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首页> 外文期刊>Powder Technology: An International Journal on the Science and Technology of Wet and Dry Particulate Systems >Numerical solution of nanofluid mixed convection heat transfer in a lid-driven square cavity with a triangular heat source
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Numerical solution of nanofluid mixed convection heat transfer in a lid-driven square cavity with a triangular heat source

机译:带三角形热源的盖驱动方腔内纳米流体混合对流换热的数值解

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This study deals with the numerical solution of steady laminar mixed convection flow in a lid-driven square cavity with a triangular heat source filled with water-based nanofluid. The left and down walls of the enclosure are kept insulated, the top wall moving at constant speed is maintained at constant temperature and the right wall is kept at constant temperature. The governing equations are presented in terms of the stream function-vorticity for- mulation and are solved numerically with suitable boundary conditions by a second-order accurate finite-difference method. A comparison with other works is done and a good agreement is obtained. A parametric study is done and graphical results are shown and discussed to show the effects of the volume fraction, nanoparticle diameter and different nanoparticle types on the flow and Nusselt number. It is found that suspending the nanoparticles in pure fluid leads to a significant heat transfer increase. KHeat transfer;; Mixed convection;; Nanofluids;; Square cavity;; Triangular heat source
机译:这项研究处理的是在一个盖驱动的方腔中的稳态层流混合对流的数值解,该方腔具有一个三角形的热源,该三角形的热源充满了水基纳米流体。机箱的左壁和下壁保持绝缘,以恒定速度移动的顶壁保持恒定温度,右壁保持恒定温度。控制方程以流函数涡度公式表示,并通过适当的边界条件通过二阶精确有限差分法进行数值求解。与其他作品进行了比较,并获得了良好的共识。完成了参数研究,显示并讨论了图形结果,以显示体积分数,纳米颗粒直径和不同纳米颗粒类型对流量和Nusselt数的影响。发现将纳米颗粒悬浮在纯流体中导致显着的热传递增加。 K 传热;;混合对流;纳米流体;方腔;三角热源

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