热发生器-气泡泵临界沸腾热流和初始沸腾热流模拟的新方法

Q3 Engineering
Ali Benhmidène, Lena J-T Strömberg
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引用次数: 0

摘要

扩散-吸收循环的热发生器-气泡泵正常工作的主要因素是维持泵送流体的必要汽化所需的热量。热量过多或相反会降低其效率。本研究旨在模拟吸收扩散机发生器-气泡泵内临界热流密度(CHF)和起始核沸腾热流密度(ONBHF)与质量流量的关系。所研究的气泡泵是直径在4 ~ 12mm之间的垂直加热管,管内流动着氨水混合物。为了实现这一目标,采用了一种基于压降随质量流量变化曲线的新方法。采用双流体模型对压降进行了模拟。将模拟的临界热通量作为质量流率的函数,与由四个关系式得到的结果进行了比较。与Shah和Zhang等人的对比得到了很好的一致性。模拟结果允许定义在相同应用中应使用的最佳质量流量范围。我们发现质量流量应该大于40kg/m²。S为研究管的直径。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A new approach to simulate the critical and the onset nucleate boiling heat fluxes for a thermal generator-bubble pump
The main factor for the proper functioning of the thermal generator-bubble pump of the diffusion-absorption cycles is the amount of heat required to maintain the necessary vaporization for pumping fluids. An excess of heat or the opposite reduces its efficiency. The present study aims to simulate the critical heat flux (CHF) and the onset nucleate boiling heat flux (ONBHF) versus mass flow in the generator-bubble pump of absorption-diffusion machines. The bubble pump studied is a vertical heated tube of diameter range is between 4 and 12mm, in which flowing an ammonia-water mixing. To achieve our goal a new approach based on the curves of the variation of the pressure drop as a function of the mass flow rate has been adopted. The pressure drops have been simulated using the two-fluid model. The critical heat fluxes simulated as a function of mass flow rate are compared with those obtained from four correlations. A good agreement has been obtained with the correlation of Shah and Zhang et al. Simulation results allow defining the optimum range of mass flow that should be used in the same application. We found that the mass flow rate should be higher than 40kg/m².s for the diameters of the studied tubes.
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