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HIGH-TEMPERATURE HEAT PUMPS BASED ON NATURAL WORKING FLUIDS TO PRODUCE DISTRICT HEATING FROM INDUSTRIAL WASTE HEAT

机译:基于自然工作流体的高温热泵,可产生工业废热的区域供热

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The amount of industrial waste heat produced in Europe annually corresponds to the total annual heating demand in buildings. Common barriers for utilizing this heat are the lack of required infrastructure, i.e. a district heating (DH) network, and too low temperature of the waste heat. To address the last-mentioned barrier, high-temperature heat pumps may be applied to upgrade the heat. This study evaluates the possibility of utilizing a heat pump to supply DH using industrial wastewater at 40 °C as a heat source. Different heat pump technologies based on natural refrigerants were compared at steady state operating conditions: single- and two-stage ammonia, and ammonia-water absorption-compression (hybrid) heat pumps. The highest COP as well as the lowest operating pressure were obtained with a two-stage hybrid heat pump. Moreover, the COP for hybrid heat pumps was hardly affected by an increase in the desired DH supply temperature.
机译:欧洲每年产生的工业废热量相当于建筑物中每年的总供热需求。利用这种热量的常见障碍是缺少所需的基础设施(即区域供热(DH)网络)以及废热温度太低。为了解决最后提到的障碍,可以使用高温热泵来提高热量。这项研究评估了使用热泵以40°C的工业废水作为热源来供应DH的可能性。在稳态运行条件下比较了基于天然制冷剂的不同热泵技术:单级和二级氨,以及氨水吸收压缩(混合)热泵。使用两级混合式热泵可获得最高的COP和最低的工作压力。此外,用于混合式热泵的COP几乎不受所需的DH供给温度升高的影响。

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