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Modelling and experimental validation of advanced adiabatic compressed air energy storage with off-design heat exchanger

机译:带有非设计换热器的先进绝热压缩空气储能装置的建模和实验验证

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摘要

Advanced adiabatic compressed air energy storage (AA-CAES) has been recognised as a promising approach to boost the integration of renewables in the form of electricity and heat in integrated energy systems. Nevertheless, the uncertainty and variability of renewables spark the consideration of the off-design thermodynamics of AA-CAES, particularly when the heat exchanger is equipped to collect and recycle air-compression heat. Here, the authors propose a general off-design thermodynamic simulation model of AA-CAES incorporating the part-load characteristics of heat exchangers, and validate the effectiveness of the proposed model on a practical AA-CAES demonstration pilot. The results indicate that the simulation model offers an acceptable approximation for the practical operation behaviour of AA-CAES facility and decreases the modelling error from 20.8 to 6.28% compared with the existing model. The proposed simulation model is expected to provide insights into the investigation of the dynamic characteristics of AA-CAES in the future integrated energy system.
机译:先进的绝热压缩空气储能(AA-CAES)已被公认为是一种有前途的方法,可以以电能和热能的形式促进可再生能源在集成能源系统中的集成。然而,可再生能源的不确定性和可变性引发了对AA-CAES的非设计热力学的考虑,特别是当热交换器配备了用于收集和再循环空气压缩热的设备时。在这里,作者提出了一种包含换热器部分负荷特性的AA-CAES的非设计热力学模拟模型,并在实际的AA-CAES示范试验中验证了该模型的有效性。结果表明,该仿真模型为AA-CAES设施的实际运行行为提供了可接受的近似值,与现有模型相比,其建模误差从20.8降低到6.28%。拟议的仿真模型有望为深入研究未来集成能源系统中AA-CAES的动态特性提供见识。

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