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Modelling and optimization of a flexible hydrogen-fueled pressurized PEMFC power plant for grid balancing purposes

机译:柔性氢气加压PEMFC发电厂的建模与优化栅格平衡目的

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In a scenario characterized by an increasing penetration of non-dispatchable renewable energy sources and the need of fast-ramping grid-balancing power plants, the EU project GRASSHOPPER aims to setup and demonstrate a highly flexible PEMFC Power Plant, hydrogen fueled and scalable to MW-size, designed to provide grid support.In this work, different layouts proposed for the innovative MW-scale plant are simulated to optimize design and off-design operation. The simulation model details the main BoP components performances and includes a customized PEMFC model, validated through dedicated experiments.The system may operate at atmospheric or mild pressurized conditions: pressurization to 0.7 bar(g) allows significantly higher net system efficiency, despite the increasing BoP consumptions. The additional energy recovery from the cathode exhaust with an expander gives higher net power and net efficiency, adding up to 2%(pt) and reaching values between 47%(LHV) and 55%(LHV) for currents between 100% and 20% of the nominal value. (C) 2021 The Authors. Published by Elsevier Ltd on behalf of Hydrogen Energy Publications LLC.
机译:在一种情况下,以不可转让的可再生能源的普及率越来越多,需要快速斜坡的电网平衡发电厂,欧盟项目蚱蜢旨在设置和展示高度灵活的PEMFC发电厂,氢气燃料和可扩展到MW -Size,旨在提供网格支持。在此工作中,模拟了创新的MW级工厂提出的不同布局,以优化设计和非设计操作。仿真模型详细介绍了主要的BOP组件性能,包括通过专用实验验证的定制PEMFC型号。该系统可以在大气或温和的加压条件下运行:尽管增加到较高的净系统效率,对0.7巴(G)的加压允许显着提高的净系统效率。消费。从阴极排气的额外能量回收膨胀器可提高净功率和净效率,高达2%(PT),达到47%(LHV)和55%(LHV)的值,电流为100%和20%标称值。 (c)提交人2021年。由elsevier有限公司发布代表氢能出版物LLC。

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