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储能系统技术 储能系统 ★ 5.0

用于全年节能的太阳能加热与辐射冷却集成双功能系统的理论研究

Theoretical studies on a dual-function system integrating solar heating and radiative cooling for year-round energy saving

作者 Jiangfeng Guo · Zhiwei Wu · Fenghua Zhang · Hongjie Yu · Caifu Qian
期刊 Solar Energy
出版日期 2025年1月
卷/期 第 288 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 A dual-function system of solar heating and radiative cooling was proposed.
语言:

中文摘要

摘要 太阳(6000 K)和外太空(3 K)是巨大且可持续清洁的热能与冷能来源。如何全年充分高效利用这两种能源以应对能源危机和气候变化,仍然是一个挑战。本研究提出了一种集成太阳能加热(SH)与辐射冷却(RC)技术的双功能系统,该系统具有四种运行模式:蓄热、供热风供应、蓄冷和供冷风供应。在太阳能加热与蓄热模式中,采用基于石墨烯和银的纳米流体作为传热介质,其热量通过换热器传递给空气;在蓄冷与供冷风模式中,采用在大气窗口具有高发射率的优化多层薄膜结构,并以水和空气作为传热介质。通过四种模式之间的相互切换与调节,该系统可实现全年的连续运行。对于面板面积为100 m²的系统,在太阳能加热模式下的月平均等效电能可达16,590 kW∙h,在辐射冷却模式下超过8,200 kW∙h,显示出巨大的应用潜力。通过调节介质的质量流量即可方便地调控介质温度,仅通过改变空气质量流量即可便捷地调节送风温度。本研究对于深化理解太阳能加热与辐射冷却技术,以及应对能源与环境问题具有重要意义。

English Abstract

Abstract The Sun (6000 K) and outer space (3 K) are huge reservoirs of heat and cold sources that are sustainable and clean. How to fully utilise these two types of energy throughout the year to address the energy crisis and climate change remains a challenge. In this study, a dual-function system integrating solar heating (SH) and radiative cooling (RC) technologies is proposed, which has four operating modes: heat storage, heating air supply, cold storage and cooling air supply. In the SH and heat storage modes, Graphene and Ag-based nanofluid is adopted as the medium, its heat is transferred to the air through a heat exchanger. In the cold storage and cooling air supply modes, an optimised multi-layer film structure with high emissivity in the atmospheric window is employed, and water and air are employed as the mediums. Through the mutual adjustment of four modes, the system can achieve year-round operation. The system with a panel area of 100 m 2 has a monthly average equivalent electrical energy of 16,590 kW∙h in SH mode and over 8200 kW∙h in RC mode, demonstrating enormous potential application. The temperature of mediums can be easily adjusted by changing their mass flow rate, and the required temperature of supplying air is convenient to adjust by only changing its mass flow rate. This study is of great significance for deepening the understanding of SH and RC technologies and dealing with energy and environmental issues.
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SunView 深度解读

该太阳能供热与辐射制冷双功能系统对阳光电源储能产品线具有重要启示。系统通过四种运行模式实现全年能量管理,与我司PowerTitan储能系统的多场景应用理念高度契合。其热/冷存储技术可与ST系列PCS结合,优化能量时移策略;纳米流体传热技术为液冷储能系统提供新思路。月均16590kW·h供热和8200kW·h制冷能力,验证了冷热电三联供在工商业储能的应用潜力。建议将该技术融入iSolarCloud平台,开发智能冷热电协同控制算法,提升综合能效管理能力,拓展零碳园区解决方案。