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Mathematical modeling and experimental study of heat transfer in a low- duty air-cooled heat exchanger

机译:低负荷空冷换热器传热的数学模型和实验研究

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摘要

Many plate fin and tube heat exchangers operate under low loads when the flow rate of air and water is low. The flow regime in tubes can change from laminar through transitional to turbulent. In this paper, much attention was paid to determine a semi-empirical correlation for the Nusselt number on the water-side in the transitional and turbulent range when the Reynolds number Re-w is higher than 2300. A new relationship for the friction factor in the transitional flow regime was proposed. The friction factor in the transitional flow range 2300 = Re-w = 3000 was obtained by linear interpolation of the friction factor for Re-w = 2300, and Re-w = 3000. The influence of the formula for determining the water-side friction factor in the transitional flow regime on the Nusselt number was shown. Based on experimental data, heat transfer correlations were determined for the air and water-side Nusselt numbers for the low velocity of air and water. The semi-empirical correlation for the Nusselt number on the water-side derived by integrating the Reynolds averaged energy conservation equation for turbulent flow agrees well with the empirical correlation for the Nusselt number. The heat flow rate from hot water to cold air was calculated as a function of the water flow rate using a numerical model of the heat exchanger with the correlation for the water-side Nusselt number developed in the paper to compare it with the results of the measurements. The results of the numerical simulation agree very well with the results of the measurements.
机译:当空气和水的流量低时,许多板翅片和管式热交换器都在低负载下运行。管中的流动状态可以从层流过渡到湍流。在本文中,当雷诺数Re-w大于2300时,要确定过渡和湍流范围内水侧Nusselt数的半经验相关性。提出了过渡流动制度。通过对Re-w = 2300和Re-w = 3000的摩擦因数进行线性插值,可以得出过渡流量范围2300 <= Re-w <= 3000内的摩擦因数。示出了在过渡流态中努塞尔特数上的侧向摩擦系数。根据实验数据,确定了空气和水低速时空气和水侧Nusselt数的传热相关性。通过积分湍流的雷诺平均能量守恒方程得出的水侧努塞尔特数的半经验相关性与努塞尔特数的经验相关性很好。利用热交换器的数值模型,计算了从热水到冷空气的热量流量,该热量流量是水流量的函数,并与本文中开发的水侧努塞尔特数的相关性进行了比较,并将其与测量。数值模拟的结果与测量结果非常吻合。

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