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Pilot-scale demonstration of advanced adiabatic compressed air energy storage, Part 1: Plant description and tests with sensible thermal-energy storage

机译:先进的绝热压缩空气储能的中试演示,第1部分:使用合理的热储能的工厂描述和测试

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Experimental and numerical results from the world's first advanced adiabatic compressed air energy storage (AA-CAES) pilot-scale plant are presented. The plant was built in an unused tunnel with a diameter of 4.9 m in which two concrete plugs delimited a mostly unlined cavern of 120 m length. The sensible thermal-energy storage (TES) with a capacity of 12 MWhthwas placed inside the cavern. The pilot plant was operated with charging/discharging cycles of various durations, air temperatures of up to 550 °C, and maximum cavern gauge pressures of 7 bar. Higher pressures could not be reached because of leaks that were traced mainly to the concrete plugs. Simulations using a coupled model of the TES and cavern showed good agreement with measurements. Cycle energy efficiencies of the TES were determined to lie between 76% and 90%. The estimated round-trip efficiency of the pilot plant was based on the measured TES performance and estimated performances of the other components, yielding values of 63–74%, which compares favorably with the usually quoted values of 60–75% for prospective AA-CAES plants.
机译:介绍了世界上第一个先进的绝热压缩空气储能(AA-CAES)中试规模工厂的实验和数值结果。该工厂建在一条直径为4.9μm的未使用的隧道中,其中两个混凝土塞限定了一个长度为120μm的大部分无衬砌的洞穴。洞内放置了一个容量为12 MWhth的显热储能(TES)。中试工厂以各种持续时间的充/放电周期,最高550 C的气温和最大7 gaugebar的洞穴压力运行。由于主要归因于混凝土塞的泄漏,无法达到更高的压力。使用TES和洞穴的耦合模型进行的仿真与测量结果显示出良好的一致性。 TES的循环能效被确定为介于76%和90%之间。中试工厂的估计往返效率是基于测得的TES性能和其他组件的估计性能,得出的值为63–74%,与预期的AA-的通常引用值为60–75%相比是有利的CAES工厂。

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