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Parametric analysis on the performance of flat plate collector with transparent insulation material

机译:透明绝缘材料平板集热器性能的参数分析

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The transparent insulation materials (TIM) can effectively improve the performance of flat plate solar collector in cold weather. A three dimension numerical model of flat plate collector with TIM has been developed in this paper. The computational fluid dynamics (CFD) have been used to simulate the model. The Renormalization-group (RNG) k-epsilon model and Discrete Ordinates (DO) radiation model were adopted. The influences of the environment conditions, mass flow rate, tilt angle and transmittance on the performance of the collector with TIM were analyzed. A good agreement was achieved between the CFD prediction and the previous experiment. The result shows that the collector with TIM is more efficient, when ambient temperature is low. For various wind speeds, the new collector's efficiency has a slightly change. The transmittance of TIM is a key parameter to achieve high performance for the collector. When the transmittance is below 80%, the collector with TIM has no the advantage of being good value. The optimum mass flow rate is 0.06 kg/s under corresponding conditions. The tilt angle of the collector with TIM has less effect compared with the conventional one. (C) 2019 Elsevier Ltd. All rights reserved.
机译:透明绝缘材料(TIM)可以有效提高平板太阳能集热器在寒冷天气下的性能。本文建立了带TIM的平板集热器三维模型。计算流体动力学(CFD)已用于模拟模型。采用重归一化组(RNG)k-ε模型和离散纵坐标(DO)辐射模型。分析了环境条件,质量流量,倾斜角和透光率对采用TIM的集热器性能的影响。 CFD预测与先前的实验之间达成了良好的协议。结果表明,当环境温度较低时,带有TIM的收集器效率更高。对于不同的风速,新收集器的效率会略有变化。 TIM的透射率是实现收集器高性能的关键参数。当透射率低于80%时,带有TIM的集电极没有价值高的优点。在相应条件下,最佳质量流量为0.06 kg / s。与传统的集热器相比,带有TIM的集热器的倾斜角影响较小。 (C)2019 Elsevier Ltd.保留所有权利。

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