Control Law Design for Channel Flow - 2D Designs and 3D Performance Evaluation

E. O’Dea, O. Tutty, E. Rogers
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Abstract

The systems dealt with in flow control problems are, in control terms, very complex, nonlinear and infinite dimensional, even if the fluid flow is comparatively simple. Plane Poiseuille flow, i.e. flow between two infinite parallel plates is one of the simplest and best understood cases of fluid dynamics. Controlling this flow is, however, still a very challenging problem, even if it is assumed that deviations from the steady-state are small enough for the governing equations to be linearized. Recent work has shown that robust control of 2D channel flow is possible without a spatial periodicity assumption. This paper first executes an Hinfin based robust control law design for the 2D case and then proceed to the relatively open problem of assessing the resulting performance using a Navier Stokes CFD solver as a model of the 'real' process. The results in this second part are on the representation (to ensure realistic results) and modelling of the disturbances used and the control of 3D disturbances
通道流控制律设计——二维设计与三维性能评价
在流动控制问题中所处理的系统,在控制术语中,是非常复杂的,非线性的和无限维的,即使流体流动是相对简单的。平面泊泽维尔流,即两个无限平行板之间的流动,是流体动力学中最简单和最容易理解的情况之一。然而,控制这种流动仍然是一个非常具有挑战性的问题,即使假设与稳态的偏差足够小,可以使控制方程线性化。最近的工作表明,在没有空间周期性假设的情况下,二维通道流动的鲁棒控制是可能的。本文首先针对二维情况执行了基于Hinfin的鲁棒控制律设计,然后使用Navier Stokes CFD求解器作为“真实”过程的模型来评估结果性能,这是一个相对开放的问题。第二部分的结果是关于表示(以确保逼真的结果)和使用的干扰建模和三维干扰的控制
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