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Energy and buildings, 2013, 62: 59-67.
[2] SHEN L, LI Z P, MA T.Analysis of the power loss and quantification of the energy distribution in PV module[J]. Applied energy, 2020, 260: 114333.
[3] DUBEY S, SARVAIYA J N, SESHADRI B.Temperature dependent photovoltaic(PV) efficiency and its effect on PV production in the world: a review[J]. Energy procedia, 2013, 33: 311-321.
[4] NIŽETIĆ S, GIAMA E, PAPADOPOULOS A M. Comprehensive analysis and general economic-environmental evaluation of cooling techniques for photovoltaic panels, Part Ⅱ: active cooling techniques[J]. Energy conversion and management, 2018, 155: 301-323.
[5] KOŞAN M, DEMIRTAŞ M, AKTAŞ M, et al. Performance analyses of sustainable PV/T assisted heat pump drying system[J]. Solar energy, 2020, 199: 657-672.
[6] RADZIEMSKA E.The effect of temperature on the power drop in crystalline silicon solar cells[J]. Renewable energy, 2003, 28(1): 1-12.
[7] 张星星. SiO2纳米颗粒掺杂、红外辐射性能调控及辐射制冷涂层应用[D]. 杭州: 浙江理工大学, 2023.
ZHANG X X.Doping of SiO2 nanoparticles, modulation of infrared radiation properties and their application in radiative cooling coatings[D]. Hangzhou: Zhejiang Sci-Tech University, 2023.
[8] 程子明. 仿生型日间辐射制冷涂层的理论设计及其制冷性能实验研究[D]. 哈尔滨: 哈尔滨工业大学, 2022.
CHENG Z M.Theoretical designation and experimental research on cooling performance of biomimetic daytime radiative cooling coating[D]. Harbin: Harbin Institute of Technology, 2022.
[9] 赵斌, 胡名科, 敖显泽, 等. 太阳能光伏发电-辐射制冷建筑一体化复合装置的性能分析[J]. 太阳能学报, 2019, 40(5): 1267-1275.
ZHAO B, HU M K, AO X Z, et al.Performance analysis of building integrated composite apparatus for both solar photovoltaic and radiative cooling[J]. Acta energiae solaris sinica, 2019, 40(5): 1267-1275.
[10] MIN X Z, WANG X Y, LI J L, et al.A smart thermal-gated bilayer membrane for temperature-adaptive radiative cooling and solar heating[J]. Science bulletin, 2023, 68(18): 2054-2062.
[11] 黄珂, 张吉, 张卓奋, 等. 基于天空辐射冷却系统的光伏组件降温研究[J]. 太阳能学报, 2023, 44(2): 361-365.
HUANG K, ZHANG J, ZHANG Z F, et al.Cooling performance study of photovoltaic modules with sky radiative cooling systems[J]. Acta energiae solaris sinica, 2023, 44(2): 361-365.
[12] LU K G, ZHAO B, XU C F, et al.A full-spectrum synergetic management strategy for passive cooling of solar cells[J]. Solar energy materials and solar cells, 2022, 245: 111860.
[13] ZHAO B, LU K G, HU M K, et al.Radiative cooling of solar cells with micro-grating photonic cooler[J]. Renewable energy, 2022, 191: 662-668.
[14] 殷少有, 覃羽丰, 张宁. 辐射制冷膜的性能分析与优化设计[J]. 太阳能学报, 2021, 42(8): 231-234.
YIN S Y, QIN Y F, ZHANG N.Performance analysis and optimization design of radiation cooling film[J]. Acta energiae solaris sinica, 2021, 42(8): 231-234.
[15] WANG K, LUO G L, GUO X W, et al.Radiative cooling of commercial silicon solar cells using a pyramid-textured PDMS film[J]. Solar energy, 2021, 225: 245-251.
[16] ZHU L X, RAMAN A, WANG K X, et al.Radiative cooling of solar cells[J]. Optica, 2014, 1(1):32-38.
[17] AHMED S, LI S J, LI Z P, et al.Enhanced radiative cooling of solar cells by integration with heat pipe[J]. Applied energy, 2022, 308: 118363.
[18] GU W B, MA T, SHEN L, et al.Coupled electrical-thermal modelling of photovoltaic modules under dynamic conditions[J]. Energy, 2019, 188: 116043.
[19] MA T, GU W B, SHEN L, et al.An improved and comprehensive mathematical model for solar photovoltaic modules under real operating conditions[J]. Solar energy, 2019, 184: 292-304.
