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首页> 外文期刊>International Journal of Heat and Mass Transfer >Investigation of MHD natural convection in a porous media by double MRT lattice Boltzmann method utilizing MWCNT-Fe_3O_4/water hybrid nanofluid
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Investigation of MHD natural convection in a porous media by double MRT lattice Boltzmann method utilizing MWCNT-Fe_3O_4/water hybrid nanofluid

机译:利用MWCNT-Fe_3O_4 /水杂化纳米流体的双重MRT格子玻尔兹曼方法研究多孔介质中的MHD自然对流

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In this paper, a new double multi relaxation time (MRT) Lattice Boltzmann method (LBM) has been used to simulate magnetohydrodynamics (MHD) natural convection in a porous media. A new nanofluid named; multi-walled carbon nanotubes-iron oxide/water nanofluid (MWCNT-Fe3O4/water hybrid nano fluid) has been utilized to investigate the effect of nanoparticle on heat transfer. The thermo-physical properties of the nanofluid have been extracted from experimental results. D2Q9 and D2Q5 lattices are used to solve the flow and temperature fields respectively, and the effect of various parameters such as; Darcy number (Da) (10(-2)-10(-1)), Rayleigh number (103 = Ra = 10(5)), porosity (0.4 = epsilon = 0.9), volume fraction of nanoparticles (0 = empty set = 0.003) and Hartmann number (0 = Ha = 50) have been investigated. Based on the present results, the new double MRT LBM is a proper method to solve the complex flows such as MHD natural convection in porous media. The results show that augmentation of Rayleigh number increases the heat transfer rate for all cases however by increasing the Hartmann number the effect of Rayleigh number decreases. Also, adding the nanoparticles enhances the average Nusselt number as increases 4.9% for Ra = 10(5), Da = 10(-1), Ha = 50, and epsilon = 0.9 when the volume fraction of nanoparticles rises from 0 to 0.003. Results indicate that by enhancing Darcy number heat transfer rate increases and average Nusselt number improves by porosity. (C) 2018 Elsevier Ltd. All rights reserved.
机译:在本文中,一种新的双重多重弛豫时间(MRT)格子Boltzmann方法(LBM)已被用于模拟多孔介质中的磁流体动力学(MHD)自然对流。一种新的纳米流体,命名为;多壁碳纳米管-氧化铁/水纳米流体(MWCNT-Fe3O4 /水杂化纳米流体)已被用于研究纳米颗粒对热传递的影响。纳米流体的热物理性质已经从实验结果中提取出来。 D2Q9和D2Q5晶格分别用于求解流场和温度场,以及各种参数的影响,例如:达西数(Da)(10(-2)-10(-1)),瑞利数(103 <= Ra <= 10(5)),孔隙率(0.4 <= epsilon <= 0.9),纳米粒子的体积分数(已经研究了0 <=空集<= 0.003)和哈特曼数(0 <= Ha <= 50)。基于目前的结果,新的双重MRT LBM是解决多孔介质中MHD自然对流等复杂流动的合适方法。结果表明,在所有情况下,瑞利数的增加都会增加传热速率,但是通过增加哈特曼数,瑞利数的影响会降低。另外,当纳米颗粒的体积分数从0增加到0.003时,添加纳米颗粒会提高平均Nusselt数,当Ra = 10(5),Da = 10(-1),Ha = 50和epsilon = 0.9时增加4.9%。结果表明,通过提高达西数,传热速率增加,平均努塞尔数因孔隙率而提高。 (C)2018 Elsevier Ltd.保留所有权利。

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