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Multi-objective design and operation of Solid Oxide Fuel Cell (SOFC) Triple Combined-cycle Power Generation systems: Integrating energy efficiency and operational safety

机译:固体氧化物燃料电池(SOFC)三重联合循环发电系统的多目标设计和操作:整合能源效率和操作安全性

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摘要

Energy efficiency is one of the main pathways for energy security and environmental protection. In fact, the International Energy Agency asserts that without energy efficiency, 70% of targeted emission reductions are not achievable. Despite this clarity, enhancing the energy efficiency introduce significant challenge toward process operation. The reason is that the methods applied for energy-saving pose the process operation at the intersection of safety constraints. The present research aims at uncovering the trade-off between safe operation and energy efficiency; an optimization framework is developed that ensures process safety and simultaneously optimizes energy-efficiency, quantified in economic terms. The developed optimization framework is demonstrated for a solid oxide fuel cell (SOFC) power generation system. The significance of this industrial application is that SOFC power plants apply a highly degree of process integration resulting in very narrow operating windows. However, they are subject to significant uncertainties in power demand. The results demonstrate a strong trade-off between the competing objectives. It was observed that highly energy-efficient designs feature a very narrow operating window and limited flexibility. For instance, expanding the safe operating window by 100% will incur almost 47% more annualized costs. Establishing such a trade-off is essential for realizing energy-saving. (C) 2016 Elsevier Ltd. All rights reserved.
机译:能源效率是实现能源安全和环境保护的主要途径之一。实际上,国际能源署断言,如果没有能源效率,就无法实现目标减排量的70%。尽管有这种清晰性,但是提高能效对过程操作提出了重大挑战。原因是,用于节能的方法将过程操作置于安全约束的交叉点。本研究旨在揭示安全运行与能源效率之间的权衡;开发了一个优化框架,该框架可确保过程安全并同时优化以经济术语量化的能源效率。演示了针对固体氧化物燃料电池(SOFC)发电系统开发的优化框架。这种工业应用的意义在于,SOFC电厂应用了高度的过程集成,从而导致运行窗口非常狭窄。但是,它们在电力需求方面存在很大的不确定性。结果表明,在相互竞争的目标之间有很强的权衡。据观察,高能效的设计具有非常狭窄的操作窗口和有限的灵活性。例如,将安全操作窗口扩大100%将使年化成本增加近47%。建立这样的权衡对于实现节能至关重要。 (C)2016 Elsevier Ltd.保留所有权利。

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