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首页> 外文期刊>Journal of Energy Storage >Thermal performance evaluation of a solar air heater integrated with helical tubes carrying phase change material
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Thermal performance evaluation of a solar air heater integrated with helical tubes carrying phase change material

机译:太阳能空气加热器的热性能评估与螺旋管携带相变材料

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In this present work, the efforts have been made to improve the efficiency of solar air heater (SAH). For this, total two models have been developed. There is one reference model SAH-A and one modified model SAH-B which is integrated with paraffin wax as a low cost energy storage material. Furthermore, model SAH-B is further modified into a new model SAH-C which is integrated with a specific mixture of paraffin wax and Granular coarbon powder (GCP). For better heat storage capacity of the aforesaid energy materials, helical tube of copper made has been considered as a container. Both the models of air heater (SAH-B and SAH-C) have been experimentally tested on natural and forced convection under the climatic conditions of Moradabad city, India. Results show that SAH- C is better over SAH-A and SAH-B in performance comparison. Thermal efficiency of SAH-C is found to be 79.10%, whereas it is found around 57.41% for SAH-B and around 50% for SAH-A. The other major parameter is heat transfer coefficient and for SAH-C it is found to be 411.05 W/m(2)K, whereas it is found around 389 W/m 2 K for SAH-B and around 249.19 W/m(2)K for SAH-A. The maximum exhaust temperature of SAH-C is reported to be 52.5 degrees C, whereas it is observed around 46.9 degrees C for SAH-B and about to be 44.7 degrees C for SAH-A. The main parameters of the present work summarizes that the model SAH-C is an economic and optimum model for space heating, timber seasoning, drying operations etc. The total cost of the best configured SAH-C model is only $67.
机译:在本工作中,已经努力提高太阳能空气加热器(SAH)的效率。为此,已经开发了两种模型。有一个参考模型SAH-A和一个改性模型SAH-B,其与石蜡作为低成本储能材料集成。此外,将SAH-B的型号改性为新的型号SAH-C,其与石蜡和粒状焦炭粉末(GCP)的特定混合物一体化。为了更好的上述能量材料的储热容量,所制造的螺旋管被认为是容器。空气加热器(SAH-B和SAH-C)的模型都是在印度Moradabad市的气候条件下的自然和强迫对流进行的。结果表明,在性能比较中,SAH-C优于SAH-A和SAH-B。发现SAH-C的热效率为79.10%,而SAH-B的发现约为57.41%,达到约50%。另一个主要参数是传热系数,并且对于SAH-C,发现它是411.05 w / m(2)k,而其在sah-b约为389w / m 2 k约为249.19 w / m(2 Sah-a的K. Sah-C的最大排气温度据报道为52.5℃,而Sah-B约为46.9摄氏度约为46.9摄氏度,对于Sah-a约为44.7摄氏度。本工作的主要参数总结了SAH-C模型是空间加热,木材调味,干燥操作等的经济和最佳模型。最佳配置的SAH-C型号的总成本仅为67美元。

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