废气预冷范围在热泵供热系统中的改进

V. Petrash, Yu.N. Polunin, N. Danichenko
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引用次数: 0

摘要

本文研究了一种改进型供热系统热泵在原有基础型基础上的发展过程中,对废气进行合理预冷的可能范围。该研究为确定冷凝器和蒸发器的能量流以及改进后的供热系统的能源效率建立了分析依赖关系。在此基础上,提出了回转窑排气初冷却的合理范围,其上限首先由回转窑排气初冷却温度决定。研究结果表明,传统降温供热系统的合理耗水量比为0.3 ~ 0.9。与此同时,在系统的操作调节过程中注意到能源效率的提高,技术和家庭用途的热载体成本比例下降。废气的预冷程度在0.35-0.5之间,这在很大程度上取决于它们的初始温度,在供暖和热水供应系统中,相应的热载体流量减少。在接触相互作用过程中,加热介质和被加热介质的消耗的合理比例在0.2-1.2范围内,这一比例很大程度上取决于废气的初始温度。对于低温废气(直至500С),所分析比率的倒数值与相应的灌溉系数值在逻辑上是一致的。分析研究的结果建立了能量流在冷凝器和蒸发器中的多因子依赖关系,并确定了改进的热泵供热系统的能源效率,在此基础上揭示了回转窑废气可能预冷的一般范围。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
RANGE OF EXHAUST GASES PRE-COOLING IN THE IMPROVED HEAT PUMP SYSTEM OF HEAT SUPPLY
The paper studies the range of possible and rational pre-cooling of exhaust gases in an improved heat pump of heating supply system in the development of its previously proposed basic version. The research has established analytical dependences for determining the energy flows of the condenser and evaporator, as well as the energy efficiency of the improved heat supply system. On their basis, a rational range of preliminary cooling of exhaust gases of rotary kilns was revealed, the upper level of which is determined, first of all, by their initial temperature. It has been established that the rational ratio of water consumption for heating systems with traditional temperature drops and hot water supply is in the range of 0.3-0.9. At the same time, an increase in energy efficiency is noted in the process of operational regulation of systems with a decrease in the ratio of the costs of heat carriers for technological and household purposes. The degree of precooling of exhaust gases, which significantly depends on their initial temperature, is in the range of 0.35-0.5 with a decrease in the corresponding flow rates of heat carriers in heating and hot water supply systems. The rational ratio of the consumption of the heating and heated medium in the process of contact interaction, which significantly depends on the initial temperature of the exhaust gases, is in the range of 0.2-1.2. For low-temperature waste gases (up to 500С), the reciprocal values of the analyzed ratio logically agree with the corresponding values of the irrigation coefficient. The results of the analytical study established multifactorial dependences of energy flows in the condenser and evaporator, as well as determining the energy efficiency of an improved heat pump of the heat supply system, on the basis of which the general range of possible pre-cooling of exhaust gases from rotary kilns was revealed.
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