...
首页> 外文期刊>Heat Transfer >Entropy analysis in a second-grade nanoliquid influenced by an exponential space-dependent heat source and Arrhenius activation energy
【24h】

Entropy analysis in a second-grade nanoliquid influenced by an exponential space-dependent heat source and Arrhenius activation energy

机译:Entropy analysis in a second-grade nanoliquid influenced by an exponential space-dependent heat source and Arrhenius activation energy

获取原文
获取原文并翻译 | 示例
           

摘要

Addressing the second-grade nanofluid flow over a porous stretching sheet based on entropy generation is done in this study. In the mathematical modeling, the revised Buongiorno model is utilized. Employing exponential space-dependent heat generation and Heat transfer subject to melting effect is implemented. Energy and concentration expressions are retained based on the impact of activation energy, Joule heating, nonlinear thermal radiation, and viscous dissipation. Implementation of solutions for a standard transformation, governing equations, and the numerical procedure is done. Several governing parameters are discussed based on the effect of comprehensive effects of the flow region. A thicker thermal boundary layer is obtained by increasing the magnetic strength and Brownian movement. Thermophoresis increases similarly while the trend takes place, and for the melting parameter, the reverse order is noted. Melting parameter increases with increase in entropy generation rate and Brinkman number increases with reduction in Bejan number. In the literature, it is found that the situation is limited for the obtained results in the model. Higher entropy generation rates are exhibited for the demonstration of magnetic force. From the results, it is observed that the design parameters will consequently optimize the heat transfer in the assessment of industrial processes.
机译:在二年级nanofluid流了基于熵的多孔拉伸板代是在这项研究完成的。数学建模、修改后的Buongiorno模型是利用。space-dependent热生成和传热融化的效果实现。和浓度表达式被保留对活化能的影响,焦耳加热、非线性热辐射和粘性耗散。标准转换、控制方程数值过程就完成了。讨论了基于管理参数流的综合效应的影响地区。通过增加磁场强度和获得布朗运动。类似的趋势发生,和融化的参数,相反的顺序指出。熵产生率和边缘主义者号码增加而减少Bejan号码。文学,发现情况有限的结果模型。更高的熵产生率展出磁力的示范。结果,可以看出设计参数将因此优化热产业转移的评估流程。

著录项

获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号