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PERFORMANCE OF SOLAR COLLECTORS UNDER LOW TEMPERATURE CONDITIONS: MEASUREMENTS AND SIMULATIONS RESULTS

机译:低温条件下太阳能集热器的性能:测量和模拟结果

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The performance of four solar thermal collectors (flat plate, evacuated tube, unglazed with rear insulation and unglazed without rear insulation) was experimentally measured and simulated for temperatures below ambient. The influence of several parameters (e.g. collector inlet temperature, air temperature, condensation) is investigated under different operating conditions (day and night). Under some conditions condensation might occur and heat gains could represent up to 55% of the total unglazed collector energy by night. Two TRNSYS collector models including condensation heat gains are also evaluated and results compared to experimental measurements. A mathematical model is also under development to include, in addition to the condensation phenomena, the frost, the rain and the long-wave radiation gains/losses on the rear of the solar collector. While the potential gain from rain was estimated to be around 2%, frost heat gains were measured to be up to 40% per day, under specific conditions. Overall, results have shown that unglazed collectors are more efficient than flat plate or evacuated tube collectors at low operation temperatures or for night conditions, making them more suitable for heat pump applications.
机译:实验测量了四个太阳能集热器(平板,真空管,不带后隔热层的玻璃和不带后隔热层的玻璃)的性能,并模拟了低于环境温度的温度。在不同的操作条件(白天和黑夜)下研究了几个参数(例如集热器入口温度,空气温度,冷凝水)的影响。在某些条件下,到晚上可能会发生冷凝,并且热量增加可能占未上釉集热器总能量的55%。还评估了两个TRNSYS收集器模型,包括冷凝热增益,并将结果与​​实验测量值进行了比较。除了冷凝现象外,还正在开发数学模型,以包括集热器后部的霜冻,雨水和长波辐射增益/损耗。据估计,雨水的潜在收益约为2%,而在特定条件下,霜冻的热量吸收据测为每天高达40%。总体而言,结果表明,在低工作温度或夜间条件下,无釉集热器比平板或真空管集热器效率更高,这使其更适合于热泵应用。

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