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Solar gas turbine systems: Design, cost and perspectives

机译:太阳能燃气轮机系统:设计,成本和前景

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The combination of high solar shares with high conversion efficiencies is one of the major advantages of solar gas turbine systems compared to other solar-fossil hybrid power plants. Pressurized air receivers are used in solar tower plants to heat the compressed air in the gas turbine to temperatures up to 1000 ℃. Therefore solar shares in the design case of 40% up to 90% can be realized and annual solar shares up to 30% can be achieved in base load. Using modern gas turbine systems in recuperation or combined cycle mode leads to conversion efficiencies of the solar heat from around 40% up to more than 50%. This is an important step towards cost reduction of solar thermal power. Together with the advantages of hybrid power plants—variable solar share, fully dispatchable power, 24 h operation without storage—solar gas turbine systems are expected to have a high potential for market introduction in the mid term view. In this paper the design and performance assessment of several prototype plants in the power levels of 1 MW, 5 MW and 15 MW are presented. Advanced software tools are used for design optimization and performance prediction of the solar tower gas turbine power plants. Detailed cost assumptions for the solarized gas turbine, the solar tower plant and further equipment as well as for operation and maintenance are presented. Intensive performance and economic analysis of the prototype plants for different locations and capacity factors are shown. The cost reduction potential through automation and remote operation is revealed.
机译:与其他太阳能-化石混合电站相比,高太阳能份额和高转换效率的结合是太阳能燃气轮机系统的主要优势之一。太阳能塔设备中使用的压缩空气接收器将燃气轮机中的压缩空气加热到高达1000℃的温度。因此,在设计案例中,可以实现40%到90%的太阳能份额,并且在基本负载下可以达到30%的年度太阳能份额。在回热或联合循环模式下使用现代燃气轮机系统可将太阳能的转换效率从40%提升至50%以上。这是朝着降低太阳能热能成本迈出的重要一步。加上混合动力电厂的优势(可变的太阳能份额,可完全调度的电力,无需存储的24小时运行),预计从中期来看,太阳能燃气轮机系统具有很大的市场推广潜力。本文介绍了功率分别为1 MW,5 MW和15 MW的几个原型工厂的设计和性能评估。先进的软件工具用于太阳能塔式燃气轮机发电厂的设计优化和性能预测。介绍了太阳能燃气轮机,太阳能塔设备和其他设备以及运行和维护的详细成本假设。显示了针对不同位置和容量因子的原型工厂的密集性能和经济分析。揭示了通过自动化和远程操作降低成本的潜力。

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