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Thermal modeling of air-type double-pass solar collector with PCM-rod embedded in vacuum tube

机译:空气型双通太阳能收集器与真空管嵌入的PCM杆热建模

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摘要

Based on an evacuated tube collector, we designed an air?type double?pass solar collector with a PCM?rod embedded in a vacuum tube. In this study, the basic parameters of the proposed collector are discussed comprehensively and the spatial layout of each component is illustrated. Simultaneously, a thermal model of the collector has been established to predict the outlet temperature of the collector. The equivalent thermal efficiency of the phase change material is also proposed to explain the change in the thermal efficiency of the collector caused by the PCM. Finally, the thermal performance of the proposed collector was tested and compared with its theoretical value. The results show that the comparison between the simulated and experimentally measured outlet temperatures is in good agreement; the root mean square error and mean bias difference on the outlet temperature are 1.56 K and 1.33 K, respectively. Additionally, even if the irradiation intensity reduces by 39% within 30 min, the outlet temperature decreases by only 7.5 K. The thermal model is also used to analyze the influence of airflow, radiation intensity, ambient temperature and surrounding air speed on the outlet temperature. It was observed that the first three have a greater impact, but the temperature fluctuation is only 0.36% when ambient wind speed is 0.2?2 m/s. In contrast, the heat loss of the collector was evaluated and it was found that the heat loss of the vacuum tube accounted for 0.4%?2.8% of the heat energy of the collector, while the heat loss of the manifold to the ambient accounted for only 0.04%. The phase change material stored 0.247 MJ of heat, of which 0.245 MJ was provided to air, and the conversion rate of heat absorption and release was 99.2%, and the working time of the collector is extended by 8 h. In terms of thermal efficiency, the instantaneous thermal efficiency continued to increase from 13% to 397%, and the equivalent thermal efficiency of the phase change material reached a maximum of 484%.
机译:基于疏散的管收集器,我们设计了一个空气?型双倍?通过嵌入真空管中的PCM杆的太阳能收集器。在该研究中,讨论了所提出的收集器的基本参数,讨论了全面讨论的,并且示出了每个组件的空间布局。同时,已经建立了收集器的热模型以预测收集器的出口温度。还提出了相变材料的等效热效率以解释由PCM引起的收集器的热效率的变化。最后,测试了所提出的收集器的热性能并与其理论值进行比较。结果表明,模拟和实验测量出口温度之间的比较良好;出口温度的根均方误差和平均偏差分别为1.56 k和1.33 k。另外,即使照射强度在30分钟内降低39%,出口温度也仅降低了7.5k。热模型还用于分析气流,辐射强度,环境温度和周围空气速度对出口温度的影响。观察到前三个具有更大的影响,但是当环境风速为0.2米/秒时,温度波动仅为0.36%。相反,评估收集器的热量损失,发现真空管的热量损失占收集器的热能的0.4%?2.8%,而歧管的热量损失占歧管只有0.04%。存储0.247mJ的相变材料,其中向空气提供0.245mJ,热吸收和释放的转化率为99.2%,收集器的工作时间延伸到8小时。在热效率方面,瞬时热效率从13%增加到397%,相变材料的等效热效率最高为484%。

著录项

  • 来源
    《Energy Conversion & Management 》 |2021年第5期| 113952.1-113952.11| 共11页
  • 作者单位

    Univ Shanghai Sci & Technol Sch Energy & Power Engn Shanghai 200093 Peoples R China;

    Univ Shanghai Sci & Technol Sch Energy & Power Engn Shanghai 200093 Peoples R China;

    Univ Shanghai Sci & Technol Sch Energy & Power Engn Shanghai 200093 Peoples R China;

    Jiangsu XU Nenggu Co Ltd Zhangjiagang 223814 Jiangsu Peoples R China;

    Jiangsu XU Nenggu Co Ltd Zhangjiagang 223814 Jiangsu Peoples R China;

    Zhejiang Univ Water Resources & Elect Power Sch Elect Engn Hangzhou 310018 Peoples R China;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Thermal model; Air; Double?pass; PCM; Evacuated tube; Solar collector;

    机译:热模型;空气;双重?通过;PCM;抽空管;太阳能收集器;

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