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首页> 外文期刊>Numerical Heat Transfer, Part A. Application: An International Journal of Computation and Methodology >Development of the ball-spine algorithm for the shape optimization of ducts containing nanofluid
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Development of the ball-spine algorithm for the shape optimization of ducts containing nanofluid

机译:纳米流体管道形状优化的球脊柱算法的发展

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摘要

In this paper a novel shape design method is introduced for the numerical solution of inverse heat convection problems (IHCPs) of nanofluids. The proposed method is a novel extension of the ball-spine algorithm (BSA) inverse method, which is recently adapted for inverse heat transfer problems (IHTPs). Here it is shown how, by a novel physical-sense remedy, the method is applicable to IHCPs as well. In this respect, after validation of the proposed method, two types of IHCPs are introduced and numerically solved. In both types of introduced inverse problems, the objective is shape optimization of a duct containing such steady-state incompressible laminar nanofluid flow that it satisfies a prescribed heat flux distribution along the walls of the geometry. The results show merits and robustness of the BSA application in capturing the target geometry corresponding to a given heat flux distribution in forced heat convection problems with a low computational cost.
机译:本文介绍了一种新颖的形状设计方法,用于纳米流体的逆热对流问题(IHCP)的数值解。 该方法是球脊算法(BSA)逆方法的新颖延伸,其最近适于反传热问题(IHTPS)。 在这里,它显示了如何通过新的物理学侦查,该方法也适用于IHCP。 在这方面,在验证所提出的方法之后,引入了两种类型的IHCP和数值求解。 在两种类型的引入逆问题中,目的是含有这种稳态不可压缩层状流体流动的管道的形状优化,其满足沿着几何形状的壁满足规定的热通量分布。 结果表明了BSA应用于捕获对应于具有低计算成本的强制热对流问题中对应于给定热通量分布的目标几何的优点和鲁棒性。

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