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Multi-energy liquid air energy storage: A novel solution for flexible operation of districts with thermal networks

机译:多能液空气空气储能:具有热网络的电池区柔性操作的新型解决方案

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摘要

Liquid Air Energy Storage (LAES) stores electricity in the form of a liquid cryogen while making hot and cold streams available during charging and discharging processes. The combination of electricity, hot and cold makes LAES a promising asset for the management of multi-energy streams in various energy systems; however, such opportunity has not received attention so far. To overcome the traditional view of LAES as electricity storage only, this study investigates the techno-economic value of using LAES as a smart multi-energy asset for the provision of heat and cold, alongside power, in districts with heating and cooling networks. A reduced thermodynamic model of LAES was developed, validated and used to i) quantify the thermodynamic efficiency for a multi-energy LAES, ii) generalise the multi-energy capability of LAES over the three energy vectors considered iii) link different plant designs and integration conditions - in terms of loads and temperatures - with the associated multi-energy LAES performance and iv) describe multi-energy LAES operation as part of two district sizes, for provision of peak and base load. It is found that, by leveraging the vector-coupling capability of LAES, more flexible district operation can be achieved, with increased LAES energy efficiency from 47% to 72.8% and up to 8-12% reduction of operational costs, in the considered integration case studies. Results demonstrate the technical feasibility of multi-energy LAES operation and illustrate the associated trade-offs and potential: new perspectives for smart management of multi-energy systems are opened up.
机译:液体空气储能(Laes)以液体冷冻原的形式存储电力,同时在充电和放电过程中制作热和冷溪流。电力,炎热和寒冷的结合使Laes成为各种能源系统中多能源流管理的有希望的资产;但是,到目前为止,这种机会还没有受到关注。为了克服传统的Laes视野作为电力存放,本研究调查了使用Laes作为智能多能源资产的技术经济价值,以便在具有加热和冷却网络的地区提供热和冷。开发,验证和用于I)开发了一种减少的热力学模型,验证和用于I)对多能量Laes的热力学效率量化,II)概括了Laes的多能量能力在考虑III的三个能量矢量上)链接不同的植物设计和集成条件 - 在负载和温度方面 - 随着相关的多能量Laes性能和IV)描述了作为两个地区尺寸的一部分的多能量Laes操作,提供峰值和基础负荷。结果发现,通过利用Laes的矢量耦合能力,可以实现更灵活的地区运行,随着47%至72.8%的增长率从47%增加到72.8%,运营成本降低高达8-12%,在考虑的一体化中实例探究。结果展示了多能源Laes运行的技术可行性,并说明了相关的权衡和潜力:打开了多能量系统智能管理的新观点。

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