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Design of a 100 MW Concentrated Solar Power Plant Parabolic Trough in Riyadh, Saudi Arabia

机译:沙特阿拉伯利雅得100兆瓦集中太阳能发电厂抛物线设计

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摘要

The increase in energy demand and the awareness of renewable energy has been raised due to environmental and climate change and the need to establish sustainable energy development. Using fossil fuels has created a critical situation such as; climate change, air pollution, and emission of greenhouse gases also, the resources are in limited supply. The infinite source of energy such as; the sun can provide an effective and sustainable energy supply. Riyadh city in Saudi Arabia is one of the areas that receive a high quantity of direct solar radiation. An average direct normal irradiance (DNI) for the central region is equal to 2018 kWh/m2/year. This paper shows the design and the performance analysis of 100 MW Concentrated Solar Power (CSP) parabolic trough (PT) power plants with thermal energy storage (TES) for use in Riyadh city. The performance of this design plant is analyzed by using the system advisor model (SAM). Based on the analysis carried out for this design, the capacity factor is equal to 45.3% with an annual energy generation which is equal to 396, 801, 792 kWh. By varying two main parameters, the solar field size and the full load hours of TES to get the optimal design of this plant is done. Based on the simulation result, the proposed design of 100 MW parabolic trough at 1, 150, 000 m2 solar field size and 7 h TES gives the lowest Levelized Cost of Electricity (LCOE) with an assumed lifespan of the plant of 25 years.
机译:由于环境和气候变化以及建立可持续能源发展的需要,能源需求的增加和可再生能源的认识。使用化石燃料创造了一个危急情况;气候变化,空气污染和温室气体的排放也,资源供应有限。无限的能量来源,如;太阳可以提供有效和可持续的能源供应。沙特阿拉伯利雅得市是接受大量直接太阳辐射的领域之一。中心区域的平均直接正常辐照度(DNI)等于2018千瓦时/平方米/年。本文介绍了100兆瓦集中的太阳能(CSP)抛物线(PT)发电厂的设计和性能分析,其中热能储存(TES)用于利雅得市。使用系统顾问模型(SAM)分析了该设计工厂的性能。基于对这种设计进行的分析,容量因数等于45.3%,年能量产生等于396,801,792 kWh。通过改变两个主要参数,结束了太阳能场尺寸和特性的全部负载时间来获得该工厂的最佳设计。基于仿真结果,在1,150,000M2太阳能场大小和7小时内提出的100 MW抛物线槽的设计为具有25年的植物的假设寿命,提供了最低的电力(LCoE)的电力(LCoE)。

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