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Techno-economic evaluation of different types of solar collectors for water heating application in domestic sector of Saudi Arabia

机译:不同类型的不同类型的太阳能收集器在沙特阿拉伯国内部门水供暖应用

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Electric water heaters consumes major part of energy in residential sector and hence there is a need to find an economical solution. One potential solution is to use solar water heating (SWH) systems. The aim of this work is to assess the techno-economic viability of SWH technologies for domestic purpose. In this study, different types of SWH collectors like evacuated tube and glazed collectors are simulated using RETScreen software whose credibility is widely accepted for calculating energy production, life cycle assessment, greenhouse gas emissions, and fuel savings for SWH applications. Calculations are performed to obtain at least 50 % solar fraction on the basis of number of SWH collectors. Other considerations involve collector's types, slope angle, tracking mode,collector thermal loses, collector optical efficiency, and back up fuel which is electricity in our case. Simulations are performed for five different cities of Saudi Arabia. Choices are being made to cover different geographical coordinates of the kingdom that involve Jeddah (western coast), Dhahran (eastern coast), Tabuk (north), Riyadh (center), and Bisha (south). Simulated results based on solar radiations on the horizontal and tilted surface, solar fraction, greenhouse gas emissions, and energy savings are used for comparative analysis of different types of solar collectors while net present value, payback period, benefit to cost ratio, and annual life cycle savings are the deciding factors for economic viability of these systems. Results indicate that under same prevailing conditions Bisha is the most attractive while Tabuk is the least suitable place for solar SWH technology.
机译:电热水加热器消耗住宅行业的主要部分能源,因此需要找到经济的解决方案。一个潜在的解决方案是使用太阳能水加热(SWH)系统。这项工作的目的是评估为国内目的的SWH技术的技术经济可行性。在这项研究中,使用RETCEEN软件模拟了不同类型的SWH收集器,如疏散管和釉料收集器,其可信度被广泛接受,用于计算能源生产,生命周期评估,温室气体排放和SWH应用的燃料节省。执行计算以基于SWH收集器的数量获得至少50%的太阳能分数。其他考虑因素涉及收集器的类型,斜坡角度,跟踪模式,收集器热输血,收集器光学效率,以及在我们的情况下电力的备用燃料。对沙特阿拉伯的五个不同城市进行了模拟。正在制定选择,以涵盖涉及吉达(西海岸),达哈兰(东海岸),塔布兰(北),利雅得(中心)和Bisha(南)的王国(西海岸)的不同地理坐标。基于太阳辐射的水平和倾斜表面,太阳能分数,温室气体排放和节能的模拟结果用于不同类型的太阳能收集器的比较分析,同时净现值,投资回收期,效益为成本比,以及年度生命循环节省是这些系统的经济可行性的决定因素。结果表明,在相同的流行条件下,Bisha是最具吸引力的,而Tabuk是太阳SWH技术的最少合适的地方。

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