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NUMERICAL SIMULATION OF POLLUTANT EMISSIONS IN A CAN-TYPE LOW NO_X GAS TURBINE COMBUSTOR

机译:罐式低NO_X燃气轮机燃烧室污染物排放的数值模拟

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A research program is in development in China in order to realize a demonstrator of combined cooling heating and power system (CCHP) with net electrical output around lOOkW by using of a can-type micro gas turbine. In this paper, numerical simulations were completed to investigate the pollutant emissions in a can-type low NOx gas turbine combustor. Based on the analysis of the computational fluid dynamics (CFD) results, a Chemical Reactor Network (CRN) model was set up to simulate the pollutant emissions in the combustor with detailed gas-phase chemical kinetic mechanism of GRI-Mech 3.0. The CRN consists of a number of ideal reactors of the perfectly stirred reactors (PSR) and plug flow reactors (PFR) in series and parallel structures. Two types of CRN models were designed. One is relatively simple, another is more complex. The results show that the complex CRN model corresponds with the actual combustion process better. The trends of nitrogen oxides (NOx) and carbon monoxide (CO) varying with the equivalence ratio were conducted. Effects of the inlet temperature and pressure on NOx and CO emissions were also presented in this paper. At last, the numerical results are compared with the experimental results.
机译:中国正在开发一项研究计划,以通过使用罐式微型燃气轮机实现净电力输出约100kW的冷却供热和电力系统组合(CCHP)演示器。本文完成了数值模拟,以研究罐式低NOx燃气轮机燃烧室中的污染物排放。在对计算流体动力学(CFD)结果进行分析的基础上,建立了化学反应器网络(CRN)模型,以详细的GRI-Mech 3.0气相化学动力学机理模拟燃烧室中的污染物排放。 CRN由串联和并联结构的理想搅拌反应器(PSR)和活塞流反应器(PFR)的许多理想反应器组成。设计了两种类型的CRN模型。一个相对简单,另一个相对复杂。结果表明,复杂的CRN模型与实际燃烧过程较好地吻合。得出了氮氧化物(NOx)和一氧化碳(CO)随当量比变化的趋势。本文还介绍了入口温度和压力对NOx和CO排放的影响。最后,将数值结果与实验结果进行了比较。

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