太阳能吸附制冷机性能的能量分析

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引用次数: 0

摘要

本文对太阳能吸附冷产过程的研究作出了贡献。本文主要对沸石-水偶联吸附式太阳能制冷机进行了建模、仿真和施胶研究。为此,建立了吸附式太阳能制冷机各部件传热传质数学模型。结果表明,吸附式太阳能制冷机的性能取决于几个参数。例如,在太阳最大辐射为990W/m2时,吸收板、沸石和冷凝器的最高温度分别为396 K(123℃)、395 K(122℃)和320 K(47℃)。蒸发器温度最低可降至276 K(3℃)。此外,模拟结果还表明,气候条件对太阳能制冷机的运行也有很大的影响。相对于气候参数,3月和12月的产冷量、平均太阳通量密度和cop分别为6.391 MJ和4.642 MJ, 590 W/m2和514 W/m2, 0.25和0.21。同样,8月和10月日平均太阳通量密度分别为436 W/m2和480 W/m2, cop分别为0.11和0.15,总冷量分别为2.12和3.1 MJ。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
ENERGY ANALYSIS OF THE PERFORMANCE OF A SOLAR ADSORPTION REFRIGERATOR
This paper presents a contribution to the study of the process of cold production by adsorption from solar energy. This study mainly includes a modeling, simulation and sizing study of an adsorption solar refrigerator using the zeolite-water couple. For this purpose, a mathematical model of heat and mass transfers in each component of the adsorption solar refrigerator was developed. The results show that the performance of the adsorption solar refrigerator depends on several parameters. For example, with a maximum solar radiation of 990W/m2, the maximum temperatures of the absorber plate, zeolite and condenser are 396 K (123°C), 395 K (122°C) and 320 K (47°C), respectively. The evaporator temperature can drop to a minimum temperature of 276 K (3°C). Furthermore, the simulation showed that the climatic conditions also have a great influence on the operation of the solar refrigerator. Thus, the amounts of cold produced, the average solar flux densities and the COPs during March and December are 6.391 MJ and 4.642 MJ, 590 W/m2 and 514 W/m2 and 0.25 and 0.21, respectively, relative to the values of the climate parameters. Similarly, with a daily average solar flux density of 436 W/m2 and 480 W/m2 respectively for the months of August and October, the COPs are 0.11 and 0.15 respectively, with a total amount of cold produced of 2.12 and 3.1 MJ respectively.
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