岛用低温绝热压缩空气储能

M. Budt, Markus Hadam, Eva Schischke
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引用次数: 2

摘要

压缩空气储能是一种很有前途的储能技术,可以通过存储电能数小时到数周的时间来面对能源系统中可再生能源高份额的挑战。特别有利的绝热CAES概念,不依赖于化石燃料,在技术上是可行的,但仍然没有普及。低温绝热CAES概念通过限制工艺温度来提高灵活性,并使用市场上可用的组件来降低资本支出,从而解决了一些现有的障碍。另一方面,这些优势是以牺牲往返效率为代价的。因此,一个合适的植物布局高度依赖于具体的应用。本文介绍的新型KompEx LTA-CAES®设计通过使用可逆操作的涡轮和活塞机械的组合,进一步降低了资本支出。这样,这些模块可以与任何压缩空气存储容量相结合,因此不仅可以使用盐洞,还可以使用分散存储单元,如管道存储或LRC。作为分散式应用的案例研究,评估了使用KompEx LTA-CAES®模块来支持岛上光伏发电的可再生能源整合,而无需与大陆电网互连。
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Low-temperature Adiabatic Compressed Air Energy Storage for Island Applications
Compressed air energy storage is a promising storage technology to face the challenges of high shares of renewable energies in an energy system by storing electric energy for periods of several hours up to weeks. The particularly advantageous adiabatic CAES concepts, which are not dependent on fossil fuels, are technical feasible, but still not widespread. Low-temperature adiabatic CAES concepts address some of the existing barriers by limiting process temperatures for higher flexibility and use of market available components to lower CAPEX. On the other hand, these advantages are achieved at the expense of roundtrip efficiency losses. Therefore, a suitable plant layout is highly dependent on the specific application. The new KompEx LTA-CAES® design presented in this paper reduces CAPEX even further by using a combination of reversibly operable turbo- and piston machinery. Doing so, these modules can be combined with any compressed air storage volume and thus not only salt caverns, but also decentralized storage units such as pipe storage or LRC can be used. As a case study for decentralized application, the use of a KompEx LTA-CAES® module to support the integration of renewable generation from PV on an island without interconnection to the mainland electricity grid is evaluated.
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