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A Review of Topology Optimisation for Fluid-Based Problems

机译:流体问题拓扑优化述评

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This review paper provides an overview of the literature for topology optimisation of fluid-based problems, starting with the seminal works on the subject and ending with a snapshot of the state of the art of this rapidly developing field. “Fluid-based problems” are defined as problems where at least one governing equation for fluid flow is solved and the fluid–solid interface is optimised. In addition to fluid flow, any number of additional physics can be solved, such as species transport, heat transfer and mechanics. The review covers 186 papers from 2003 up to and including January 2020, which are sorted into five main groups: pure fluid flow; species transport; conjugate heat transfer; fluid–structure interaction; microstructure and porous media. Each paper is very briefly introduced in chronological order of publication. A quantititive analysis is presented with statistics covering the development of the field and presenting the distribution over subgroups. Recommendations for focus areas of future research are made based on the extensive literature review, the quantitative analysis, as well as the authors’ personal experience and opinions. Since the vast majority of papers treat steady-state laminar pure fluid flow, with no recent major advancements, it is recommended that future research focuses on more complex problems, e.g., transient and turbulent flow.
机译:本文概述了拓扑优化流体问题的文献概述,从主题上的精髓工作开始,结束了这种快速发展领域的技术的快照。 “基于流体的问题”被定义为求解流体流动的至少一个控制方程的问题,并且优化了流体 - 固界面。除了流体流动之外,可以解决任何数量的额外物理学,例如物种传输,传热和力学。审查涵盖从2003年的186篇论文,包括1月2020年1月,其中分为五个主要组:纯净流体流动;物种运输;共轭传热;流体结构相互作用;微观结构和多孔介质。每篇论文的出版顺序非常短暂地介绍。介绍了统计数据的统计数据的量化分析,并呈现分布在子组上。对未来研究的重点领域的建议是基于广泛的文献综述,定量分析以及作者的个人经验和意见。由于绝大多数纸张来治疗稳态层状纯净流体流量,没有近期的主要进步,建议将来的研究重点介绍更复杂的问题,例如瞬态和湍流。

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