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Experimental study and comparison of thermochemical resorption refrigeration cycle and adsorption refrigeration cycle

机译:热化学吸收式制冷循环与吸附式制冷循环的实验研究与比较

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摘要

The cycle characteristics of thermochemical resorption refrigeration system were investigated, and the experimental comparison between the basic resorption cycle and adsorption cycle was performed. Experimental results showed that the conversion rate during the regeneration phase in the resorption refrigeration cycle was higher than that in the adsorption refrigeration cycle at the same constraining temperatures. However, the conversion rate was lower during the cold production phase in the former cycle than in the latter cycle. Moreover, the reaction plateau temperature in the resorption cycle was lower than that in the adsorption cycle at the same regeneration temperature and heat sink temperature. The thermal capacity of metallic part of reactor has a stronger influence on the system performance for the resorption cycle compared with the adsorption cycle. At a regeneration temperature of 180 °C, heat sink temperature of 25 °C and refrigeration temperature of 10 °C, theoretical results showed the COP of a simple test unit operating on the resorption cycle to be 0.40. The resorption refrigeration technology is more suitable for cold production in some special situations where the presence of liquid is not desirable.
机译:研究了热化学吸收式制冷系统的循环特性,并进行了基本吸收循环与吸附循环的实验比较。实验结果表明,在相同的约束温度下,吸收制冷循环中再生阶段的转化率高于吸附制冷循环中的转化率。然而,在前一循环的冷生产阶段中的转化率低于后一循环。此外,在相同的再生温度和散热器温度下,在吸收循环中的反应平稳温度低于在吸收循环中的反应平稳温度。与吸附循环相比,反应器金属部分的热容对吸附循环的系统性能影响更大。在再生温度为180°C,散热器温度为25°C,制冷温度为10°C的情况下,理论结果表明,在吸收循环上运行的简单测试装置的COP为0.40。在某些不希望有液体存在的特殊情况下,吸收式制冷技术更适合于冷生产。

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