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ANALYSIS OF A MODIFIED CYCLE DESIGN OF A GAS-FIRED ABSORPTION HEAT PUMP WITH A NEW FLUE GAS HEAT EXCHANGER

机译:新型烟气换热器的燃气吸收式热泵的修正循环设计分析

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Gas-fired ammonia/water absorption heat pumps (GAHP) can contribute substantially to the reduction of greenhouse gases in the context of heating. In recent years, only small increases of the efficiency could be achieved. For a significant increase a modification of the heat pump cycle is necessary.Common flue gas heat exchangers in GAHPs use the return flow of the heat distribution system to cool the flue gas below the dew point to condense water vapour. Especially in case of retrofit applications, the temperature in the heating system is too high to condense water vapour in the flue gas. Latent heat is thus dissipated into the environment. To use the latent heat under all operating conditions, a refrigerant cooled flue gas heat exchanger, which is installed between the evaporator and the absorber, is investigated within this work.A model based on mass, species, and energy balances was used to compare the common cycle design efficiency with the novel one. Measurements were conducted on an absorption heat pump with a heating capacity of 3 kW. Due to the new cycle design superheated ammonia vapour enters the absorber which leads to the necessity of investigations of potential impacts on the absorption behaviour.
机译:燃气氨/吸水热泵(GAHP)在加热的过程中可以大大减少温室气体的排放。近年来,只能实现很小的效率提高。为了显着增加热泵循环的必要性。 GAHP中常见的烟气热交换器使用热量分配系统的回流将烟气冷却至露点以下,以冷凝水蒸气。特别是在改造应用中,加热系统中的温度太高而无法冷凝烟气中的水蒸气。潜热因此散发到环境中。为了在所有运行条件下使用潜热,在这项工作中,对安装在蒸发器和吸收器之间的制冷剂冷却的烟道气热交换器进行了研究。 一个基于质量,种类和能量平衡的模型被用来比较普通循环设计效率和新颖的设计效率。在吸收功率为3 kW的吸收式热泵上进行测量。由于采用了新的循环设计,过热的氨蒸气进入吸收塔,因此有必要研究对吸收行为的潜在影响。

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