阿尔及利亚北部太阳能塔式电站的实施:技术经济评估

Salah Boudaoud, A. Khellaf, Kamal MOHAMMEDI
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引用次数: 3

摘要

本文研究了利用太阳能塔技术的中央接收系统的技术可行性。该技术基于高达1000个太阳的太阳能集中比,可以在约800°C的高温下提供太阳能过程热。这项技术自20世纪80年代以来一直在发展,在2000年至2010年期间,美国Solar I和Solar II以及西班牙Almeria平台的开创性经验。已达到商业成熟期,正处于全面拓展阶段。阿尔及利亚的太阳能资源非常丰富。它在撒哈拉沙漠拥有大片无人居住和贫瘠的土地,占该国总面积的80%。这使得该国成为实施聚光太阳能热电厂技术(STPP)的理想场所。阿尔及利亚对开发其太阳能资源表示了高度兴趣。为此,它引入了一个太阳能热能发挥核心作用的项目。为了研究STPP在阿尔及利亚气候条件下的可行性,我们在这里对位于阿尔及尔附近的蒂帕扎的太阳能塔式发电试点工厂进行了技术经济评估。我们利用经济、技术、气象和辐射数据,在SAM Advisor软件下进行了一次模拟。结果表明,对于1 MW左右的年净能源,其平准化电力成本(LCOE)约为0.1美元/千瓦时,与化石电厂的平准化电力成本(0.04美元/千瓦时)相比,相对较高。然而,通过将电厂功率从10兆瓦增加到100兆瓦,结果表明LCOE大大降低。这表明,在高功率下,STPP可以与传统发电厂竞争。
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Solar tower plant implementation in Northern Algeria: Technico economic assessment
The present work deals with the technical feasibility of central receiver system using solar tower technology. This technology is based on solar concentration ratio of up to 1000 suns that can supply solar process heat at higher temperatures of about 800°C. This technology has been under development since 1980s after the pioneering experience of Solar I and Solar II in USA and the Plataforma de Almeria in Spain during the period of 2000-2010. It has reached the commercial maturity and is full expansion. Algeria is very rich in solar energy resources. It possesses large unpopulated and unproductive land in the Sahara which represents 80% of the total country area. This makes the country an ideal place for the implementation of the concentrating Solar Thermal Power Plant technologies (STPP). Algeria has expressed a high interest in developing its solar energy resources. To this end, it has introduced a program where solar thermal energy plays a central role. In order to study the viability of STPP under Algerian climate, we present here a technico economic assessment of a solar tower power pilot plant located in Tipaza near Algiers. Using the economical, technical, meteorological and radiometric data, we have carried a simulation of the STPP under SAM Advisor Software. The results show that for a net annual energy of about 1 MW, the levelized cost of electricity (LCOE) is about 0.1$/kWh which is relatively high in comparison with the LCOE of fossil power plant (0.04 $/kWh). However by increasing the plant power from 10 to 100 MW, the results indicate that the LCOE is drastically reduced. This suggests that, at high power, STPP can be competitive with conventional power plant.
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