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Investigation of free convection heat transfer and entropy generation of nanofluid flow inside a cavity affected by magnetic field and thermal radiation

机译:受磁场和热辐射影响的空腔内纳米流体流动的自由对流传热和熵产生研究

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In this paper, the effect of the presence of radiation on the convection heat transfer rate and the nanofluid entropy generation within a diagonal rectangular chamber is investigated numerically in the presence of a magnetic field. The governing equations have been solved via finite volume method using the simple algorithm. In this paper, the effects of Rayleigh number, Hartmann number, magnetic field angle changes, chamber angle changes, entropy parameter, radiation parameter and volume percent of nanoparticles on the entropy generation and heat transfer have been investigated. The results show that with increasing Rayleigh number and decreasing the Hartmann number, the Nusselt number and entropy generation increase and the Bejan number decreases. By increasing the angle of the magnetic field, the heat transfer rate and the entropy generation are reduced and the Bejan number increases. By increasing the angle of the chamber at high Rayleigh numbers, the heat transfer rate increases, or by adding 6% of the nanoparticles to the base fluid, the heat transfer rate increases by 9.3% and the entropy generation increases by 15.5% in the absence of radiation. This increase in the Rd=3 radiation parameter is 5.4% and 6.2%, respectively. It was also observed that the Nusselt number and the entropy generation increased, and with increasing the radiation parameter, the Bejan number decreased. Increasing the heat transfer rate is more significant at higher Rayleigh numbers by increasing the radiation parameter.
机译:本文在磁场的存在下,在数值上进行数值在数值上对对对流传热速率的存在对对流传热速率和纳米流体熵产生的影响。使用简单算法通过有限体积方法解决了管理方程。本文研究了瑞利数,Hartmann数,磁场角变化,腔角变化,熵参数,辐射参数和纳米颗粒上熵产生和传热的体积%的影响。结果表明,随着瑞利数量的增加和降低Hartmann号,营养数量和熵产生增加,Bejan数减少。通过增加磁场的角度,减少了传热速率和熵生成,并且BEJAN数增加。通过增加高瑞利数的腔室的角度,传热速率增加,或者通过将6%的纳米颗粒加入基础流体,传热速率增加9.3%,熵产生在不存在下增加15.5%辐射。 RD = 3辐射参数的这种增加分别为5.4%和6.2%。还观察到,营养数和熵产生增加,并且随着辐射参数的增加,BEJAN数减少。通过增加辐射参数,增加传热速率在较高的瑞利数中更显着。

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