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GAS TURBINES FIRED WITH BIOMASS PYROLYSIS SYNGAS: ANALYSIS OF THE OVERHEATING OF HOT GAS PATH COMPONENTS

机译:生物质热解炉产生的燃气轮机:热气路径组件过热的分析

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Alternative resources such as biomass, and municipal and industrial waste are being considered as a source for the production of syngas to replace natural gas as a power turbine fuel. Pyrolysis of biomass produces a syngas composed primarily of CO, CO_2, CH_4 and H_2 with a medium-low lower heating value (LHV) that is strongly dependent on the process boundary conditions such as the pyrolysis temperature and product residence time in the reactor [1,2].The issues associated with conventional gas turbines also apply to syngas turbines with the added complexity of the fuel and impurities. At present, syngas turbines are operated at firing temperatures similar to those of turbines fired on natural gas by increasing the fuel mass flow through the turbine. While this produces a higher turbine power output, the heat transferred to the hot flow-path vanes and blades is also greater.The aim of this paper is to report on the use of numerical modeling to analyze the fundamental impact of firing gas turbines with biomass pyrolysis syngas. To complete the analysis, the results have been compared with data from the literature on gas turbines fired with coal gasification syngas.The test engine used to perform this analysis is a General Electric GE10-2 gas turbine. The performance, aerodynamics and secondary flows were computed using proprietary software, while commercial finite element software was used to perform the thermal and local creep analyses.
机译:诸如生物质,城市和工业废物等替代资源正被视为生产合成气的来源,以取代天然气作为动力涡轮机燃料。生物质的热解产生主要由CO,CO_2,CH_4和H_2组成的合成气,具有较低的热值(LHV),这在很大程度上取决于过程边界条件,例如热解温度和产品在反应器中的停留时间[1] ,2]。 与常规燃气轮机相关联的问题也适用于合成气涡轮机,其具有燃料和杂质的增加的复杂性。当前,合成气涡轮机通过增加流过涡轮机的燃料质量流量而在与以天然气燃烧的涡轮机相似的燃烧温度下运行。尽管这产生了更高的涡轮功率输出,但传递到热流径叶片和叶片的热量也更大。 本文的目的是报告使用数值模型来分析生物质热解合成气燃烧燃气轮机的基本影响。为了完成分析,将结果与文献中与煤气化合成气燃烧的燃气轮机的数据进行了比较。 用于执行此分析的测试引擎是通用电气GE10-2燃气轮机。使用专有软件计算性能,空气动力学和二次流,而使用商业有限元软件执行热和局部蠕变分析。

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