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DETAILED STUDY OF FRONT MODULE FOR LOW-EMISSION COMBUSTOR

机译:低排放燃烧器前模块的详细研究

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At the ASME Turbo Expo 2018 conference held in Oslo (Norway) on the 11th-15th of June 2018, the paper GT2018-75419 «Experience of Low-Emission Combustion of Aviation and Bio Fuels in Individual Flames after Front Mini-Modules of a Combustion Chamber» was published. This paper continues the studies devoted to the low-emission combustion of liquid fuels in GTE combustors. The paper presents a description of more detailed studies of the front module with a staged pneumatic fuel spray. The aerodynamic computations of the front module were conducted, and the disperse characteristics of the fuel-air spray were measured. The experimental research was carried out in two directions: 1) probing of the 3-burner sector flame tube at the distance of one third of its length (temperature field and gas sampling); 2) numerical study of the model combustor with actual arrangement of the modules in the dome within a wide range of fuel-air ratio. The calculated and experimental data of velocity field behind the front module were compared. And new data about the flame structure inside the test sector were obtained. Experimental data confirm the results of preliminary studies of the 3-burner sector: combustion efficiency is higher than 99.8%, EiNOx is at the level of 2-3 g/fuel kg at the combustor inlet air temperature of 680K. and fuel-air ratio of 0.0225. The conducted research allowed to receive additional information on the influence of some design units on the pollutant emission and to estimate the different elements of computational methods for simulation of a low-emission combustor with a multi-atomizer dome.
机译:在2018年6月11日 - 15日在奥斯陆(挪威)举行的Asme Turbo Expo 2018年会议上,本文GT2018-75419«在燃烧前迷你模块后的单个火焰中的航空和生物燃料的低排放燃烧体验会议室»发表。本文继续研究GTE燃烧器中液体燃料的低排放燃烧。本文描述了具有分阶段气动燃料喷雾的前模块的更详细研究的描述。进行前部模块的空气动力学计算,并测量燃料空气喷雾的分散特性。实验研究在两个方向上进行:1)在其长度的三分之一(温度场和气体采样)的距离处探测3燃烧器扇区火焰管; 2)模型燃烧器的数值研究,在圆顶内模块的实际布置在宽范围的燃料 - 空气比中。比较了前模块后面的速度场的计算和实验数据。获得了关于测试部门内的火焰结构的新数据。实验数据证实了3燃烧器部门的初步研究结果:燃烧效率高于99.8%,Einox在2-3克/燃料kg水平的燃烧器入口空气温度为680k。燃料空气比为0.0225。进行的研究允许接收有关某些设计单元对污染物排放影响的额外信息,并估计具有多雾化器圆顶的低排放燃烧器模拟的计算方法的不同元素。

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