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Unsteady buoyancy-driven heat transfer enhancement of nanofluids in an inclined triangular enclosure

机译:倾斜三角形外壳中纳米流体的非稳态浮力驱动传热增强

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摘要

Heat transfer enhancement in a two-dimensional inclined lid-driven triangular enclosure utilizing nanofluids is investigated numerically for various pertinent parameters. The present model is developed to analyze unsteady heat transfer performance of nanofluids inside an enclosure taking into account the solid volume fraction δ, variable velocity and variable thermal boundary conditions. Fluid mechanics and conjugate heat transfer described in terms of continuity, linear momentum and energy equations. The transport equations are solved numerically using the Galerkin finite element method. Results are obtained for a wide range of parameters such as the Grashof numbers(10~3≤Gr≤10~6), and time step(0.01≤τ≤1). Copper-water nanofluids is used with Prandtl number, Pr = 62 and solid volume fraction 8 is varied from 0% to 25%. The streamlines, isotherm plots and heat transfer correlation of the average Nusselt number at the hot surface as well as average fluid temperature in the enclosure is presented and discussed in detail. It is found that heat transfer increased by 31.85% as volume fraction δ increases from 0% to 25% at Gr = 10~5 for r = 0.01. Moreover, the variation of the average Nusselt number and average fluid temperature in the cavity is linear with the solid volume fraction.
机译:针对各种相关参数,对采用纳米流体的二维倾斜盖驱动的三角形外壳中的传热增强进行了数值研究。本模型的开发是考虑固体体积分数δ,可变速度和可变热边界条件来分析封闭体内纳米流体的非稳态传热性能。根据连续性,线性动量和能量方程描述了流体力学和共轭传热。使用Galerkin有限元方法对输运方程进行数值求解。对于多种参数,例如Grashof数(10〜3≤Gr≤10〜6)和时间步长(0.01≤τ≤1),可以获得结果。使用Prandtl数(Pr = 62)的铜-水纳米流体,固体体积分数8在0%到25%之间变化。给出并详细讨论了流线图,等温线图和热表面平均努塞尔数以及外壳中平均流体温度的传热相关性。发现当r = 0.01时,当Gr = 10〜5时,体积分数δ从0%增加到25%,传热增加了31.85%。而且,腔中的平均努塞尔数和平均流体温度的变化与固体体积分数成线性关系。

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  • 作者单位

    Department of Arts and Sciences, Ahsanullah University of Science and Technology(AUST), Dhaka 1208, Bangladesh;

    Department of Electrical Engineering, Faculty of Engineering, University of Malaya, 50603 Kuala Lumpur, Malaysia,Department of Mathematics, Bangladesh University of Engineering and Technology(BUET), Dhaka 1000, Bangladesh;

    Department of Mechanical Engineering, Dhaka University of Engineering and Technology(DUET), Gazipur, Bangladesh;

    Department of Mechanical Engineering, University of Malaya, 50603 Kuala Lumpur, Malaysia;

    Department of Electrical Engineering, Faculty of Engineering, University of Malaya, 50603 Kuala Lumpur, Malaysia;

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  • 原文格式 PDF
  • 正文语种 eng
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  • 关键词

    Mixed convection; Finite element method; Nanofluid; Triangular enclosure; Solid volume fraction;

    机译:混合对流;有限元法;纳米流体三角形外壳固体体积分数;

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