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Experimental Study on Heat Transfer Characteristics and Pressure Drops for Water Flowing in Spiral Coil Heat Exchanger

机译:螺旋线圈热交换器流动流动传热特性及压降试验研究

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The heat transfer and pressure drop characteristics for water flowing in four spiral coils with different shapes and different sizes were experimental studied. Reynolds number range from 4000 to 9000, volume flow rate range from 200 to 350 L/h and heating power range from 80-350 W. Based on the experimental results, the regularity of Reynolds number and heating power influencing on heat transfer and pressure drop characteristics was analyzed and discussed. The results indicate: the Nu increases with increasing Re, the greatest average heat transfer coefficient appears in the smaller circular spiral coil. The heat transfer coefficients increase with increasing heating power, the greatest average heat transfer coefficient also appears in the smaller circular spiral coil. The pressure drops increase with increasing Re, the pressure drop in big ellipse spiral coil is greatest. The resistance coefficients gradually decrease with increasing Re. The resistance coefficient of small circular spiral coil is always greatest, and the resistance coefficient of big circular spiral coil is smallest.
机译:实验研究了四种具有不同形状和不同尺寸的螺旋线圈流动的热传递和压降特性。雷诺数范围为4000至9000,体积流量范围为200至350升/小时,加热功率范围为80-350 W.基于实验结果,雷诺数的规律性和加热功率影响热传递和压力下降分析并讨论了特征。结果表明:NU随着RE增加而增加,最大的平均传热系数出现在较小的圆形螺旋线圈中。传热系数随着加热功率的增加而增加,最大的平均传热系数也出现在较小的圆形螺旋线圈中。随着RE的增加,压降增加,大椭圆螺旋线圈的压降是最大的。随着RE增加,电阻系数逐渐减小。小圆形螺旋线圈的电阻系数总是最大的,大圆形螺旋线圈的电阻系数最小。

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