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EVALUATION OF NATURAL WORKING FLUIDS FOR THE DEVELOPMENT OF HIGH TEMPERATURE HEAT PUMPS

机译:高温热泵开发的自然工作流体评价

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For a sustainable future in energy, the use of natural fluids in heat pump systems can provide an efficient solution to combat the ozone depletion and the global warming effects of synthetic working fluids. These natural fluids, though environmentally friendly, must be able to operate at high temperature in heat pumps in an efficient and cost effective way to be viable for the industry heat demand. High temperature heat pumps with heat source and heat sink temperatures ranging from 40°C to 200°C have unique challenges with natural working fluids. This paper evaluates the performance and use of natural working fluids for high temperature heat pumps. The analysis is based on simple thermodynamic cycles. A simulation tool coupled with a thermodynamic properties database is used to evaluate the operating limitations of the natural fluids. Natural fluids such as ammonia, hydrocarbon and hydrocarbon mixtures are considered. The hydrocarbon mixtures, benefitting from both adjusted thermodynamic properties and a higher evaporating temperature due to better fit to heat source temperature, shows greatest potential for the development of high temperature heat pumps. The mixtures R290+R600 and R600+R601 were able to expand the working limits of their pure fluids while improving COP by up to 13.5%.
机译:对于能源的可持续未来,热泵系统中的天然流体可以提供有效的解决方案,以打击臭氧耗尽和合成工作流体的全球变暖效果。这些天然流体虽然环保,但必须能够以高温在热泵中以高效和成本效益的方式运行,以便对工业热量需求可行。高温热泵,热源和散热温度范围为40°C至200°C与自然工作流体具有独特的挑战。本文评估了高温热泵的性能和使用自然工作流体。分析基于简单的热力学循环。耦合的仿真工具与热力学特性数据库耦合,用于评估天然流体的操作限制。考虑氨,烃和烃混合物等天然液体。烃混合物,从调整后的热力学性质和由于更好地拟合到热源温度,较高的蒸发温度显示出高温热泵的发育最大的潜力。混合物R290 + R600和R600 + R601能够扩展其纯净流体的工作限制,同时将COP改善至多13.5%。

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