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首页> 外文期刊>Energies >Operating Point Optimization of a Hydrogen Fueled Hybrid Solid Oxide Fuel Cell-Steam Turbine (SOFC-ST) Plant
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Operating Point Optimization of a Hydrogen Fueled Hybrid Solid Oxide Fuel Cell-Steam Turbine (SOFC-ST) Plant

机译:氢燃料混合固体氧化物燃料电池-蒸汽轮机(SOFC-ST)装置的工作点优化

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This paper presents a hydrogen powered hybrid solid oxide fuel cell-steam turbine (SOFC-ST) system and studies its optimal operating conditions. This type of installation can be very appropriate to complement the intermittent generation of renewable energies, such as wind generation. A dynamic model of an alternative hybrid SOFC-ST configuration that is especially suited to work with hydrogen is developed. The proposed system recuperates the waste heat of the high temperature fuel cell, to feed a bottoming cycle (BC) based on a steam turbine (ST). In order to optimize the behavior and performance of the system, a two-level control structure is proposed. Two controllers have been implemented for the stack temperature and fuel utilization factor. An upper supervisor generates optimal set-points in order to reach a maximal hydrogen efficiency. The simulation results obtained show that the proposed system allows one to reach high efficiencies at rated power levels.
机译:本文介绍了一种氢动力混合固体氧化物燃料电池-蒸汽轮机(SOFC-ST)系统,并研究了其最佳运行条件。这种类型的安装非常适合补充间歇性可再生能源的产生,例如风力发电。开发了特别适用于氢气的替代混合SOFC-ST配置的动力学模型。所提出的系统回收高温燃料电池的废热,以基于蒸汽轮机(ST)供给底部循环(BC)。为了优化系统的行为和性能,提出了一种两级控制结构。已为烟囱温度和燃料利用率实现了两个控制器。上级主管生成最佳设定点,以达到最大的氢气效率。获得的仿真结果表明,所提出的系统允许在额定功率水平下达到较高的效率。

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