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储能系统技术 ★ 5.0

水合物储能耦合水源二氧化碳热泵系统性能的实验研究

Experimental investigation into the performance of a water-source carbon dioxide heat pump system integrated with hydrate energy storage

作者 Yumei Zhang · Guoyuan Ma · Lei Wang · Tiantian Cui · Junrui Ni
期刊 Energy Conversion and Management
出版日期 2025年1月
卷/期 第 333 卷
技术分类 储能系统技术
相关度评分 ★★★★★ 5.0 / 5.0
关键词 A novel carbon dioxide heat pump system with hydrate energy storage is proposed.
语言:

中文摘要

摘要 在《基加利修正案》和碳中和背景下,基于二氧化碳的水源热泵系统具有显著的发展潜力。为了提升基于二氧化碳的水源热泵系统的制冷性能,本文提出了一种新型的集成水合物储能的二氧化碳系统。该系统利用相变潜热储能技术,旨在实现削峰填谷,并提高基于二氧化碳的水源热泵系统全年运行的能源效率。本研究搭建了一个小容量、集成水合物储能的二氧化碳水源热泵系统实验平台,并开展了制冷与冷量储存性能的实验测试。结果表明,改进后系统的制冷性能比传统系统约提高19.4%。此外,在冷量储存过程中,由于二氧化碳参与水合物生成反应,系统处于非稳态运行状态,导致系统内循环的二氧化碳流量减少。在气体冷却器进水温度为32°C时,系统在冷量储存过程中的平均性能系数约为2.54。同时,拟合得到了压缩机频率、气体冷却器进水温度、气体冷却器进水流速以及蒸发温度对最优排气压力的预测关联式。该预测关联式的确定,为未来基于二氧化碳的水源热泵系统在跨临界与亚临界循环之间进行季节性运行调节策略奠定了基础。

English Abstract

Abstract In the context of the Kigali Amendment and carbon neutrality, carbon dioxide-based water-source heat pump systems hold significant development potential. To enhance the cooling performance of carbon dioxide-based water source heat pump systems, a novel carbon dioxide-based system with hydrate storage is presented. By leveraging latent heat storage technology, the system aims to achieve peak load shifting and improve the year-round operational energy efficiency of carbon dioxide-based water source heat pump systems. In this study, a small-capacity carbon dioxide-based water source heat pump system test setup with hydrate storage is constructed, and experimental tests on cooling and cold storage performance are carried out. The results demonstrated that the cooling performance of the modified system is approximately 19.4 % higher than that of conventional systems. In addition, the system operates in a non-steady state during the cold storage process due to the participation of carbon dioxide in the hydrate formation, which reduces the flow of carbon dioxide circulating in the system. The system’s average coefficient of performance during the cold storage process is approximately 2.54, with a gas cooler inlet-water temperature of 32 °C. In addition, the predictive correlations of compressor frequency, gas cooler water-inlet temperature, gas cooler water-inlet flow rate, and evaporation temperature on the optimal discharge pressure are fitted. The determination of the predictive correlation lays the foundation for future seasonal operation regulation strategies for carbon dioxide-based water source heat pump systems between transcritical and subcritical cycles.
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SunView 深度解读

该CO₂热泵水合物储能技术对阳光电源ST系列储能系统具有重要借鉴价值。研究中的相变储能削峰填谷策略与PowerTitan液冷储能系统的热管理优化方向一致,COP提升19.4%的性能改善为PCS热管理设计提供参考。跨临界/亚临界循环切换的预测控制模型可启发ESS多模式运行策略开发,特别是在极端温度环境下的效率优化。该技术路线可应用于充电站热管理系统,结合iSolarCloud平台实现季节性运行策略的智能调控与预测性维护。