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Analysis and Optimization Laminar Viscous Flow Through a Channel

机译:流道内层流粘性的分析与优化

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Optimizing of laminar viscous flow through a pipe by two dimensionless values is investigated analytically. Dimensionless entropy generation and pumping power to heat transfer rate ratio are used as basis for constant viscous and the temperature dependence on the viscosity. For this matter we calculate entropy generation and pumping power for a fully developed in a pipe subjected to constant wall temperature for either constant viscosity and the variable viscosity. The variation entropy generation increase along the pipe length for viscous fluid is drawn, either the variation summation dimensionless entropy generation and the pumping power to heat transfer rate ratio are varying the fluid inlet temperature for fixed pipe length and are varying pipe length for fixed fluid inlet temperature are drawn. For low heat transfer conditions the entropy generation due to viscosity friction becomes dominant and the dependence of viscosity with the temperature becomes essentially important to be considered.
机译:分析研究了通过两个无量纲值优化通过管道的层流粘性流的方法。无量纲的熵产生和泵浦功率与传热速率之比被用作恒定粘性和温度对粘度的依赖性的基础。为此,我们计算了在恒定壁厚和可变粘度的情况下,在壁温恒定的情况下,完全展开的管道中的完全产生的熵产生和泵浦功率。绘制了粘性流体沿管道长度的变化熵产生增量,或者变化求和无量纲熵生成和泵浦功率与传热速率之比改变了固定管道长度的流体入口温度,改变了固定流体入口的管道长度绘制温度。对于低的传热条件,由于粘度摩擦而产生的熵占主导地位,并且粘度与温度的相关性变得至关重要。

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