[20] Spectral Sciences Inc.MODTRAN[EB/OL]. https://modtran.spectral.com.)
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辐射制冷复合型光伏组件的季节性性能分析
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太阳能学报 | 2026,47(6): 774-781
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太阳能学报 2026 , 47 (6) : 774 -781
辐射制冷复合型光伏组件的季节性性能分析
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毕涛1,2, 顾文波1,2, 许多伟1,2
作者信息
    1.新疆大学电气工程学院,乌鲁木齐 830017;
    2.西北能源碳中和教育部工程研究中心,乌鲁木齐 830017
SEASONAL PERFORMANCE ANALYSIS OF RADIATIVE COOLING COMPOSITE SOLAR CELLS
  • Bi Tao1,2, Gu Wenbo1,2, Xu Duowei1,2
  • Affiliations
      1. School of Electrical Engineering, Xinjiang University, Urumqi 830017, China;
      2. Engineering Research Center of Northwest Energy Carbon Neutrality, Ministry of Education, Urumqi 830017, China
    doi: 10.19912/j.0254-0096.tynxb.2025-0210
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    通过实验和仿真探讨不同季节下光伏组件不同位置附加辐射制冷膜对其热电性能的影响。结果表明,在正面附加辐射制冷膜可显著降温,但因透射率下降导致电性能损失近70%;而背面附加膜在夏季平均降温5.08 ℃,功率约提升2%,维持高光电转换效率的同时可有效降低组件温度,在热管理和发电效率的综合方面表现更为优越。夏季时背面贴膜具有良好的降温效果,而在冬季平均环境温度为-10的低温环境下,组件温差降低0.59 ℃,通过减小温差的方式可延长使用寿命。同时,辐射制冷效果受辐照度、环境温度及风速的影响,高温高辐照度下贴膜降温效果更突出,而增强对流会削弱其降温效果。
    辐射制冷  /  光伏组件  /  热管理  /  热电性能  /  光电转换效率  /  降温效果
    This paper explores the effects of attaching radiative cooling films at different positions of solar cells in different seasons on their thermoelectric performance through experiments and simulations. The results show that attaching a radiative cooling film on the front side can significantly reduce temperature, but due to the decrease in transmittance, the electrical performance is lost by nearly 70%; while attaching a film on the back side can reduce the average temperature by 5.08 ℃ in summer, and the power is approximately increased by 2%, maintaining a high photoelectric conversion efficiency while effectively reducing the module temperature, In terms of the comprehensive performance of thermal management and power generation efficiency, it performs even better. In summer, the film on the back side has a good cooling effect, and in a low-temperature environment with an average ambient temperature of -10 ℃ in winter, the temperature difference of the module decreases by 0.59 ℃. By reducing the temperature difference, the service life can be extended. At the same time, the radiative cooling effect is affected by irradiance, ambient temperature and wind speed. The cooling effect of attaching a film is more prominent under high temperature and high irradiance conditions, while enhancing convection will weaken its cooling effect.
    radiative cooling  /  photovoltaic modules  /  thermal management  /  thermoelectric performance  /  photoelectric conversion efficiency  /  cooling effect
    毕涛, 顾文波, 许多伟. 辐射制冷复合型光伏组件的季节性性能分析. 太阳能学报, 2026 , 47 (6) : 774 -781 . DOI: 10.19912/j.0254-0096.tynxb.2025-0210
    Bi Tao, Gu Wenbo, Xu Duowei. SEASONAL PERFORMANCE ANALYSIS OF RADIATIVE COOLING COMPOSITE SOLAR CELLS[J]. Acta Energiae Solaris Sinica, 2026 , 47 (6) : 774 -781 . DOI: 10.19912/j.0254-0096.tynxb.2025-0210

      新疆维吾自治区重大科技专项课题(2023A01005-2); 新疆维吾尔自治区自然科学基金(2022D01C87)

    参考文献 引证文献
    排序方式:
    [1] BIWOLE P H, ECLACHE P, KUZNIK F.Phase-change materials to improve solar panel’s performance[J]. Energy and buildings, 2013, 62: 59-67.
    [2] SHEN L, LI Z P, MA T.Analysis of the power loss and quantification of the energy distribution in PV module[J]. Applied energy, 2020, 260: 114333.
    [3] DUBEY S, SARVAIYA J N, SESHADRI B.Temperature dependent photovoltaic(PV) efficiency and its effect on PV production in the world: a review[J]. Energy procedia, 2013, 33: 311-321.
