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首页> 外文期刊>Applied thermal engineering: Design, processes, equipment, economics >On the recirculation of ammonia-lithium nitrate in adiabatic absorbers for chillers
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On the recirculation of ammonia-lithium nitrate in adiabatic absorbers for chillers

机译:冷却器绝热吸收器中氨-硝酸锂的再循环

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摘要

This paper presents a numerical model of single-effect absorption cycles with ammonia-lithium nitrate solution as the working pair and incorporating an adiabatic absorber. It is based on UA-ΔT_(lm) models for separate regions of plate-type heat exchangers and it assumes an approach factor to adiabatic equilibrium. The results are offered as a function of external temperatures. A loop circuit with a heat exchanger upstream the absorber produces subcooling for facilitating absorption process. The effect of the mass flow rate recirculated through the absorber is studied. Results show a diminishing return effect. The value at which the recirculation mass flow yields a reasonable performance is between 4 and 6 times the solution mass flow. With a heat transfer area 6 times smaller than with a conventional diabatic shell-and-tube type absorber, the adiabatic absorber configured with a plate heat exchanger yields a 2% smaller maximum COP and a 15-20% smaller cooling power.
机译:本文提出了以氨-硝酸锂溶液为工作对并结合了绝热吸收剂的单效吸收循环的数值模型。它基于UA-ΔT_(lm)模型,适用于板式换热器的各个区域,并假定了达到绝热平衡的逼近因素。提供的结果是外部温度的函数。在吸收器上游具有热交换器的环路会产生过冷,以促进吸收过程。研究了质量流量通过吸收器再循环的影响。结果显示出递减效应。再循环质量流量产生合理性能的值在溶液质量流量的4到6倍之间。传热面积是传统绝热管壳式吸收器的6倍,配备板式换热器的绝热吸收器的最大COP减小2%,冷却功率减小15-20%。

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