HEAT TRANSFER WITH VISCOUS DISSIPATION AND FLUID AXIAL HEAT CONDUCTION FOR FLOW THROUGH A CIRCULAR PIPE

M. U. Uwaezuoke
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引用次数: 0

Abstract

Purpose: To investigate the effect of viscous dissipation and axial conduction on heat transfer for laminar forced convection flow through a circular pipe was studied. Constant wall temperature boundary condition was imposed on the circular pipe and the flow is assumed to be hydro dynamically developed and thermally developing. Methodology: Numerical solutions were obtained to observe the variations of non-dimensional bulk mean temperature, Nusselt number and wall heat from (or) to the fluid for Brinkman numbers   1.0, 0.5, 0.2,0.0 and Peclet numbers 10,50,100,300 and 500. Results: It was found that the heat generated by viscous dissipation was higher for higher Brinkman number and it delays the thermal entrance development of the fluid. Unique Contribution to Theory and Practice: Effect of axial conduction becomes negligible when the value of Peclet number crosses hundred
圆管内流动的粘性耗散和流体轴向导热传热
目的:研究粘滞耗散和轴向传导对圆管内层流强制对流换热的影响。在圆管上施加恒壁温边界条件,并假定流动是水动力发展和热发展的。方法:获得数值解,观察Brinkman数1.0、0.5、0.2、0.0和Peclet数10、50、100、300和500时(或)流体的无因次体平均温度、努塞尔数和壁热的变化。结果:布林克曼数越高,粘性耗散产生的热量越高,并且会延迟流体热入口的发展。对理论和实践的独特贡献:当佩莱特数超过100时,轴向传导的影响可以忽略不计
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来源期刊
International Journal of Physical Sciences
International Journal of Physical Sciences 综合性期刊-综合性期刊
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4
审稿时长
24 months
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