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3D optimization of baffle arrangement in a multi-phase nanofluid natural convection based on numerical simulation

机译:基于数值模拟的基于数值模拟的多相纳米流体自然对流中的挡板布置3D优化

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Purpose - The purpose of this study is investigating the effect of using multi-phase nanofluids, Rayleigh number and baffle arrangement simultaneously on the heat transfer rate and Predict the optimal arrangement type of baffles in the differentiation of Rayleigh number in a 3D enclosure. Design/methodology/approach - Simulations were performed on the base of the L25 Taguchi orthogonal array, and each test was conducted under different height and baffle arrangement. The multiphase thermal lattice Boltzmann based on the D3Q19 method was used for modeling fluid flow and temperature fields. Findings - Streamlines, isotherms, nanofluid volume fraction distribution and Nusselt number along the wall surface for 104 < Ra < 108 have been demonstrated. Signal-to-noise ratios have been analyzed to predict optimal conditions of maximize and minimize the heat transfer rate. The results show that by choosing the appropriate height and arrangement of the baffles, the average Nusselt number can be changed by more titan 57 per cent. Originality/value - The value of this paper is surveying three-dimensional and two-phase simulation for nanofluid. Also using the Taguchi method for Predicting the optimal arrangement type of baffles in a multipart enclosure. Finally statistical analysis of the results by using of two maximum and minimum target Function heat transfer rates.
机译:目的 - 本研究的目的正在研究使用多相纳米流体,瑞利数和挡板布置在传热速率上的效果,并预测3D外壳中瑞利数分化中的最佳布置类型的挡板。设计/方法/方法 - 在L25 Taguchi正交阵列的基础上进行模拟,并且在不同的高度和挡板布置下进行每个测试。基于D3Q19方法的多相热晶格Boltzmann用于建模流体流动和温度场。研究结果 - 已经证明了沿着墙面的简化,等温物,纳米流体体积分布分布和NUSERET数。已经分析了信噪比以预测最大化的最佳条件并最小化传热速率。结果表明,通过选择挡板的适当高度和布置,可以通过更多的泰坦57%来改变平均露天数。原创性/值 - 本文的价值正在测量纳米流体的三维和两相模拟。同样使用TAGUCHI方法来预测多部分外壳中的最佳布置类型的挡板。最后通过使用两个最大和最小目标函数传热速率来统计分析结果。

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