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Impact of dynamic aspects on economics of fuel cell based micro co-generation in low carbon futures

机译:低碳期货中动态因素对基于燃料电池的微型热电联产经济性的影响

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摘要

This article evaluates the impact of a range of dynamic performance parameters on the techno-economics of fuel cell based micro co-generation. The main novelties in methodology are: (1) Analysis in the context of future power system decarbonisation, (2) Use of the Long Run Marginal Cost of electricity, (3) Combination of the above with dynamic aspects such as start-up cost, ramping limit, turn down ratio, minimum up time and minimum down time and (4) Identification of sensitive parameters for future research. To this end it combines a national level energy systems model with an individual heating system model. A case study of the United Kingdom is considered for the year 2035. Economic viability of fuel cell based micro co-generation hinges upon the use of an optimized control strategy. With such a control strategy, a hot start-up approach offers much greater economic potential than a cold start-up approach. The best case ratio of maximum allowable hot standby power to the nominal value is 4.2 while the ratio for cold start is only 1.1. Combinations involving low ramping limits less than 70 W/min and limited turn down ratios above 35% need to be avoided as they seriously hinder economic performance. (C) 2018 The Authors. Published by Elsevier Ltd.
机译:本文评估了一系列动态性能参数对基于燃料电池的微型热电联产技术经济性的影响。方法学的主要新颖之处在于:(1)在未来电力系统脱碳的背景下进行分析;(2)使用长期边际电力成本;(3)将上述内容与动态因素(例如启动成本)结合起来;爬升极限,下降比,最小上升时间和最小下降时间,以及(4)识别敏感参数以供将来研究。为此,它将国家一级的能源系统模型与单个供暖系统模型结合在一起。考虑到2035年英国的案例研究。基于燃料电池的微型热电联产的经济可行性取决于优化控制策略的使用。通过这种控制策略,热启动方法比冷启动方法具有更大的经济潜力。最大允许热备用功率与标称值的最佳情况比率为4.2,而冷启动比率仅为1.1。必须避免涉及低于70 W / min的低倾斜极限和低于35%的有限调低比的组合,因为它们严重阻碍了经济表现。 (C)2018作者。由Elsevier Ltd.发布

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