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An approach to investigate the interface between built environment and thermosyphon solar water heating system

机译:一种研究建筑环境与恒温太阳能水加热系统界面的方法

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Several studies have already highlighted the benefits associated with the use of Solar Water Heating Systems (SWHS). Although this technology is already consolidated, there is a lack of studies regarding the impacts of its interaction with the user and the built environment. Thus, this work presents a multiparametric sensitivity analysis applied to identify and quantify the constructive and operational parameters that sensitize the SWHS performance indicators. This study was carried out at the city of Sao Paulo, Brazil, using computer simulation in the EnergyPlus software. The model was validated presenting an average error of 7.5%. The collector orientation proved to be the most critical constructive limitation for the SWHS performance. The divergence in the electric power consumption due to distinct orientations reached 60%. Lower flat plate collector inclination (i=20 degrees) favors lower energy consumption during winter for some critical orientations. The constructive parameters V-st/A(col) ratio and tank volume affect significatively the performance of indicators providing saving of even 284 kWh/year and increasing the tank temperature up to 15 degrees C. Changes on showering time may provide an increase of even 170 kWh/year in the useful energy gain. The results indicate that adequate adjustments in the parameters settings compensate or minimize the effects of constructive limitations. (C) 2020 Elsevier B.V. All rights reserved.
机译:几项研究已经强调了与使用太阳能水加热系统(SWHS)相关的益处。虽然这项技术已经合并,但缺乏关于其与用户互动的影响的研究。因此,该工作提出了应用的多次灵敏度分析,用于识别和量化敏感SWHS性能指示符的建设性和操作参数。这项研究在巴西圣保罗市进行了在SelogePlus软件中使用计算机仿真进行的。该模型被验证呈现7.5%的平均误差。收集器方向被证明是SWHS性能最关键的建设性限制。由于明显取向导致的电力消耗达到60%。较低平板收集器倾斜度(i = 20度)在冬季期间较低的能耗降低了一些临界取向。构造参数V-ST / A(COL)比率和罐体积会影响指标的性能,从而节省284千瓦时/年,并将坦克温度提高到15摄氏度。淋浴时间的变化可能会增加均衡170千瓦时/年度有用的能量增益。结果表明,参数设置中的足够调整补偿或最小化了建设性限制的影响。 (c)2020 Elsevier B.v.保留所有权利。

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