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Passive separation control using a self-adaptive hairy coating

机译:使用自适应毛状涂层的被动分离控制

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摘要

A model of hairy medium is developed using a homogenized approach, and the fluid flow around a circular cylinder partially coated with hair is analysed by means of numerical simulations. The capability of this coating to adapt to the surrounding flow is investigated, and its benefits are discussed in the context of separation control. This fluid–structure interaction problem is solved with a partitioned approach, based on the direct resolution of the Navier–Stokes equations together with a nonlinear set of equations describing the dynamics of the coating. A volume force, arising from the presence of a cluster of hair, provides the link between the fluid and the structure problems. For the structure part, a subset of reference elements approximates the whole layer. The dynamics of these elements is governed by a set of equations based on the inertia, elasticity, interaction and losses effects of articulated rods. The configuration chosen is that of the two-dimensional flow past a circular cylinder at Re 200, a simple and well-documented test case. Aerodynamics performances quantified by the Strouhal number, the drag and the maximum lift in the laminar unsteady regime are modified by the presence of the coating. A set of parameters corresponding to a realistic coating (length of elements, porosity, rigidity) is found, yielding an average drag reduction of 15 % and a decrease of lift fluctuations by about 40 %, associated to a stabilization of the wake.
机译:使用均质化方法开发了毛状介质模型,并通过数值模拟分析了部分包裹有毛发的圆柱体周围的流体流动。研究了这种涂料适应周围流动的能力,并在分离控制的背景下讨论了其优势。基于Navier-Stokes方程的直接解析以及描述涂层动力学的非线性方程组,可以采用分区方法解决该流固耦合问题。由于存在一簇头发而产生的体积力提供了流体与结构问题之间的联系。对于结构部分,参考元素的子集近似整个层。这些元素的动力学受一组基于关节杆的惯性,弹性,相互作用和损失影响的方程式控制。选择的配置是在Re 200处通过圆柱的二维流的配置,这是一个简单且有据可查的测试案例。空气动力学性能由Strouhal数,层流非稳态状态下的阻力和最大升程来量化,这取决于涂层的存在。找到了一组与实际涂层相对应的参数(单元长度,孔隙率,刚度),平均阻力降低了15%,升力波动降低了约40%,与尾流的稳定相关。

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