首页> 外文会议>ASME Joint US-European Fluids Engineering Division summer meeting;FEDSM2010 >PERFORMANCE OF CROSS FLOW MICROCHANNEL HEAT EXCHANGERS SUBJECTED TO VISCOUS DISSIPATION
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PERFORMANCE OF CROSS FLOW MICROCHANNEL HEAT EXCHANGERS SUBJECTED TO VISCOUS DISSIPATION

机译:受粘性耗散影响的横流微通道换热器的性能

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This paper analyzes the effect of viscous dissipation on the thermal performance of balanced flow cross flow microchannel heat exchangers. The cross flow microchannel heat exchanger analyzed in this paper is one that is subjected to axial heat conduction. Governing equations are developed for each of the fluids and the wall separating the fluids. The equations are solved simultaneously using the numerical technique of finite difference method to obtain the temperature profile. The effectiveness of each fluid is determined using the temperature profile thus obtained. The effectiveness and the temperature of the fluids are found to depend on NTU, axial heat conduction parameters and the viscous dissipation parameter. In the presence of axial heat conduction the effectiveness of the fluid decreases for a specific NTU. In addition, the effectiveness of the fluids decreases with increase in axial heat conduction parameters at a particular NTU. The effectiveness of the hot fluid in the presence of viscous heat dissipation alone decreased at a particular NTU. On the other hand the effectiveness of the cold fluid for the same amount of viscous heating improved at a specific NTU. The combined effect of axial heat conduction and viscous dissipation on the hot fluid is to decrease its effectiveness. With regard to the cold fluid effectiveness it can either increase or decrease due to the combined effect of axial heat conduction parameter and viscous dissipation.
机译:本文分析了粘性耗散对平衡流错流微通道换热器热性能的影响。本文分析的横流微通道换热器是一种承受轴向热传导的换热器。为每种流体和分隔流体的壁建立了控制方程。使用有限差分法的数值技术同时求解方程,以获得温度曲线。使用由此获得的温度曲线确定每种流体的有效性。发现流体的有效性和温度取决于NTU,轴向热传导参数和粘性耗散参数。在存在轴向导热的情况下,对于特定的NTU,流体的有效性会降低。另外,在特定的NTU下,流体的有效性随着轴向热传导参数的增加而降低。在特定的NTU下,仅在存在粘性散热的情况下,热流体的有效性会降低。另一方面,在特定的NTU下,对于相同量的粘性加热,冷流体的效率得到了提高。轴向导热和粘性耗散对热流体的综合作用是降低其有效性。关于冷流体的有效性,由于轴向热传导参数和粘性耗散的共同作用,它可以增加或减少。

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