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DESIGN AND OPERATIONAL ASPECTS OF GAS AND STEAM TURBINES FOR THE NOVEL SOLAR HYBRID COMBINED CYCLE SHCC

机译:新型太阳能混合组合循环SHCC的气体和汽轮机的设计与运行方面

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Solar hybrid power plants are characterized by a combination of heat input both of high temperature solar heat and heat from combustion of gaseous or liquid fuel which enables to supply the electricity market according to its requirements and to utilize the limited and high grade natural resources economically. The SHCC power plant concept integrates the high temperature solar heat into the gas turbine process and in addition - depending on the scheme of the process cycle - downstream into the steam cycle. The feed-in of solar heat into the gas turbine is carried out between compressor outlet and combustor inlet either by direct solar thermal heating of the pressurized air inside the receivers of the solar tower or by indirectly heating via interconnection of a heat transfer fluid. Thus, high shares of solar heat input referring to the total heat input of more than 60% in design point can be achieved. Besides low consumption of fossil fuels and high efficiency, the SHCC concept is aimed for a permanent availability of the power plant capacity due to the possible substitution of solar heat by combustion heat during periods without sufficient solar irradiation. In consequence, no additional standby capacity is necessary. SHCC can be conducted with today's power plant and solar technology. One of the possible variants has already been demonstrated in the test field PSA in Spain using a small capacity gas turbine with location in the head of the solar tower for direct heating of the combustion air. However, the authors present and analyze also alternative concepts for power plants of higher capacity. Of course, the gas turbine needs a design which enables the external heating of the combustion air. Today only a few types of gas turbines are available for SHCC demonstration. But these gas turbines were not designed for solar hybrid application at all. Thus, the autors present finally some reflections on gas turbine parameters and their consequences for SHCC as basis for evaluation of potentials of SHCC.
机译:太阳能混合发电厂的特征在于,热量输入的热量燃料和气体燃料燃烧的热量的组合,这使得能够根据其要求提供电力市场,并经济地利用有限的高档自然资源。 SHCC电厂概念将高温太阳能热量集成到燃气轮机过程中,并附加 - 取决于过程循环的方案 - 下游进入蒸汽循环。通过在太阳塔的接收器内的加压空气的直接太阳能热加热或通过互连通过传热流体的互连来在压缩机出口和燃烧器入口之间进行燃气轮机的进料在压缩机出口和燃烧器入口之间进行。因此,可以实现高度的太阳能热量输入,参考设计点在设计点中的总热量输入超过60%。除了化石燃料的低消耗和高效率之外,SHCC概念旨在永久性可用性,因为由于可能在没有足够的太阳照射期间通过燃烧热量的燃烧热量替代太阳能而导致的电力设备容量。结果,无需额外的待机能力。 SHCC可与当今的电厂和太阳能技术进行。在西班牙的测试场PSA中使用了一个可能的变型,其中使用小容量燃气涡轮机,该小容量燃气涡轮机在太阳塔头部中的位置,用于直接加热燃烧空气。然而,作者呈现并分析了能力较高的发电厂的替代概念。当然,燃气轮机需要一种设计,该设计能够实现燃烧空气的外部加热。今天只有几种燃气轮机可用于SHCC示范。但这些燃气轮机根本不设计用于太阳杂交应用。因此,最终对燃气涡轮机参数的一些反射及其对SHCC的后果作为SHCC潜在的潜力的基础。

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