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Design, Modelling and Experimental Investigation of an Economic Domestic STHW System Using T*Sol? Simulation in Botswana

机译:基于T * Sol?的经济型家用STHW系统的设计,建模和实验研究博茨瓦纳的模拟

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The study describes a research and development directed at examining research and design a SHWS, and test a flat-plate solar collector capable of collection efficiency in excess of 50 percent at an inlet fluid temperature 22oC. The model was analyzed using theoretical and mathematical analysis and the T*SOL? simulation programme for solar thermal heating systems using radiation data to site. The average efficiency of mathematically designed system was higher as 70% than the designed value efficiency of 20. The effectiveness of the collector was seen to be higher toward the start of the test and reductions consistently as the test advances with time. The economic analysis of the whole system desired was done with an initial total investment of US$991.10. The economic performance of the system gives a positive net present value of US$4662.13with a payback period of 0.7 years. At a steady radiation, the higher the heat absorbed, the higher the efficiency of the collector. The use of the flat plate solar collector for domestic and commercial heating (for eight person bread and breakfast) purposes in Gaborone is feasible since reasonable temperatures (outlet from the collector, t_(o)) were realized.
机译:该研究描述了一项旨在研究SHWS的研究和开发的研究与开发,并测试了平板太阳能集热器,该太阳能集热器在入口流体温度为22oC时收集效率可超过50%。使用理论和数学分析以及T * SOL?对模型进行了分析。使用辐射数据到现场的太阳能热采暖系统的模拟程序。数学设计的系统的平均效率比20的设计值效率高70%。在测试开始时,收集器的效率更高,并且随着测试的发展而降低。初步投资总额为991.10美元,对所需的整个系统进行了经济分析。该系统的经济绩效给出了4662.13美元的正净现值,回收期为0.7年。在稳定的辐射下,吸收的热量越高,收集器的效率就越高。由于实现了合理的温度(集热器的出口,t_(o)),因此在哈博罗内使用平板太阳能集热器进行家庭和商业加热(用于八人面包和早餐)是可行的。

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