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Experimental study of a new ejector-absorption refrigeration cycle driven by multi-heat sources

机译:多热源驱动的新喷射器吸收制冷循环的实验研究

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This paper proposes a new ejector-absorption refrigeration cycle driven by two heat sources at different temperature levels to realize the economic optimization in low-grade heat recovery application. The cycle uses the exergy of steam from a high-pressure generator and entrains the steam out of a low-pressure generator. The quantity of the steam that comes out of the low-pressure generator for the new cycle is greater than that of a conventional double-effect cycle, which means that more low-temperature-level heat, such as non-focused solar thermal heat, can be used. Therefore, the heat required to input into the system and the temperature level required to drive the cycle declines. In this study, water-lithium bromide as the working pair and a hot air temperature level ranging from 185 degrees C to 215 degrees C is used as the high level driving heat source, while the hot water heated by a solar energy collector is the low level driving heat source. In some conditions of the new cycle's COP, 0.95 can be achieved for refrigeration, which is about 20% higher than that of the single-effect cycle. Besides this, the proposed chiller requires lower driven temperature than that of a conventional double-effect cycle.
机译:本文提出了一种在不同温度水平下由两个热源驱动的新的喷射器吸收制冷循环,以实现低级热回收应用中的经济优化。该循环使用高压发生器的蒸汽驱动,并将蒸汽从低压发生器夹出来。出于新循环的低压发生器出来的蒸汽的量大于传统的双效循环,这意味着更低的低温水平热量,例如非聚焦的太阳能热量,可以使用。因此,输入到系统中所需的热量和驱动循环所需的温度水平下降。在本研究中,使用作为工作对的水锂溴化物和从185℃至215℃的热空气温度水平作为高水平驱动热源,而太阳能收集器加热的热水是低电平的水平驾驶热源。在新循环警察的某些条件下,可以实现0.95的制冷,其比单效周期高约20%。除此之外,所提出的冷却器需要低于传统的双效周期的驱动温度较低。

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