Ice Melting Performance of Solar-Assisted Cold Water Phase-Change Energy Heat Pump System

Author:

Yang Yujuan,Wu Ronghua,Yue Yuanbo

Abstract

The solar-assisted cold water phase-change energy heat pump system is a clean energy heating system which can effectively reduce the ice melting energy consumption of the cold-water phase-change energy heat pump system. In this paper, the operation mode of the solar-assisted cold-water phase-change energy heat pump system is given, three new ice melting methods are proposed, the performance of three ice melting modes using solar energy for thermal ice melting are simulated, and the influence of ice thickness on system operation is analyzed. The results show that among the three ice melting modes, the affected serial dual-source heat pump mode has the largest system COP, and the pure serial dual-source heat pump mode has the smallest annual total cost. Among the solar collector price, glycol price and electricity price, the change in solar collector price has the greatest impact on the total annual cost, and the change in glycol price has the least impact on the total annual cost. When the ice thickness exceeds 8 mm, the increase in the space heating of the solar-assisted cold water phase-change energy heat pump system becomes smaller, and the increase in heat consumption of ice melting becomes larger. The solar-assisted cold-water phase-change energy heat pump system can simultaneously melt ice and heat, and its economic benefits are significant, with good application and promotion value.

Publisher

MDPI AG

Subject

Energy (miscellaneous),Energy Engineering and Power Technology,Renewable Energy, Sustainability and the Environment,Electrical and Electronic Engineering,Control and Optimization,Engineering (miscellaneous),Building and Construction

Reference22 articles.

1. Academician Jin Yong: Green and low-carbon transformation is the core of future economic activities;Guo;Environ. Prot.,2022

2. Waste heat recovery system of waste bath hot water based on water source heat pump;Luo;Int. Core J. Eng.,2021

3. Evaluation and optimization of water source heat pump for district heating: A case study in steel plant

4. Comprehensive multi-criteria evaluation of water source heat pump systems in terms of building type, water source, and water intake distance

5. Energy saving and environmental assessment of heat pump systems for surface water sources in rivers and lakes;Wu;J. Harbin Inst. Technol.,2008

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