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Level-set based topology optimization of transient flow using lattice Boltzmann method considering an oscillating flow condition

机译:考虑振荡流动条件,使用格子Boltzmann方法进行基于瞬态流量的基于轨道的拓扑优化

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Topology optimization is widely applied to various design problems in both structure and fluid dynamics engineering. Specifically, the development of energy dissipation devices with vibration control remains a key consideration. The aim of this study is to improve devices that maximize the absorption or dissipation of the vibration of an oscillating object and propose an approach in which the level set based topology optimization of transient flow using the lattice Boltzmann method is simultaneously applied to forward and reverse direction flows to deal with oscillating flows in real-world engineering designs. Although several studies have examined topology optimization to minimize dissipated kinetic energy, this study introduces an objective function for maximizing the dissipated kinetic energy in time-varying fluid flows via velocity gradients. (C) 2020 Elsevier Ltd. All rights reserved.
机译:拓扑优化广泛应用于结构和流体动力学工程中的各种设计问题。具体地,具有振动控制的能量耗散装置的发展仍然是一个关键考虑因素。本研究的目的是改善最大化振荡物体的振动的吸收或耗散的装置,并提出一种方法,其中使用格子玻璃螺柱方法的基于水平的拓扑优化的拓扑优化同时应用于前进和反向的方向流动以处理现实世界工程设计中的振荡流。尽管有几项研究已经检查了拓扑优化以最小化消散的动能,但是本研究引入了通过速度梯度最大化时变流体中的耗散动能的目标函数。 (c)2020 elestvier有限公司保留所有权利。

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