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Degradation based optimization framework for long term applications of energy systems, case study: Solid oxide fuel cell stacks

机译:用于能源系统长期应用的基于退化的优化框架,案例研究:固体氧化物燃料电池堆

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Depletion of fossil fuels has increased the pressure on energy systems to operate in the most efficient and economical mode. This tendency promotes energy systems to operate at optimum operating conditions, which maximizes the system profit over lifetime. Recently, there have been many attempts to maximize lifetime profit. Most of them concentrate on the power generation aspect without incorporating further aspects such as system degradation and profitability through lifetime. However, the main intention of the system operators is to optimize the profitability of system at the moment of operation and not the total profitability through the system lifetime. In this study a novel approach is developed which considers degradation mechanisms in optimization procedure. A DBO (degradation based optimization) framework maximizes system profit through its lifetime. The proposed framework can be applied to energy systems and the optimum operating conditions and replacement intervals can be determined. Solid oxide fuel cell is considered as the case study to validate the developed framework. The results show the value and effectiveness of DBO framework to improve the lifetime profit during system operation. Using DBO, the system lifetime profit for proposed case study is increased up to 10.45%. (C) 2016 Elsevier Ltd. All rights reserved.
机译:化石燃料的枯竭增加了能源系统以最有效,最经济的方式运行的压力。这种趋势促使能源系统在最佳运行条件下运行,从而在整个生命周期内使系统利润最大化。近来,已经进行了许多尝试以最大化终生利润。他们中的大多数都集中在发电方面,而没有纳入其他方面,例如系统性能下降和整个生命周期的盈利能力。但是,系统运营商的主要目的是在运营时优化系统的获利能力,而不是优化整个系统生命周期内的总获利能力。在这项研究中,开发了一种在优化过程中考虑降解机理的新颖方法。 DBO(基于降级的优化)框架可在整个生命周期内最大限度地提高系统利润。所提出的框架可以应用于能源系统,并且可以确定最佳的工作条件和更换间隔。固体氧化物燃料电池被认为是验证开发框架的案例研究。结果表明,DBO框架对于提高系统运行期间的生命周期价值具有重要的价值和有效性。使用DBO,针对拟议案例研究的系统生命周期利润提高了10.45%。 (C)2016 Elsevier Ltd.保留所有权利。

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