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Parameters Analysis and Potential of Energy Storage Case Study: Solar collector for diurnal water heating and nocturnal water cooling

机译:能量储存案例研究的参数分析与潜力:昼夜水加热和夜间水冷却的太阳能收集器

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This research used computer program to calculate the parameters analysis and potential of systems of energy storage by solar collector for diurnal water heating and nocturnal water cooling. Solar collector has surface area of 1.67 m~5 with capacity of water storage tank of 60 litres/day and the average solar radiation incident on surface area of 400 W/m~2. The compound parameters such as; air temperature transmittance, absorbtance, heat transfer coefficient, collector heat removal factor were simulated by mathematic equations. During diurnal period, solar collector stored thermal energy and make temperature of water in the system increase. During the nocturnal period, solar collector releases thermal energy into sky radiation which influences solar collector as well as water in the system are cooled down. Computer simulation program approved the maximum temperature of solar collector heating system is 74.77°C and efficiency of solar collector system were observed 56% followed by 53% and 51% respectively at slope of 15° followed by 5°and 30°. Minimum temperature of water cooling system by sky radiation, is 0.04°C and the efficiencies of solar collector system were found 60% followed by 57% and 53% at slope of 5° followed by 15° and 30° significantly.
机译:该研究使用了计算机程序来计算通过太阳能收集器为昼夜水加热和夜间水冷的能量存储系统的参数分析和潜力。太阳能收集器具有1.67米〜5的表面积,容量为60升/天的储水箱,平均太阳辐射入射在400毫升400〜2的表面积。化合物参数如;通过数学方程模拟空气温度透射率,吸收性,传热系数,收集器散热因子。在日期期间,太阳能收集器储存热能并在系统上增加水。在夜间期间,太阳能收集器将热能释放到影响太阳能收集器的天空辐射以及系统中的水被冷却下来。计算机仿真程序批准的太阳能收集器加热系统的最高温度为74.77°C,而且太阳能收集器系统的效率分别观察到53%和51%,斜率为15°,然后是5°和30°。天空辐射的最低温度水冷却系统,为0.04°C,太阳能收集器系统的效率为60%,然后在5°的斜率下进行57%和53%,显着达到15°和30°。

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