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Thermal modelling of a flat plate solar collector with latent heat storage validated with experimental data in outdoor conditions

机译:带有潜热存储的平板太阳能集热器的热模型已通过室外条件下的实验数据验证

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This paper presents a thermal modelling strategy to evaluate the performance of latent heat storage technique in a flat plate solar collector (FPSC) with integrated phase change material (PCM). A thermal dynamic model is developed based in simplified semi empirical correlations and includes heat transfer by conduction, convection and radiation in each part of the device. Melting process of the PCM is described with energy balances for a set of discrete spatial layers to calculate temperature and liquid fraction. The model is validated with experimental data gathered under outdoor conditions from a real flat plate solar collector prototype modified to incorporate PCM containers between the absorber plate and the insulation. As result of the validation process, the model shows the capability to estimate the global thermal performance of the device with good accuracy compared with the experimental measurements and using minimal computational resources. Comparisons between estimations of the model and test data are presented for 20 days, real conditions include days with both high and low incident radiation and two different PCMs. Predicted temperature of glass cover, absorber plate, water outlet and PCM are obtained with a maximum error of 4.62%. The model was employed to analyze the collector thermal performance. Temperatures, heat transfer, stored energy of collector main components and liquid fraction of PCM are estimated and analyzed in two cases: under clear sky condition without strong changes of solar radiation and under scattered weather with solar radiation variation. Two PCMs with different melting points (45 degrees C and 60 degrees C) are analyzed and compared with results without PCM by using the model to evaluate their performance.
机译:本文提出了一种热建模策略,以评估具有集成相变材料(PCM)的平板太阳能集热器(FPSC)的潜热存储技术的性能。根据简化的半经验相关性开发了一个热动力学模型,该模型包括设备各部分中通过传导,对流和辐射进行的热传递。描述了PCM的熔化过程,其中使用了一组离散空间层的能量平衡来计算温度和液体分数。该模型通过在室外条件下从实际平板太阳能收集器原型收集的实验数据进行了验证,该原型经过修改后将PCM容器纳入吸收板和绝缘材料之间。作为验证过程的结果,该模型显示了与实验测量结果相比,使用最少的计算资源就能以较高的准确度估算设备的整体热性能的能力。该模型的估计值与测试数据之间的比较显示了20天,实际条件包括同时具有高和低入射辐射以及两种不同PCM的天数。获得玻璃盖,吸收板,出水口和PCM的预测温度,最大误差为4.62%。该模型用于分析集热器的热性能。在以下两种情况下,对温度,传热,集热器主要成分的储能和PCM的液体含量进行了估计和分析:在晴朗的天空条件下太阳辐射没有发生强烈变化;在散布的天气下太阳辐射发生了变化。通过使用模型评估其性能,分析了两个具有不同熔点(45摄氏度和60摄氏度)的PCM,并将其与没有PCM的结果进行比较。

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