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可切换自然冷却方式在光伏/热 collectors 中高效热管理的比较分析
Comparative analysis of switchable natural cooling methods for efficient thermal management in photovoltaic/thermal collectors
| 作者 | Siyan Chan · Ken Chen · Kongfu Hu · Lingfeng Shi · Yu Pei · Bin Zhao · Gang Pei |
| 期刊 | Applied Energy |
| 出版日期 | 2025年1月 |
| 卷/期 | 第 385 卷 |
| 技术分类 | 光伏发电技术 |
| 技术标签 | 储能系统 |
| 相关度评分 | ★★★★★ 5.0 / 5.0 |
| 关键词 | Investigate PV/T collector configurations for switchable cooling function and enhanced thermal regulation capacity. |
语言:
中文摘要
摘要 光伏/热(PV/T)集热器能够同时产生热量和电能,但在炎热天气下会出现过热现象,显著影响其性能和使用寿命。为解决这一问题,本研究提出在传统PV/T集热器中引入可切换的散热模式,以增强热管理能力。该方法可在热需求较高时实现高效热量收集,并在热需求较低时及时进行散热。本文介绍了四种具有不同可切换散热结构的PV/T集热器,并利用经过验证的二维稳态数学模型对其进行分析。结果表明,在合肥典型的夏季晴天条件下,这四种可切换冷却模式可显著降低停滞温度,降幅范围为26.2°C至46.6°C,从而将发电效率提高2.22%至3.94%。此外,随着环境温度升高和太阳辐射强度增强,PV/T集热器的调节与冷却效果更加明显。为了说明各类型之间的性能差异,本文建立了每种PV/T集热器在散热模式下的能量流图,突出展示了太阳能转换过程及散热效果的差异。这些发现为未来具备多模式运行能力和增强过热保护功能的PV/T集热器设计提供了关键性指导。
English Abstract
Abstract Photovoltaic/thermal (PV/T) collectors can produce heat and electricity simultaneously, but the overheating phenomenon also occurs on hot days, significantly compromising their performance and lifetime. To address this issue, this study suggests incorporating switchable heat dissipation modes into conventional PV/T collectors to enhance thermal management ability. Such an approach allows for efficient heat collection when the thermal demand is high and timely heat dissipation during periods of low heat demand. In this paper, four types of PV/T collectors with different switchable heat dissipation configurations are introduced and analysed using validated two-dimensional steady-state mathematical models. The results demonstrate that, under a typical summer day in Hefei, the four switchable cooling modes can dramatically drop the stagnation temperature , ranging from 26.2 °C to 46.6 °C, thereby improving electrical efficiency by 2.22 % to 3.94 %. In addition, the regulation and cooling effect of the PV/T collector becomes more obvious as the ambient temperature increases and the solar irradiation becomes stronger. To illustrate performance differences, energy flow diagrams of each PV/T collector in heat dissipation modes are established, highlighting variations in solar energy conversion and heat dissipation effects. These findings provide critical insights for the future design of PV/T collectors with multi-mode operation and enhanced overheating protection functions.
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SunView 深度解读
该PV/T热管理技术对阳光电源光伏逆变器产品具有重要参考价值。研究表明可切换散热模式可降低组件温度26-47°C,提升发电效率2.22-3.94%,这与SG系列逆变器的MPPT优化技术高度协同。建议将组件温度监测集成到iSolarCloud平台,结合储能系统ST系列PCS实现热电联供智能调度,在高温时段通过ESS削峰填谷降低组件热应力,延长系统寿命。该多模式运行理念可启发逆变器冷却系统的自适应优化设计。