高效多级蒸汽压缩热泵机组的建模特点

Y. Antipov, I. Shatalova, K. V. Shkarin, M. Lapin, D. Sokolov, Artem O. Grinin, Kirill P. Toptygin
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引用次数: 0

摘要

燃料和能源成本的增加以及传统化石燃料燃烧造成的环境恶化,导致俄罗斯和国外对利用热泵机组在工业、住房和公共服务的热能中使用二次能源的节能技术产生了极大的兴趣。本文对国内外著名的两级热泵机组进行了分析,并与单级热泵机组相比较,揭示了其优点。提出了一种高效多级蒸汽压缩热泵机组的建模方法。此外,还提出了一种计算具有高性能系数的多级热泵机组的方法。此外,还给出了四级热泵机组热力循环的计算实例。分析了级数对单级热泵机组性能系数提高的影响,以及高电位热源温度和低电位热源温度之间的温差对性能系数的影响。此外摘要在热泵机组出口处的高电位热源的加热温度与温度之间存在恒定差的条件下,分析了在热泵机组运行过程中,高电位热源在加热前的温度初始值对不同级数性能系数值的影响低电位热源。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Features of modeling a highly efficient multistage vapor compression heat pump unit
The increase in the cost of fuel and energy resource and the deterioration of the environment from the combustion of traditional fossil fuel, have led to a great interest in energy-saving technology by using secondary energy resources in the thermal energy of industrial, housing and communal services using heat pump units in Russia and abroad. This paper analyzes the well-known two-stage heat pump units, and reveals their advantages in comparison with single-stage. The modeling of a highly efficient multistage vapor compression heat pump unit is proposed. Moreover, a method for calculating a multistage heat pump unit with a high coefficient of performance is presented. In addition, an example of calculating the thermodynamic cycle of a four-stage heat pump unit is presented. The influence of the number of stages on the increase in coefficient of performance in relation to a single-stage heat pump unit, the effect of the temperature difference between the temperature of the high-potential heat source and the temperature of the low-potential heat source on the coefficient of performance were analyzed. In addition, the influence of the initial value of the temperature of the high-potential heat source before heating during the course in the heat pump unit on the value of coefficient of performance for a different number of stages is analyzed under the condition of a constant difference between the heating temperature of the high-potential heat source at the outlet of the heat pump unit and the temperature of the low-potential heat source.
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