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首页> 外文期刊>Journal of thermal analysis and calorimetry >Natural convection and melting of NEPCM in a corrugated cavity under the effect of magnetic field
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Natural convection and melting of NEPCM in a corrugated cavity under the effect of magnetic field

机译:磁场效应下瓦楞腔中NEPCM的自然对流和熔化

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Numerical study of natural convection and melting in a corrugated square cavity filled with CNT-water nanofluid under the influence of inclined magnetic field was performed. The left and right walls of the cavity are kept at constant temperatures while the horizontal wall is adiabatic. Galerkin weighted residual finite element was used. The effects of Hartmann number (between 0 and 40), magnetic inclination angle (between 0 degrees and 90 degrees), nanoparticle volume fraction (between 0 and 4%), number (between 1 and 20) and height (between 0.002 H and 0.16 H) of the corrugation on the convective heat transfer features and melting in the square cavity were examined. Magnetic field was found to dampen the fluid motion, and less movement of the melt front in the upper part of the cavity is observed. By using the CNT nanoparticles in the base fluid, significant enhancement in the heat transfer and faster propagation of the melt front is observed in the absence and presence of magnetic field. Average heat transfer enhancements are around 118% and 95% when nanofluid at the highest particle volume fraction is compared with water in the absence and presence of magnetic field. The heat transfer is reduced and melt front curve characteristics are affected when the number and height of corrugation waves are increased.
机译:进行倾斜磁场影响填充有CNT水纳米流体的波纹方腔的自然对流和熔化的数值研究。腔的左壁保持在恒定温度下,而水平壁是绝热的。使用Galerkin加权残留有限元。 Hartmann号(0和40之间),磁倾角(0度和90度之间),纳米颗粒体积分数(0至4%之间),数(在1到20之间)和高度(0.002小时之间) H)检查对流热传递特征的波纹,在方腔中熔化。发现磁场抑制流体运动,并且观察到熔体前部的熔体前部的移动较少。通过使用基础流体中的CNT纳米颗粒,在磁场的情况下观察到熔体前沿的传热和更快传播的显着增强。在不存在和存在磁场的情况下,将平均传热增强在最高颗粒体积分数下的纳米流体比较时为约118%和95%。当波纹波的数量和高度增加时,减少了传热减少并且熔体前曲线特性受到影响。

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