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Experimental investigation of thermal behavior in an active type solar water heater based on phase change material using solar simulator

机译:太阳能模拟器基于相变材料的活性型太阳能热水器热行为的实验研究

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The weakness of an outdoor solar water heater (SWH) experiments is the difficulty in determining its thermal behavior. The fluctuation of solar radiation intensity causes the supply of energy received by SWH also fluctuate. The result is that the thermal behavior of the SWH cannot be known for specific parameters. This paper aims to investigate the thermal behavior of an active type SWH containing paraffin wax using the constant heat flux method. A phase change material (PCM) inserted into the capsule. The capsules were arranged in a tank to form a heat exchanger (HE). The thermocouples were mounted both on the waterside and the PCM side. The solar simulator installed on the top of the collector, and the SHW system placed indoors. The heat flux and water flow were set at 1000 W/m~2 and 2 LPM, respectively. The temperatures of water and PCM for 143 minutes charging recorded. The data obtained were used to analyze the thermal behavior of water and PCM. The results showed that the average heating rate of water and PCM was 0.227°C/min and 0.205°C/min, respectively. The value of this adjacent average heating rate shows that HE has functioned well in removing heat energy from water. The accumulated thermal energy produced was 13.08 MJ. Indoor experiments can reveal the thermal behavior of the SWH-PCM systems.
机译:户外太阳能热水器(SWH)实验的弱点是难以确定其热行为。太阳辐射强度的波动导致SWH接收的能量供应也波动。结果是,对于特定参数,不能知道SWH的热行为。本文旨在使用恒定热通量法研究含有石蜡蜡的活性型SWH的热行为。将插入胶囊中的相变材料(PCM)。胶囊布置在罐中以形成热交换器(HE)。将热电偶安装在水边和PCM侧。太阳模拟器安装在收集器顶部,SHW系统放置在室内。热通量和水流量分别设定为1000W / m〜2LPM。记录了143分钟的水和PCM的温度。所获得的数据用于分析水和PCM的热行为。结果表明,水和PCM的平均加热速率分别为0.227℃/ min和0.205℃/ min。这种相邻的平均加热速率的值表明他在从水中取出热能时起到了很好的作用。产生的累积热能是13.08 mJ。室内实验可以揭示SWH-PCM系统的热行为。

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