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太阳能热泵与集热器及基于相变材料的热能储存系统在供热应用中的集成进展与挑战
Progress and challenges in the integration of solar heat pumps with thermal collectors and PCM-based thermal energy storage systems for heating applications
| 作者 | Sajid Abbas · Atazaz Hassan · Jinzhi Zhoua · Emmanuel Bisengiman · Saima Yousuf · Muhammad Hassan · Yanping Yuana |
| 期刊 | Solar Energy |
| 出版日期 | 2025年1月 |
| 卷/期 | 第 301 卷 |
| 技术分类 | 储能系统技术 |
| 技术标签 | 储能系统 |
| 相关度评分 | ★★★★★ 5.0 / 5.0 |
| 关键词 | 太阳能辅助热泵系统 碳中和 碳达峰 太阳能集热器 相变材料 |
语言:
中文摘要
摘要 实现碳中和与全球碳达峰目标最流行且最具前景的方法之一是太阳能辅助热泵系统(SAHP),该系统具有二氧化碳(CO₂)排放量低和能源效率高的优点。通过将高效热泵(HP)与太阳能集热器(STC)以及具有高蓄热密度的相变材料(PCM)相结合,可显著提升其性能。因此,将热泵系统与热集热器及基于相变材料的热能储存(TES)系统耦合的技术引起了广泛关注。本研究对SAHP系统结合太阳能热集热器(STCs)和相变材料(PCM)系统在设计、发展与应用方面的最新进展进行了全面且及时的综述。本文还聚焦于PCM封装技术在SAHP系统中用于太阳能热能储存的应用,强调了其在提高蓄热系统效率以及除霜过程中的作用。通过对这些领域先进技术的系统性回顾可知,SAHP-TES-STC是实现住宅、商业和工业应用中高效、低碳供热的一条极具前景的技术路径。此外,本文讨论了太阳能集热器与基于PCM的储能技术与热泵系统结合的经济技术评价,结果表明此类系统具备高效性和可持续性,但其全面推广应用仍依赖于成本降低和性能进一步提升。当前研究结果表明,未来亟需开发高效的热集热器,集成基于人工智能的智能控制技术,并研发具有更高导热性和稳定性的高性能先进相变材料。同时,针对不同气候条件——尤其是在寒冷地区——优化系统性能,对于保障全年连续运行至关重要。最后,本文还探讨了当前面临的主要问题、相应的解决方案以及潜在的未来研究方向,从而推动住宅和工业领域可持续供热技术的发展。
English Abstract
Abstract One of the most popular and promising approaches to reaching carbon neutrality and global carbon peaking is the solar-assisted heat pump system (SAHP), which offers the benefits of low carbon dioxide (CO 2 ) emissions and great energy efficiency. The performance of an energy-efficient heat pump (HP) can be significantly enhanced by integrating it with a solar thermal collector (STC) and phase change material (PCM) that has substantial heat storage densities. Consequently, there has been a lot of interest in heat pump systems coupled with thermal collectors and PCM-based thermal energy storage (TES) systems. This research offers a comprehensive and up-to-date synthesis of current developments in designing, advancing, and application of SAHPs in combination with solar thermal collectors (STCs) and phase change material (PCM) systems. This study also focuses on the solar thermal energy storage applications of PCM encapsulation for SAHP systems and highlights their ability to improve heat storage system efficiency and the process of defrosting. It is clear from a thorough review of advanced technologies in these fields that SAHP -TES- STC is a promising pathway to efficient and low-emission heating for residential, commercial, and industrial applications. Moreover, the techno-economic evaluation of solar thermal collectors and PCM-based energy storage technology with HP systems is discussed and shows that they are efficient and sustainable, yet full adoption depends on further cost and performance improvement. The current study findings suggest a need for developing efficient thermal collectors, integrating AI-based smart control technologies, and high-performance advanced PCMs with better thermal conductivity and stability. Furthermore, maximizing system performance for different climates, especially in colder places, is critical to ensuring year-round operation. In the end, the problems together, their solutions, and potential future study areas are also addressed, which contributes to advancing sustainable heating technologies for residential and industrial applications.
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SunView 深度解读
该太阳能热泵与相变储能集成技术对阳光电源储能系统具有重要启示。文中PCM热储能与太阳能协同的思路可应用于ST系列PCS的热管理优化,通过相变材料提升PowerTitan储能系统的温控效率和低温性能。智能控制技术的融合与iSolarCloud平台的预测性维护能力高度契合,可开发针对冷热电三联供场景的GFM控制策略。建议结合SiC功率器件的高效特性,探索光储热一体化解决方案,拓展工商业供暖应用市场,推动碳中和目标实现。