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Repowering Old Thermal Power Station by Integrating Concentrated Solar Power Technology

机译:集成太阳能发电技术为老火力发电厂供电

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The present study aims to investigate technical, economic and environmental aspects of integrating a Parabolic Trough Collector with existing feed-water heating system in an old "33 MW unit" in Al-Hussein Thermal Power Plant in Jordan. Such integration should improve the performance of the existing power plant and reduce the rate of fuel consumption, consequently the resultant pollutants', including Greenhouse Gases (GHG), emissions will be reduced. System Advisor Model software was used as a simulation tool in this study to optimize the required solar field aperture area and to predict the performance of employed solar system. Thermodynamic basic relations, energy and mass balances, are used to simulate various main components of the existing standard steam, Rankine, cycle. Different scenarios of feed-water heating arrangement with solar-replacement are presented and discussed. It was found that efficiency of the existing power unit could be increased by 3% due to higher turbine's output as a result of increased steam flow rate at later stages of the turbine. The estimated avoided GHG emissions exceed 10,000 ton CO_2 annually. But economics of such system may not be very attractive due to decreasing oil prices: at present the estimated payback period is more than 10 years.
机译:本研究旨在调查将抛物槽收集器与现有给水加热系统集成到约旦Al-Hussein热电厂的旧“ 33 MW机组”中的技术,经济和环境方面。这样的整合将改善现有发电厂的性能并降低燃料消耗率,因此将减少由此产生的污染物(包括温室气体(GHG))的排放。在本研究中,使用System Advisor Model软件作为仿真工具来优化所需的太阳场孔径面积并预测所用太阳系的性能。热力学基本关系,能量和质量平衡用于模拟现有标准蒸汽,朗肯循环的各种主要成分。介绍并讨论了带太阳能替代的给水加热装置的不同方案。人们发现,由于更高功率的涡轮机输出,由于在涡轮机后期增加了蒸汽流量,因此现有动力装置的效率可以提高3%。估计每年避免的温室气体排放量超过10,000吨CO_2。但是由于油价下跌,这种系统的经济性可能不会很吸引人:目前估计的投资回收期超过10年。

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