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DESIGN AND SELECTION OF TURBO-MACHINERY FOR SOLAR AND GEOTHERMAL POWER PLANTS

机译:太阳能和地热电厂涡轮机的设计与选型

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Several important sources of renewable energy, such as biomass, concentrated solar panels, waste heat, geothermal, or tidal, use different types of turbo-machinery for conversion to electrical power. The diverse nature of the heat sources and their cyclic behavior make the design of the turbo-machinery power generation equipment quite different than that of the steam turbines used in conventional power plants. The high capital cost of these renewable facilities and the limited hours of operation are powerful drivers to increase the turbo-machinery efficiency.The paper reviews the state-of-the-art hardware designs for each application from an engineering, procurement, and construction (EPC) Contractor's perspective. Specifically for geothermal power, the discussion covers the application of working fluids other than steam, organic fluid, various mixtures of fluids etc. The benefits and limitations of each method are addressed, along with the impact of geothermal source flow and temperature on the cycle efficiency. The paper also covers the special requirements for single- and multiple-stage arrangements for geothermal applications.For concentrated thermal solar either in high-temperature applications, such as the power tower, or in medium-temperature applications, such as the solar troughs collector field, the paper addresses the unique requirements for performance, integration, and fast startup of the turbines, including the impact of various thermal storage options. Since most of the concentrated thermal solar applications are in arid regions, the paper discusses the heat sink selection (air-cooled condenser [ACC], hybrid, Heller tower, etc.) and how it impacts the plant design and performance. In conclusion, the paper deals with practical issues of achieving a balance between the economics of generation and cost of equipment and reliability for renewable power plants.
机译:生物质,集中式太阳能电池板,余热,地热或潮汐等几种重要的可再生能源,都使用不同类型的涡轮机械转化为电能。热源的多样性及其循环特性使涡轮机械发电设备的设计与传统发电厂中使用的蒸汽轮机完全不同。这些可再生设施的高昂资金成本和有限的运行小时数是提高涡轮机械效率的强大动力。 本文从工程,采购和建筑(EPC)承包商的角度回顾了每种应用程序的最新硬件设计。专门针对地热发电,讨论内容涵盖了蒸汽,有机流体,各种流体混合物等以外的工作流体的应用。解决了每种方法的优点和局限性,以及地热源流量和温度对循环效率的影响。本文还涵盖了地热应用的单级和多级布置的特殊要求。 无论是在电力塔等高温应用中,还是在太阳能槽收集器领域等中温应用中的集中式热太阳能,本文都满足了对涡轮机性能,集成和快速启动的独特要求,包括各种储热选项的影响。由于大多数集中式热太阳能应用都位于干旱地区,因此本文讨论了散热器的选择(风冷冷凝器[ACC],混合动力,海勒塔等)及其对电厂设计和性能的影响。总之,本文讨论了在发电经济性,设备成本与可再生能源发电厂的可靠性之间取得平衡的实际问题。

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