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首页> 外文期刊>Sustainable Energy Technologies and Assessments >Assessment of integrating hybrid solar-combined cycle with thermal energy storage for shaving summer peak load and improving sustainability
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Assessment of integrating hybrid solar-combined cycle with thermal energy storage for shaving summer peak load and improving sustainability

机译:分析混合太阳能结合循环与热能储存,以剃须夏季峰值负荷,提高可持续性

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摘要

In this study, the Al-Qatrana powerplant of Jordan, comprising a combined cycle, was integrated with a proposed solar power and thermal energy storage system. This study aims to conduct a comprehensive transient analysis and introduce an operating methodology for the smooth transition between the different system's operating modes. First, a comparison between the conventional powerplant and the proposed system was presented. Results showed that the integration could lead to a 41 MW improvement in output power, a 10.2 % increase in efficiency, and a 9.2 % relative decrease in SFC at design conditions. After that, shaving the summer peak load of the year 2040 using the proposed system was investigated, following the Jordanian National Electric Power Company vision, where the existing plant will be incapable of coping with the load demand. Hence, the solar and storage systems were utilized to boost the plant's power. The system was able to meet the 2040 summer peak load and overcome the challenges that stem from the dynamic nature of the load demand and the solar radiation availability. Finally, a feasibility analysis was conducted, the results showed that the return of investment period is 8.58 years, which is encouraging.
机译:在这项研究中,包括组合循环的约旦的Al-Qatrana动力板与建议的太阳能和热能存储系统一体化。本研究旨在进行全面的瞬态分析,并为不同系统的操作模式之间的平滑过渡引入操作方法。首先,提出了传统动力装置与所提出的系统之间的比较。结果表明,整合可能导致输出功率的41兆瓦提高,效率提高10.2%,在设计条件下SFC的相对减少9.2%。之后,在Jordanian国家电力公司视野之后调查了使用所提出的系统的2040年夏季峰值负荷,现有植物将无法应对负荷需求。因此,利用太阳能和储存系统来提高植物的力量。该系统能够满足2040年夏季峰值负荷,并克服源于负荷需求的动态性质和太阳辐射可用性的挑战。最后,进行了可行性分析,结果表明,投资期的回报是8.58年,这是令人鼓舞的。

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