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Investigation of a refrigeration system based on combined supercritical CO2 power and transcritical CO2 refrigeration cycles by waste heat recovery of engine

机译:基于组合超临界CO2功率和跨临界二氧化碳制冷循环的制冷系统研究发动机

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The majority of the energy in the fuel burned in the internal combustion engines is lost in the form of waste heat. To address this issue, waste heat recovery technology has been proposed to increase the overall efficiency of engine. This paper investigates a heat driven cooling system based on a supercritical CO2 (S-CO2) power cycle integrated with a transcritical CO2 (T-CO2) refrigeration cycle, aiming to provide an alternative to the absorption cooling system. The combined system is proposed to produce cooling for food preservation on a refrigerated truck by waste heat recovery of engine. In this system, the S-CO2 absorbs heat from the exhaust gas and the generated power in the expander is used to drive the compressors in both S-CO2 power cycle and T-CO2 refrigeration cycle. Unlike the bulky absorption cooling system, both power plant and vapour compression refrigerator can be scaled down to a few kilo Watts, opening the possibility for developing small-scale waste heat driven cooling system that can be widely applied for waste heat recovery from IC engines of truck, ship and train. A new layout sharing a common cooler is also studied. The results suggest that the concept of S-CO2/T-CO2 combined cycle sharing a common cooler has comparable performance and it is thermodynamically feasible. The heat contained in exhaust gas is sufficient for the S-CO2/T-CO2 combined system to provide enough cooling for refrigerated truck cabinet whose surface area is more than 105 m(2). (C) 2020 The Author(s). Published by Elsevier Ltd.
机译:在内燃机中燃烧的燃料中的大部分能量以废热的形式丧失。为了解决这个问题,已经提出了废物热回收技术来提高发动机的整体效率。本文研究了基于与跨临界CO2(T-CO2)制冷循环集成的超临界CO2(S-CO2)功率循环的热驱动冷却系统,其目的是提供吸收冷却系统的替代。提出了组合的系统,通过发动机的废热回收来生产用于冷藏卡车上的食物保存的冷却。在该系统中,S-CO2吸收来自废气的热量,并且膨胀机中的产生功率用于驱动S-CO2功率循环和T-CO2制冷循环中的压缩机。与庞大的吸收冷却系统不同,电厂和蒸汽压缩冰箱都可以缩小到几千瓦,打开开发小型废热驱动冷却系统的可能性,可以广泛应用于IC发动机的废热回收卡车,船和火车。还研究了一个共享公共较冷的新布局。结果表明,S-CO2 / T-CO2组合循环共享普通冷却器的概念具有相当的性能,并且它是热力学上可行的。废气中包含的热量足以用于S-CO2 / T-CO2组合系统,为冷藏卡车柜提供足够的冷却,其表面积大于105米(2)。 (c)2020提交人。 elsevier有限公司出版

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