首页> 外文期刊>World Journal of Nano Science and Engineering >Fourth-Order Compact Formulation for the Resolution of Heat Transfer in Natural Convection of Water-Cu Nanofluid in a Square Cavity with a Sinusoidal Boundary Thermal Condition
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Fourth-Order Compact Formulation for the Resolution of Heat Transfer in Natural Convection of Water-Cu Nanofluid in a Square Cavity with a Sinusoidal Boundary Thermal Condition

机译:正弦边界热条件下方腔中水-铜纳米流体自然对流传热解析的四阶紧致公式

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In the present work, we numerically study the laminar natural convection of a nanofluid confined in a square cavity. The vertical walls are assumed to be insulated, non-conducting, and impermeable to mass transfer. The horizontal walls are differentially heated, and the low is maintained at hot condition (sinusoidal) when the high one is cold. The objective of this work is to develop a new height accurate method for solving heat transfer equations. The new method is a Fourth Order Compact (F.O.C). This work aims to show the interest of the method and understand the effect of the presence of nanofluids in closed square systems on the natural convection mechanism. The numerical simulations are performed for Prandtl number ( ), the Rayleigh numbers varying between? and for different volume fractions varies between 0% and 10% for the nanofluid (water + Cu).
机译:在目前的工作中,我们通过数值研究了限制在方腔中的纳米流体的层流自然对流。假定垂直壁是绝缘的,不导电的并且对于传质是不可渗透的。水平壁被不同地加热,而低壁则在高壁处于冷态时保持在热状态(正弦曲线)。这项工作的目的是开发一种新的高度精确方法来求解传热方程。新方法是四阶协定(F.O.C)。这项工作旨在表明该方法的兴趣,并了解封闭正方形系统中纳米流体的存在对自然对流机理的影响。对Prandtl数()进行数值模拟,瑞利数在?纳米流体(水+铜)的不同体积分数在0%到10%之间变化。

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