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Historical development of concentrating solar power technologies to generate clean electricity efficiently - A review

机译:集中太阳能技术高效发电的历史发展-回顾

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The conventional ways for generating electricity around the world face two main problems, which are gradual increase in the earth's average surface temperature (global warming) and depleting fossil fuel reserves. So switching to renewable energy technologies is an urgent need. Concentrating solar power (CSP) technologies are one of renewable technologies that are able to solve the present and future electricity problems. In this paper the historical evolution for the cornerstone plants of CSP technologies to generate clean electricity was reviewed and the current projects worldwide of CSP technologies were presented to show that the CSP technologies are technically and commercially proven and have the possibility for hybridization with fossil fuel or integration with storage systems to sustain continuous operation similar to conventional plants. Among all solar thermal technologies parabolic trough is the most technically and commercially proven. It also has the possibility for hybridization since it is proven by operating in several commercial projects for more than 28 years. It has a high maturity level and able to provide the required operating heat energy either as a stand-alone or in hybrid systems at the lowest cost and lower economic risks. For this reason, this technology is dominant in the operational and under-construction projects. However, currently there is a trend toward employing the other CSP technologies in the future projects as a result of the improvement in their performance. The use of PTC technology in the operational CSP projects is 95.7% and has decreased to 73.4% for the under-construction projects. Meanwhile, the uses of Fresnel collector (LFC), Tower power (TSP) and Stirling dish (SDC) technologies in the operational projects are 2.07%, 2.24%, and 0% respectively and have increased to 5.74%, 20.82% and 0.052% respectively for the under-construction projects. For the development projects, the use of TSP technology has reached to 71.43%, compared to 28.57% for PTC.
机译:世界各地的常规发电方式面临两个主要问题,即地球平均表面温度的逐渐升高(全球变暖)和化石燃料储备的枯竭。因此,迫切需要转换为可再生能源技术。集中式太阳能(CSP)技术是可解决当前和未来用电问题的可再生技术之一。在本文中,回顾了CSP技术生产清洁电力的基石工厂的历史演变,并介绍了CSP技术在世界范围内的当前项目,以表明CSP技术已在技术上和商业上得到了验证,并有可能与化石燃料或矿物燃料进行杂交。与存储系统集成以维持类似于常规工厂的连续运行。在所有太阳能热技术中,抛物线槽在技术上和商业上都得到了最充分的验证。由于它已经在多个商业项目中运行了28年以上,因此它也具有杂交的可能性。它具有较高的成熟度,能够以最低的成本和较低的经济风险提供独立的或混合的系统所需的运行热能。因此,该技术在运营和基础建设项目中占主导地位。但是,由于性能的提高,目前在将来的项目中有采用其他CSP技术的趋势。在运营的CSP项目中使用PTC技术的比例为95.7%,在建项目的使用率已降至73.4%。同时,在运营项目中使用菲涅耳收集器(LFC),塔式发电(TSP)和斯特林碟(SDC)技术的比例分别为2.07%,2.24%和0%,并已增加到5.74%,20.82%和0.052%分别针对在建项目。在开发项目中,TSP技术的使用率达到71.43%,而PTC为28.57%。

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