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Current density and thermodynamic analysis of energy optimization for double exothermic reaction of magneto-Oldroyd 8-constant material

机译:磁授铁8恒材料双放热反应的能量优化电流密度及热力学分析

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This study analyses current density and thermodynamics second law of double reaction of a magneto-Oldroyd 8-constant liquid in a convective asymmetric cooling medium. The viscoelastic properties of the liquid are prevented from distortion by convective cooling of the flow media device which is taken to satisfy Newton’s law of cooling. The flow momentum is motivated by exothermic reaction, chemical kinetics and energized by pressure gradient in the absence of material consumption. The dimensionless leading flow equations are solved using partition weighted residual analytical technique to reveal the parameters sensitivity and impacts on the viscoelastic flow liquid, exothermic combustible heat diffusion, entropy generation and current density. The solution results are presented in tables and graphs for clear understanding of the thermophysical parameters implication on the double reaction fluid considered. As observed, the second step reaction enhances exothermic reaction that in turn support complete combustion process in an engine. An improvement of thermodynamic equilibrium through reducing material terms and Frank-Kamenetskii will minimize the entropy generation and promote thermal engineering machine performance. Current density is augmented by rising second step reaction, electric field loading and activation energy ratio.
机译:本研究分析的电流密度,并在对流不对称冷却介质的磁 - 8 Oldroyd导恒定液体的双反应的热力学第二定律。的液体的粘弹性特性是从失真由将其溶于冷却的满足牛顿定律流动媒体设备的对流冷却防止。流动动量由放热反应,化学动力学激励,在没有材料消耗由压力梯度通电。无量纲领先流方程使用分区加权残差分析技术以显示参数灵敏度和影响上的粘弹性流动液体,放热可燃热扩散,熵生成和电流密度来解决。该解决方案的结果在所考虑的双反应流体的热物理参数的含义的清楚的理解表格和图形呈现。如观察到的,第二步骤的反应提高放热反应,在发动机中的匝支撑完全燃烧过程。通过减少材料的术语和Frank-Kamenetskii热力学平衡的改进将减少熵生成和促进热工程机械性能。电流密度由上升第二步反应中,电场装载和活化能比增加。

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