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H/sub /spl infin// control of nonperiodic two-dimensional channel flow

机译:H / sub / spl infin //非周期性二维通道流的控制

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摘要

This paper deals with finite-dimensional boundary control of the two-dimensional (2-D) flow between two infinite parallel planes. Surface transpiration along a few regularly spaced sections of the bottom wall is used to control the flow. Measurements from several discrete, suitably placed shear-stress sensors provide the feedback. Unlike other studies in this area, the flow is not assumed to be periodic, and spatially growing flows are considered. Using spatial discretization in the streamwise direction, frequency responses for a relevant part of the channel are obtained. A low-order model is fitted to these data and the modeling uncertainty is estimated. An H/sub /spl infin// controller is designed to guarantee stability for the model set and to reduce the wall-shear stress at the channel wall. A nonlinear Navier-Stokes PDE solver was used to test the designs in the loop. The only assumption made in these simulations is that the flow is two dimensional. The results showed that, although the problem was linearized when designing the controller, the controller could significantly reduce fundamental 2-D disturbances in practice.
机译:本文研究了两个无限平行平面之间的二维(2-D)流动的有限维边界控制。沿着底壁的几个规则间隔的部分的表面蒸腾作用被用来控制流量。来自几个离散的,适当放置的切应力传感器的测量结果提供了反馈。与该领域的其他研究不同,该流动不被认为是周期性的,而是考虑了空间增长的流动。使用沿流方向的空间离散化,可以获得通道相关部分的频率响应。将低阶模型拟合到这些数据,并估计建模不确定性。 H / sub / spl infin //控制器旨在确保模型集的稳定性并减少通道壁处的壁切应力。非线性Navier-Stokes PDE求解器用于测试回路中的设计。这些模拟中唯一的假设是流是二维的。结果表明,尽管在设计控制器时问题已线性化,但该控制器在实践中可以显着减少基本的二维干扰。

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