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Integrated techno-economic assessment of Liquid Air Energy Storage (LAES) under off-design conditions: Links between provision of market services and thermodynamic performance

机译:在非设计条件下对液态空气储能(LAES)进行的综合技术经济评估:市场服务提供与热力学性能之间的联系

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This paper deals with Liquid Air Energy Storage (LAES) - one of the most promising thermo-mechanical technologies with the potential to provide bulk energy storage functionalities. More specifically, an integrated technical and economic assessment of the performance of LAES when providing multiple energy and frequency control ancillary services is carried out. To this end, an off-design thermodynamic model of LAES was developed and validated against experimental data from the literature to allow understanding the links between the specific requirements of the market services to provide and the performance of each component of the LAES plant, and from here the performance of whole LAES process. The model was then applied to assess how a stand-alone LAES plant performs when providing three specific assets in the UK electricity market: arbitrage, short term operating reserve (STOR), and fast reserve (FR). The results obtained clearly demonstrate that (a) a strong link between type of service and LAES off-design conditions exists and cannot be neglected; (b) roundtrip efficiency and liquid air consumption can vary by up to 30% during off-design operation, causing some 10 k pound/MW of missed revenue; (c) the effect of off-design conditions is unevenly distributed across LAES components, with low-pressure turbines affected the most; (d) a suitable regulation strategy can alleviate but not prevent off-design performance variations, improving roundtrip efficiency by up to 4 percentage points. The modelling developed is thus essential for a realistic assessment of the value and constraints for LAES to participate in electricity markets and support low-carbon power system operation and development.
机译:本文涉及液态空气储能(LAES),这是最有前途的热机械技术之一,有潜力提供大容量储能功能。更具体地,当提供多种能量和频率控制辅助服务时,对LAES的性能进行了综合的技术和经济评估。为此,开发了LAES的非设计热力学模型,并根据文献中的实验数据进行了验证,以使您能够理解所提供的市场服务的特定要求与LAES工厂的每个组件的性能之间的联系。这里是整个LAES过程的性能。然后,该模型用于评估独立的LAES工厂在英国电力市场中提供三种特定资产时的表现:套利,短期运营准备金(STOR)和快速准备金(FR)。获得的结果清楚地表明:(a)服务类型与LAES超出设计条件之间存在紧密联系,并且不能忽略; (b)在非设计运营期间,往返效率和液体空气消耗量的差异可能高达30%,造成约1万磅/兆瓦的收入损失; (c)偏离设计条件的影响在LAES组件之间分布不均,其中低压涡轮受影响最大; (d)适当的监管策略可以缓解但不能防止设计外性能变化,从而将往返效率提高多达4个百分点。因此,开发的模型对于真实评估LAES参与电力市场并支持低碳电力系统运营和发展的价值和约束至关重要。

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