Automatic Control of the Hybrid Heat Pump for Heating of Multi-Storey Buildings

IF 0.3 Q4 ENERGY & FUELS Problemele Energeticii Regionale Pub Date : 2022-05-01 DOI:10.52254/1857-0070.2022.2-54.07
Mihail Shit, A. Zhuravlev, Dmitry M. Timchenko
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Abstract

The work is devoted to control systems for hybrid heat pumps using the heat of return network water and outside air, designed to operate in district heating systems based on CHPP. The aim of the research is to develop control systems for heat pump operating on qualitative, quantitative and quantitative-qualitative heat schedules. The set goal is achieved by introducing two controlled heat exchangers: one of "refrigerant-water" type, installed after the evaporator and "refrigerant-air" type, installed after the gas cooler. The most important results are the hydraulic scheme of the heat pump, the control system scheme of gas superheater installed after the evaporator and gas supercooler installed after the gas cooler. The significance of the obtained results consists in obtaining a technical solution, which ensures the operation of the heat pump at different heating schedules. Equations of heat pump apparatuses have been obtained, in which the influence of flow rate and temperature of the working body on the heat pump operating mode is emphasized. The obtained heat balance equations allowed obtaining structures of automatic control systems for heat exchange apparatuses, compressors and controlling valves of the hybrid heat pump. The developed scheme of the heat pump air duct allowed using a minimum of heat of return network water in the heat pump. It has been established that the scheme of this automatic control system should include a functional converter linking the temperature of the outside air and the coordinates of the working body state at the outlet of the gas subcooler.
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多层建筑供暖用混合式热泵的自动控制
这项工作致力于利用回水管网水和外部空气的热量的混合热泵控制系统,设计用于基于热电联产的区域供热系统。研究的目的是开发热泵在定性、定量和定量-定性热计划下运行的控制系统。通过引入两个受控热交换器来实现设定的目标:一个是“制冷剂-水”型热交换器,安装在蒸发器之后,另一个是“制冷剂-空气”型热交换器,安装在燃气冷却器之后。最重要的结果是热泵的水力方案,蒸发器后安装气体过热器和气体过冷却器后安装气体过冷却器的控制系统方案。所得结果的意义在于得出了保证热泵在不同加热时间下正常运行的技术方案。得到了热泵设备的方程,其中着重考虑了工作体的流量和温度对热泵运行方式的影响。得到的热平衡方程可以得到混合热泵换热装置、压缩机和控制阀自动控制系统的结构。所开发的热泵风管方案允许在热泵中使用最小的回管网水的热量。确定了该自动控制系统的方案应包括一个连接外部空气温度和气体过冷器出口工作体状态坐标的功能转换器。
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来源期刊
CiteScore
0.70
自引率
33.30%
发文量
38
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