首页> 外文期刊>American Journal of Environmental Sciences >Fabrication and experimental investigation of PCM capsules integrated in solar air heater.
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Fabrication and experimental investigation of PCM capsules integrated in solar air heater.

机译:集成在太阳能空气加热器中的PCM胶囊的制造和实验研究。

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Problem statement: Thermal Energy Storage (TES) process can reduce the time or rate mismatch between energy supply and energy demand. Organic latent heat materials are suitable to use as storage medium, however, the low thermal conductivity of these materials slow the thermal response during charging and discharging processes. Approach: A solar air heater integrated with (PCM) has been designed, fabricated and tested indoor. The system consists of top glazed isolated duct, air pump and array of PCM capsules plays to absorb the radiation and storing the thermal energy to discharge to demand when no radiation. Two cases were tested for storage medium used pure paraffin wax and paraffin wax-aluminum composite, the aluminum mass fraction was 0.5% and powder particulate size was 70 micro m. Most of these experiments focused on discharge process. The outlet air temperature and thermal storage efficiency of the system has been studied. Results: Experimental results indicated that the charging time was reduced by approximately 70% when used the paraffin wax-aluminum composite. The thermal storage efficiency reached the maximum magnitudes 71.9 and 77.18% at mass flow rates 0.05 and 0.07 kg sec-1 for pure paraffin wax and the compound respectively. Conclusion: The discharging time was reduced by adding aluminum powder in the wax. The storage efficiency was increased after adding aluminum powder. The encapsulation procedure in this work was also explained.
机译:问题陈述:热能存储(TES)过程可以减少能量供应和能量需求之间的时间或速率不匹配。有机潜热材料适合用作存储介质,但是,这些材料的低导热性会减慢充电和放电过程中的热响应。方法:已设计,制造和测试了集成(PCM)的太阳能空气加热器。该系统由顶部玻璃隔离管道,气泵和PCM胶囊阵列组成,用于吸收辐射并存储热能,以在无辐射时按需排放。测试了两种情况下使用纯石蜡和石蜡铝复合材料的存储介质,铝质量分数为0.5%,粉末颗粒尺寸为70微米。这些实验大多数集中在放电过程上。研究了系统的出风温度和储热效率。结果:实验结果表明,使用石蜡-铝复合材料时,充电时间减少了约70%。对于纯石蜡和该化合物,在质量流量分别为0.05和0.07 kg sec -1 时,储热效率分别达到71.9和77.18%的最大值。结论:在蜡中添加铝粉可减少放电时间。添加铝粉后提高了储存效率。还说明了这项工作中的封装过程。

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