The reduced-order model of the actuator has several advantages. In contrast to the 3-D models, this approach provides conservation of mass, momentum, and energy. Furthermore, the new method is computationally much more efficient than the multidimensional Navier-Stokes simulation of the actuator cavity flow, while providing practically the same accuracy in the exterior flowfield. The most distinctive feature of the present model is its ability to predict the resonance characteristics of synthetic jet actuators; this is not practical when using the 3-D models because of the computational cost involved. Numerical results demonstrating the accuracy of the new reduced-order model and its limitations are presented.
机译:提出了一种新的多维合成射流致动器降阶模型,该模型将全数值模拟方法的精度和守恒性与简化的零阶模型的效率相结合。通过求解与时间有关的可压缩准1-D欧拉方程,可以模拟多维执行器,而将膜片建模为运动边界。在移动的网格上使用四阶有限差分方案近似控制方程,以使网格边界之一与隔膜重合。执行器的降阶模型具有多个优点。与3-D模型相反,此方法可节省质量,动量和能量。此外,该新方法在计算上比执行器腔体流动的多维Navier-Stokes模拟更有效,同时在外部流场中提供了几乎相同的精度。本模型最鲜明的特点是能够预测合成射流执行器的共振特性。在使用3-D模型时,这是不切实际的,因为涉及到计算成本。数值结果证明了新的降阶模型的准确性及其局限性。

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