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Topology optimization based on a two-dimensional swirl flow model of Tesla-type pump devices

机译:基于Tesla型泵装置的二维旋流模型的拓扑优化

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Tesla pumps are composed of rotating disks (without blades) and are based on the boundary layer effect (i.e., viscous friction forces acting on the fluid and Coanda effect). The Tesla pump has various applications, however, the efficiency of its operation is quite low, which makes room for the optimization of its design. This way, novel configurations of devices based on this working principle can be developed. Thus, in this work, a Topology Optimization formulation is proposed to optimize the rotor of a Tesla-type pump device by using a 2D swirl flow model, which is a specific model that presents an axisymmetric flow with (or without) flow rotation around the axisymmetric axis. The 2D swirl laminar fluid flow modeling is solved by using the finite element method. A traditional material model is adopted by considering nodal design variables, and is extended to take into account the fact that the optimization is performed in a rotating reference frame and the relative tangential velocity behaves differently than the other velocity components (since the 2D swirl flow model is axisymmetric). A multi-objective function is defined in order to minimize energy dissipation and vorticity. An extra term is proposed to the vorticity function to reduce the generation of grayscale results. An interior point optimization algorithm (IPOPT) is applied to solve the optimization problem. Numerical results taking into account different aspects of the design of the rotor of a Tesla-type device are presented. (C) 2019 Elsevier Ltd. All rights reserved.
机译:特斯拉泵由旋转盘(无叶片)组成,并基于边界层效应(即作用于流体的粘性摩擦力和柯恩达效应)。 Tesla泵具有多种应用,但是其运行效率非常低,这为优化设计留有空间。这样,可以开发基于该工作原理的设备的新颖配置。因此,在这项工作中,提出了一种拓扑优化公式,以通过使用2D旋流模型来优化Tesla型泵装置的转子,该模型是一种特殊的模型,它呈现出绕着(或不绕着)绕流旋转的轴对称流。轴对称轴。二维旋流层流模型通过有限元求解。通过考虑节点设计变量采用传统的材料模型,并将其扩展为考虑到以下事实:优化是在旋转参考系中执行的,并且相对切向速度的行为不同于其他速度分量(因为二维旋流模型)是轴对称的)。定义了一个多目标函数以最小化能量耗散和涡度。对涡度函数提出了一个额外的术语,以减少灰度结果的生成。应用内点优化算法(IPOPT)来解决优化问题。给出了考虑到特斯拉型装置的转子设计的不同方面的数值结果。 (C)2019 Elsevier Ltd.保留所有权利。

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