    [4] NIŽETIĆ S, GIAMA E, PAPADOPOULOS A M. Comprehensive analysis and general economic-environmental evaluation of cooling techniques for photovoltaic panels, Part Ⅱ: active cooling techniques[J]. Energy conversion and management, 2018, 155: 301-323.
    [5] KOŞAN M, DEMIRTAŞ M, AKTAŞ M, et al. Performance analyses of sustainable PV/T assisted heat pump drying system[J]. Solar energy, 2020, 199: 657-672.
    [6] RADZIEMSKA E.The effect of temperature on the power drop in crystalline silicon solar cells[J]. Renewable energy, 2003, 28(1): 1-12.
    [7] 张星星. SiO2纳米颗粒掺杂、红外辐射性能调控及辐射制冷涂层应用[D]. 杭州: 浙江理工大学, 2023.
    ZHANG X X.Doping of SiO2 nanoparticles, modulation of infrared radiation properties and their application in radiative cooling coatings[D]. Hangzhou: Zhejiang Sci-Tech University, 2023.
    [8] 程子明. 仿生型日间辐射制冷涂层的理论设计及其制冷性能实验研究[D]. 哈尔滨: 哈尔滨工业大学, 2022.
    CHENG Z M.Theoretical designation and experimental research on cooling performance of biomimetic daytime radiative cooling coating[D]. Harbin: Harbin Institute of Technology, 2022.
    [9] 赵斌, 胡名科, 敖显泽, 等. 太阳能光伏发电-辐射制冷建筑一体化复合装置的性能分析[J]. 太阳能学报, 2019, 40(5): 1267-1275.
    ZHAO B, HU M K, AO X Z, et al.Performance analysis of building integrated composite apparatus for both solar photovoltaic and radiative cooling[J]. Acta energiae solaris sinica, 2019, 40(5): 1267-1275.
    [10] MIN X Z, WANG X Y, LI J L, et al.A smart thermal-gated bilayer membrane for temperature-adaptive radiative cooling and solar heating[J]. Science bulletin, 2023, 68(18): 2054-2062.
    [11] 黄珂, 张吉, 张卓奋, 等. 基于天空辐射冷却系统的光伏组件降温研究[J]. 太阳能学报, 2023, 44(2): 361-365.
    HUANG K, ZHANG J, ZHANG Z F, et al.Cooling performance study of photovoltaic modules with sky radiative cooling systems[J]. Acta energiae solaris sinica, 2023, 44(2): 361-365.
    [12] LU K G, ZHAO B, XU C F, et al.A full-spectrum synergetic management strategy for passive cooling of solar cells[J]. Solar energy materials and solar cells, 2022, 245: 111860.
    [13] ZHAO B, LU K G, HU M K, et al.Radiative cooling of solar cells with micro-grating photonic cooler[J]. Renewable energy, 2022, 191: 662-668.
    [14] 殷少有, 覃羽丰, 张宁. 辐射制冷膜的性能分析与优化设计[J]. 太阳能学报, 2021, 42(8): 231-234.
    YIN S Y, QIN Y F, ZHANG N.Performance analysis and optimization design of radiation cooling film[J]. Acta energiae solaris sinica, 2021, 42(8): 231-234.
    [15] WANG K, LUO G L, GUO X W, et al.Radiative cooling of commercial silicon solar cells using a pyramid-textured PDMS film[J]. Solar energy, 2021, 225: 245-251.
    [16] ZHU L X, RAMAN A, WANG K X, et al.Radiative cooling of solar cells[J]. Optica, 2014, 1(1):32-38.
    [17] AHMED S, LI S J, LI Z P, et al.Enhanced radiative cooling of solar cells by integration with heat pipe[J]. Applied energy, 2022, 308: 118363.
    [18] GU W B, MA T, SHEN L, et al.Coupled electrical-thermal modelling of photovoltaic modules under dynamic conditions[J]. Energy, 2019, 188: 116043.
    [19] MA T, GU W B, SHEN L, et al.An improved and comprehensive mathematical model for solar photovoltaic modules under real operating conditions[J]. Solar energy, 2019, 184: 292-304.
    [20] Spectral Sciences Inc.MODTRAN[EB/OL]. https://modtran.spectral.com.
    2026年第47卷第6期
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    doi: 10.19912/j.0254-0096.tynxb.2025-0210
    • 接收时间:2025-02-10
    • 首发时间:2026-07-17
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