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Analysis of a Simple Solid Oxide Fuel Cell System with Gas Dynamic in Afterburner and Connecting Pipes

机译:加力燃烧室和连接管中具有气体动力学的简单固体氧化物燃料电池系统分析

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摘要

A simple solid oxide fuel cell plant is analysed based on the first law of thermodynamics approach. This system consists of a solid oxide fuel cell stack, a steam reformer, a mixer, a vaporiser, an afterburner, and two pre-heaters. To simplify the study, the enthalpy at each node of the system is normalized with the lower heating value of the inlet fuel. A gas dynamic model for calculating the flow in the pipes connecting the system components is considered and can be used to estimate the flow velocity and friction-induced pressure drop in the piping. Though the effect of a friction-induced pressure drop can be significant in a sizeable integrated solid oxide fuel cell-gas turbine power plant, it does not significantly affect the plant efficiency in this study, due to rather short piping used in this simple power system. A steady flow energy equation and the Rayleigh line flow assumption are applied to the afterburner to calculate the exit flow temperature, velocity and pressure.
机译:根据热力学第一定律分析了一个简单的固体氧化物燃料电池工厂。该系统由固体氧化物燃料电池堆,蒸汽重整器,混合器,汽化器,加力燃烧器和两个预热器组成。为了简化研究,系统的每个节点的焓均用进口燃料的较低热值进行归一化。考虑了用于计算连接系统组件的管道中的流量的气体动力学模型,该模型可用于估算管道中的流速和摩擦引起的压降。尽管在相当大的集成式固体氧化物燃料电池-燃气轮机发电厂中,摩擦引起的压降的影响可能很大,但由于在此简单电力系统中使用的管路相当短,因此在本研究中它不会显着影响发电厂的效率。 。将恒流能量方程式和瑞利线流量假设应用于加力燃烧器,以计算出口流的温度,速度和压力。

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