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首页> 外文期刊>International Communications in Heat and Mass Transfer >Effect of heat generation and heat absorption on natural convection of Cu-water nanofluid in a wavy enclosure under magnetic field
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Effect of heat generation and heat absorption on natural convection of Cu-water nanofluid in a wavy enclosure under magnetic field

机译:发热和吸热对磁场下波浪外壳中Cu水纳米流体自然对流的影响

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摘要

Taking a more complex engineering geometry into account, magnetohydrodynamic natural convection of nanofluid (Cu-water) in a wavy walled enclosure having a circular hot cylinder inside is investigated by employing Galerkin-weighted residual formulation. In order to investigate the flow and heat transfer characteristics from several perspectives and increase the ability of adaptation to various engineering applications, the influences of the Hartmann number, Ha, Rayleigh number, Ra, and nanoparticle concentration are examined in detail. In addition to that, heat generation and heat absorption situations are also considered within the present work, which are simulated by a heat coefficient in a range of -10 ≤ q ≤ +10. The results revealed that increasing Ha has an insignificant effect on Nusselt number, Nu, at low Ra, however, it significantly pulls Nu down up to 33% for higher Ra, because of restricting convection. It is found that the heat coefficient, q, has a remarkable impact on Nu at low Ra, while its significance is diminished when Ra is increased. For q < 0, the heat absorption creates a heat sink, which increases Nu up to 34%, while the heat generation (q > 0) conversely reduces Nu up to 48%. Besides, variation in heat coefficient does not considerably affect the improvement impact of nanoparticles.
机译:考虑更复杂的工程几何形状,通过采用Galerkin加权残留的残留制剂研究了具有圆形热缸内的波浪壁外壳中纳米流体(Cu-Water)的磁性动力学自然对流。为了研究从多个视角和增加适应各种工程应用的流量和传热特征,详细研究了Hartmann号,HA,瑞利数,Ra和纳米颗粒浓度的影响。除此之外,发热和吸热情况还在本作工作中考虑,其在-10≤q≤+10的范围内通过热系数模拟。结果表明,由于限制对流,增加了HA对Nusselt Numb,Nu,Nu,Nu,Nu,Lew RA的效果显着效果。发现热系数Q对低RA对NU具有显着影响,而当RA增加时,其显着性降低。对于Q <0,吸热产生散热器,其增加高达34%,而热发电(Q> 0)相反地减少48%。此外,热量系数的变化不会显着影响纳米颗粒的改善影响。

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