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光伏发电技术 储能系统 ★ 4.0

应用太阳能驱动喷射器过冷技术提升超市CO2制冷系统性能

Applying solar-powered ejector subcooling to supermarket CO2 refrigeration system for improving the performance

作者 Deyong Ran · Dewei Lv · Qichao Yang · Liansheng Li · Guangbin Liu · Yuanyang Zhao
期刊 Solar Energy
出版日期 2025年1月
卷/期 第 301 卷
技术分类 光伏发电技术
技术标签 储能系统
相关度评分 ★★★★ 4.0 / 5.0
关键词 A novel solar-powered ejector subcooling CO2 refrigeration system (ES-SCRS) is proposed.
语言:

中文摘要

摘要 超市CO2制冷系统在高温地区运行时能效下降的问题,一直是制约该系统推广应用的关键因素。为解决这一问题,本文提出一种将太阳能驱动喷射器过冷系统与超市CO2制冷系统相结合的集成方案(ES-SCRS),利用太阳能提升系统的整体性能。建立了系统的数学模型,并通过参数分析研究了太阳辐射强度和环境温度等关键参数对系统性能的影响。以中国广州为研究对象,采用性能系数(COP)和季节性能效率比(SEER)作为评价指标,分析了ES-SCRS相较于传统超市CO2制冷系统(SCRS)的节能潜力。结果表明,当环境温度为40°C、辐射强度为300–1200 W/m²时,COPm的提升幅度为6.52%–24.21%。在典型日条件下,夏季ES-SCRS相对于SCRS的COPm提升最为显著,范围为4.56%–20.07%;同时,春季、秋季和冬季的COPm提升分别达到2.14%–11.56%、1.51%–13.57%和3.35%–11.49%。ES-SCRS在夏季的SEER相比SCRS提高了5.01%,总耗电量较SCRS降低了4.33%。因此,本文所提出的系统能够有效提升CO2超市制冷系统的性能,为该系统在高温环境下的应用提供了可行解决方案。

English Abstract

Abstract The problem of energy efficiency degradation of supermarket CO 2 refrigeration system when operating in high temperature region has been the key limitation of the application of the system. To address this problem, this article proposes a solar-powered ejector subcooling system integrated with supermarket CO 2 refrigeration system (ES-SCRS). The performance of the system is enhanced by utilizing solar energy. The mathematical model is established and the effects of key parameters such as solar radiation intensity and ambient temperature on the performance are investigated through parametric analysis. Guangzhou in China is selected as the research object, applying coefficient of performance (COP) and seasonal energy efficiency ratio (SEER) as evaluation indicators to analyze the energy saving potential of ES-SCRS compared to the conventional supermarket CO 2 refrigeration system (SCRS). The results show that when ambient temperature is 40°C and radiation intensity is 300–1200 W/m 2 , the COP m enhancement is 6.52 %-24.21 %. On typical days, the COP m enhancement of ES-SCRS compared to SCRS in summer is most obvious, ranging from 4.56 % to 20.07 %. Meanwhile, COP m improvement during spring, autumn, and winter is 2.14 %-11.56 %, 1.51 %-13.57 %, and 3.35 %-11.49 %, respectively. The SEER of ES-SCRS is increased by 5.01 % over SCRS during the summer and the total power consumption is decreased by 4.33 % compared to SCRS. Therefore, the proposed system in article can enhance the performance of the CO 2 supermarket refrigeration system and provide a solution for the application in high temperature environments.
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SunView 深度解读

该光伏驱动CO2制冷技术对阳光电源光储一体化方案具有重要启示。可结合SG系列光伏逆变器的MPPT优化技术,配合ST系列储能变流器,构建商超冷链专用能源系统。系统在高温环境下COP提升6.52%-24.21%,夏季SEER提升5.01%,验证了光储协同在工商业场景的节能潜力。建议将iSolarCloud平台扩展至冷链负荷预测与光储联合调度,开发面向商超、冷库等高耗能场景的智慧能源解决方案,推动分布式光储在制冷领域的深度应用。