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Performance of variable flow rates for photovoltaic-thermal collectors and the determination of optimal flow rates

机译:光伏 - 热收集器可变流量的性能及最优流速的测定

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摘要

A quasi-steady state model has been developed to assess of the potential of variable flow strategies to improve the overall thermal efficiency of Photovoltaic-thermal (PVT) collectors. An adaption of the Duffie-Beckman method is used to simulate the PVT, in which the overall loss coefficient and heat removal factor are updated at each timestep in response to changes in flow rate and ambient conditions. A novel calculation engine was also developed to simulate a building heating loop connected to the solar loop via a counterflow heat exchanger that calculates the steady-state conditions for the system at each timestep. The results from PVT simulation are in good agreement with test data obtained from the solar simulator - environmental chamber facility at Concordia University. Further validation for the overall system was carried out via a parallel simulation run in TRNSYS and the model-predicted annual solar heat gains were within 3.6%. The results of the investigation show that a variable flow rate strategy has significant potential to improve thermal efficiency. This benefit was found to be dependent on ambient and process loop conditions, and most effective for systems with greater difference between heating process supply and return temperatures.
机译:已经开发了一种准稳态模型来评估可变流动策略的潜力,以提高光伏 - 热(PVT)收集器的总热效率。 Duffie-Beckman方法的适应用于模拟PVT,其中响应于流速和环境条件的变化,每个时间步骤更新整体损失系数和散热因子。还开发了一种新颖的计算引擎,以通过计量器热交换器模拟连接到太阳循环的建筑加热回路,该逆流热交换器计算每个时间步骤中系统的稳态条件。 PVT模拟的结果与在Concordia大学的太阳模拟器 - 环境室设施中获得的测试数据吻合良好。通过TRNSYS中的并行模拟进行整个系统的进一步验证,模型预测的年度太阳能热量收益在3.6%以内。研究结果表明,可变流量策略具有提高热效率的显着潜力。发现这种好处取决于环境和过程回路条件,对加热过程供应和返回温度之间具有更大差异的系统最有效。

著录项

  • 来源
    《Solar Energy》 |2019年第4期|148-160|共13页
  • 作者单位

    Ryerson Univ Architectural Sci 350 Victoria St Toronto ON Canada;

    Ryerson Univ Mech & Ind Engn 350 Victoria St Toronto ON Canada;

    Ryerson Univ Mech & Ind Engn 350 Victoria St Toronto ON Canada;

    Ryerson Univ Mech & Ind Engn 350 Victoria St Toronto ON Canada;

    Ryerson Univ Architectural Sci 350 Victoria St Toronto ON Canada;

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

    Photovoltaic-thermal; Solar Thermal; Flow Rate Optimization; Variable flow;

    机译:光伏 - 热;太阳能热;流量优化;可变流量;

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