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DESIGN AND EMULATION OF A TURBOCHARGED BIO-FUELLED SOFC PLANT

机译:涡轮增压生物燃料SOFC工厂的设计与仿真

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This paper presents a steady-state model of an innovative turbocharged solid oxide fuel cell system fed by biofuel. The aim of this plant layout is the development of a reduced-cost solution, which involves the pressurization carried out with a mass production machine such as a turbocharger (instead of a microturbine). The turbocharger pressurizes the solid oxide fuel cell to increase the performance. Following the experimental results to choose the suitable machine and for validating the turbocharger model, this tool was implemented to model the whole plant. It was used to calculate the operational conditions and to define the coupling aspects between the turbocharger, the recuperator and the solid oxide fuel cell system (comprising a fuel cell stack, an air pre-heater, a reformer, an off-gas burner and an anodic ejector). The model permitted the component characterization and supported the design of an emulator test rig based on the coupling of a turbocharger and a pressure vessel. This facility was designed to conduct the experimental tests at system level on the matching between the machine and the fuel cell, especially for the dynamic and the control system aspects. To emulate the fuel cell, the rig was based on a specially designed pressure vessel equipped with a burner and inert ceramic materials. Moreover, the facility was designed to produce the turbine inlet conditions in terms of mass flow, temperature, pressure and gas composition (similitude conditions can be evaluated).
机译:本文提出了一种以生物燃料为燃料的创新型涡轮增压固体氧化物燃料电池系统的稳态模型。这种工厂布局的目的是开发一种成本更低的解决方案,其中涉及使用诸如涡轮增压器(而不是微型涡轮机)之类的批量生产机器进行增压。涡轮增压器对固体氧化物燃料电池加压以提高性能。根据实验结果选择合适的机器并验证涡轮增压器模型,该工具可用于对整个工厂进行建模。它用于计算运行条件并定义涡轮增压器,同流换热器和固体氧化物燃料电池系统(包括燃料电池堆,空气预热器,重整器,废气燃烧器和阳极喷射器)。该模型可以对部件进行特征描述,并支持基于涡轮增压器和压力容器耦合的仿真器测试台的设计。该设备旨在在系统级别上对机器与燃料电池之间的匹配进行实验测试,尤其是在动态和控制系统方面。为了模拟燃料电池,该设备基于专门设计的压力容器,该压力容器配备有燃烧器和惰性陶瓷材料。此外,该设备的设计目的是根据质量流量,温度,压力和气体成分(可评估相似条件)来产生涡轮机的进气条件。

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