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首页> 外文期刊>International Journal of Heat and Mass Transfer >Development of an efficient immersed-boundary method with subgrid-scale models for conjugate heat transfer analysis using large eddy simulation
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Development of an efficient immersed-boundary method with subgrid-scale models for conjugate heat transfer analysis using large eddy simulation

机译:利用大涡模拟开发具有亚网格规模模型的有效浸入边界方法,用于共轭传热分析

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摘要

A numerical procedure for conjugate heat transfer (CHT) analysis based on an immersed boundary (IB) method for large eddy simulation (LES) has been developed. The dynamic subgrid-scale (SGS) stress and heat flux models are implemented in the solver. Since discrepancy between the computational grid and solid-fluid interface generally exists, interpolation of thermal properties at the interface is necessary for the current method. Accordingly, an efficient interpolation scheme using the modified flood-fill algorithm is applied. In order to validate the capability of the developed method, three different CHT cases with turbulent flow were examined: channel flow between heated slabs, thermally-driven flow in a closed cavity, and crossflow around a heated circular cylinder. Compared to cases that just utilized an isothermal or constant-heat-flux boundary condition, when the CHT method was properly implemented, results more closely matched experimental data and existing correlations. (C) 2019 Elsevier Ltd. All rights reserved.
机译:开发了一种基于大涡模拟(LES)的浸入边界(IB)方法进行共轭传热(CHT)分析的数值程序。动态亚网格规模(SGS)应力和热通量模型在求解器中实现。由于通常存在计算网格和固体-流体界面之间的差异,因此对于当前方法,必须在界面处进行热属性插值。因此,应用了使用改进的洪水填充算法的有效插值方案。为了验证所开发方法的能力,研究了三种不同的湍流CHT情况:加热板之间的通道流,密闭腔中的热驱动流以及加热圆柱体周围的错流。与仅利用等温或恒定热通量边界条件的情况相比,如果正确实施了CHT方法,则结果与实验数据和现有相关性更加紧密匹配。 (C)2019 Elsevier Ltd.保留所有权利。

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