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Investigation of a hybrid solar collectorocturnal radiator for water heating/cooling in selected Nigerian cities

机译:在尼日利亚部分城市对用于热水/制冷的混合太阳能集热器/夜间辐射器进行了调查

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The present investigation presents a finite element analysis of the dynamic performance of a hybrid flat-plate solar collectorocturnal radiator (SCONOR) for water heating and cooling in five Nigerian cities. Riser tubes for water conduit were welded to the SCONOR underneath and model equations were developed for heat transfer processes around the SCONOR-bond-tube-water region during the heating, cool down and nocturnal phases. Also, appropriate climatic models were developed to capture absorptions and emissions of energy from the sun and the sky during periods of solar heating and night sky cooling respectively. Results obtained showed that the maximum temperatures attained by the water during diurnal heating were 84.6 degrees C, 75.61 degrees C, 86.4 degrees C, 88.33 degrees C, and 93.67 degrees C while during the nocturnal cooling period, the minimum temperatures of water were 20.21 degrees C, 20.12 degrees C, 21.9 degrees C, 20.95 degrees C and 22.01 degrees C for Owerri, Portharcourt, Ikeja, Maiduguri and Sokoto respectively. The optimum bond thickness for best performance is 3.0 x 10(-3) m at bond width of 0.26 m, tube spacing of 0.1 m and single polyethylene windscreen. For solar heating, Sokoto showed the best performance while for nocturnal cooling; Port Harcourt showed the best performance. Therefore, ambient energy possesses a great potential to ameliorate the energy security challenge and ensure a sustainably clean environment. (C) 2019 Elsevier Ltd. All rights reserved.
机译:本研究提出了尼日利亚五个城市用于水加热和冷却的混合平板太阳能集热器/夜间辐射器(SCONOR)动力性能的有限元分析。将水管的提升管焊接到下面的SCONOR上,并为加热,冷却和夜间阶段期间SCONOR粘结管-水区域周围的传热过程建立了模型方程。此外,还开发了适当的气候模型来捕获分别在太阳能加热和夜空冷却期间太阳和天空的能量吸收和排放。获得的结果表明,日间加热期间水达到的最高温度为84.6摄氏度,75.61摄氏度,86.4摄氏度,88.33摄氏度和93.67摄氏度,而夜间冷却期间的最低水温为20.21摄氏度。 Owerri,Portharcourt,Ikeja,Maiduguri和Sokoto的温度分别为20.12摄氏度,21.9摄氏度,20.95摄氏度和22.01摄氏度。为了获得最佳性能,最佳的粘结厚度为3.0 x 10(-3)m,粘结宽度为0.26 m,管间距为0.1 m,采用单个聚乙烯挡风玻璃。在太阳能采暖方面,Sokoto在夜间制冷方面表现出最佳性能。哈科特港表现最好。因此,环境能源具有缓解能源安全挑战和确保可持续清洁环境的巨大潜力。 (C)2019 Elsevier Ltd.保留所有权利。

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