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Solar water heating systems for different buildings under a hot climate; parametric optimization and economic analysis

机译:炎热气候下不同建筑物的太阳能热水系统;参数优化和经济分析

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Building applied solar thermal systems are considered by different stakeholders an attractive alternative to traditional space and water heating systems. However, their performance depends largely on climatic conditions, water heating needs and operational parameters which, in turn, offer opportunities for performance optimization. The present research attempts to provide architects with a design decision tool that integrates solar thermal collectors efficiently to meet hot water demand for various building types inclusive of residential, commercial and industrial in a hot climate. The analysis is conducted numerically through a thermal model developed and executed in TRNSYS and validated experimentally. The parameters investigated include the collector tilt angle, azimuth angle and collector inlet fluid flow rate. Finally, the collector aperture area required per building foot print area is determined. The research revealed that for a 1000m~2 footprint building area of schools, offices, residential, factories and hospitals would require respectively 8m~2, 10m~2, 14m~2, 24m~2 and 38m~2 of the static collector installed at 24° tilt angle with optimal water flow rate. Additional operational aspects of collector tracking, and solar radiation concentration were investigated and further reduce the required collector area. A simple payback period analysis reveals a return on investment of 2 years applying subsidized tariff rates under the climatic conditions of, or similar to Dubai, in the United Arab Emirates.
机译:利益相关者认为,建筑应用的太阳能热系统是传统空间和热水系统的一种有吸引力的替代方案。但是,它们的性能在很大程度上取决于气候条件,水加热需求和操作参数,从而为性能优化提供了机会。本研究试图为建筑师提供一种设计决策工具,该工具可以有效地集成太阳能集热器,以满足在炎热气候下包括住宅,商业和工业在内的各种建筑类型的热水需求。通过在TRNSYS中开发并执行并通过实验验证的热模型对分析进行数值模拟。研究的参数包括收集器倾斜角,方位角和收集器入口流体流速。最后,确定每个建筑物占地面积所需的收集器孔径面积。研究表明,对于学校,办公室,住宅,工厂和医院的占地面积为1000m〜2的建筑区域,分别需要在8m〜2、10m〜2、14m〜2、24m〜2和38m〜2处安装静电收集器。 24°倾斜角,具有最佳的水流量。研究了收集器跟踪和太阳辐射集中的其他操作方面,并进一步减少了所需的收集器面积。一个简单的投资回收期分析显示,在阿拉伯联合酋长国或类似迪拜的气候条件下,采用补贴的关税税率可获得2年的投资回报。

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