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首页> 外文期刊>Numerical Methods for Partial Differential Equations: An International Journal >Effect of variable viscosity and viscous dissipation on the Hagen-Poiseuille flow and entropy generation
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Effect of variable viscosity and viscous dissipation on the Hagen-Poiseuille flow and entropy generation

机译:可变粘度和粘滞耗散对哈根泊流和熵产生的影响

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In this article, the steady-state flow of a Hagen-Poiseuille modelin a circular pipe is considered and entropy generation due tofluid friction and heat transfer is examined. Because of variationin fluid viscosity, the entropy generation in the flow varies. Inhis model, Arrhenius law is applied for temperature equation-dependent viscosity, and the influence of viscosity parameters on the entropy generation number and distribution of temperature and velocity is investigated. The governing momentum and energy equations, which are coupled due to the dissipative term in the energy equation, were solved by analytical techniques. The solutions of equations via perturbation method and homotopy perturbation method are obtained and then compared with those of numerical solutions. It is found that the fluid viscosity influences considerably the temperature distribution in the fluid close to the pipe wall, and increasing pipe wall temperature enhances the rate of entropy generation.
机译:在本文中,考虑了圆形管道中Hagen-Poiseuille模型的稳态流,并研究了由于流体摩擦和热传递而产生的熵。由于流体粘度的变化,流动中的熵产生会发生变化。在Inhis模型中,将Arrhenius律应用于依赖于温度方程的粘度,并研究了粘度参数对熵产生数以及温度和速度分布的影响。通过分析技术解决了由于能量方程中的耗散项而耦合的控制动量和能量方程。得到了通过摄动法和同伦摄动法的方程解,并与数值解进行了比较。发现流体粘度极大地影响了靠近管壁的流体中的温度分布,并且增加管壁温度提高了熵产生的速率。

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