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Performance study on a low-temperature absorption-compression cascade refrigeration system driven by low-grade heat

机译:低热量驱动的低温吸收压缩级联制冷系统性能研究

摘要

This paper presents a performance study on a low-temperature absorption-compression cascade refrigeration system (LACRS), which consists of an absorption subsystem (AS) and a vapor compression auto-cascade subsystem (CS). In the system, low-grade heat of AS is used to subcool the CS, which can obtain cold energy at -170 °C. A simulation study is carried out to investigate the effects of evaporating temperature and low-grade cooling capacity on system performance. The study results show that as low-grade cooling capacity from the AS is provided to the CS, high-grade cooling capacity increases, compressor power consumption decreases, and the COP of the CS therefore increases. Comparing with compression auto-cascade cycle, the largest COP improvement of LACRS is about 38%. The model is verified by experimental data. An additional high-grade cooling capacity is obtained experimentally at -170 °C. The study results presented in this paper not only demonstrate the excellent performance of the LACRS, but also provide important guidance to further system design, and practical application.
机译:本文介绍了一个低温吸收压缩级联制冷系统(LACRS)的性能研究,该系统由一个吸收子系统(AS)和一个蒸气压缩自动级联子系统(CS)组成。在系统中,AS的低级热量用于过冷CS,从而可以在-170°C下获得冷能。进行了仿真研究,以研究蒸发温度和低级制冷量对系统性能的影响。研究结果表明,随着从AS向CS提供的低级冷却能力,高级冷却能力增加,压缩机功耗降低,因此CS的COP增加。与压缩自动级联循环相比,LACRS的最大COP改进约为38%。该模型已通过实验数据验证。在-170°C的实验条件下可获得额外的高级冷却能力。本文提出的研究结果不仅证明了LACRS的卓越性能,而且为进一步的系统设计和实际应用提供了重要的指导。

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