首页> 外文会议>2003 ASME(American Society of Mechanical Engineers) Turbo Expo; Jun 16-19, 2003; Atlanta, Georgia >SURFACE-STABILIZED FUEL INJECTORS WITH SUB-THREE PPM NO_x EMISSIONS FOR A 5.5 MW GAS TURBINE ENGINE
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SURFACE-STABILIZED FUEL INJECTORS WITH SUB-THREE PPM NO_x EMISSIONS FOR A 5.5 MW GAS TURBINE ENGINE

机译:5.5 MW燃气轮机用亚三PPM NO_x排放的表面稳定的燃油喷射器

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ALZETA Corporation has developed surface-stabilized fuel injectors for use with lean premixed combustors which provide extended turndown and ultra-low NO_x emission performance. These injectors use a patented technique to form interacting radiant and blue-flame zones immediately above a selectively-perforated porous metal surface. This allows stable operation at low reaction temperatures. A previous ASME paper (IJPGC2002-26088) described the development of this technology from the proof-of-concept stage to prototype testing. In 2002 development of these fuel injectors for the 5.5 MW turbine accelerated Additional single-injector rig tests were performed which also demonstrated ultra-low emissions of NO_x and CO at pressures up to 1.68 MPa (16.6 atm) and inlet temperatures up to 670°K (750℉). A pressurized multi-injector 'sector rig' test was conducted in which two injectors were operated simultaneously in the same geometric configuration as that expected in the engine combustor liner. The multi-injector package was operated with various combinations of fired and unfired injectors, which resulted in low emissions performance and no adverse affects due to injector proximity. To date sub-3 ppm NOx emissions with sub-10 ppm CO emissions have been obtained over an operating range of 0.18 to 1.68 MPa (1.8 to 16.6 atm), inlet temperatures from 340 to 670°K (186 to 750℉), and adiabatic flame temperatures from 1740 to 1840°K (2670 to 2850℉). A full scale multi-injector engine simulation is scheduled for the beginning of 2003, with engine tests beginning later that year.
机译:阿尔泽塔公司开发了用于稀薄预混燃烧器的表面稳定燃料喷射器,该燃烧器可提供更宽的调节比和超低的NO_x排放性能。这些喷油器使用专利技术在紧靠选择性穿孔的多孔金属表面上方形成相互作用的辐射区和蓝色火焰区。这允许在低反应温度下稳定运行。先前的ASME论文(IJPGC2002-26088)描述了该技术从概念验证阶段到原型测试的发展。在2002年,为加速5.5兆瓦涡轮机开发了这些喷油器,并进行了附加的单喷油器试验,该试验还证明了NO_x和CO的超低排放,压力高达1.68 MPa(16.6 atm),进口温度高达670°K (750℉)。进行了加压的多喷射器“扇形钻机”测试,其中两个喷射器以与发动机燃烧器衬套相同的几何构造同时运行。多喷射器组件与点火和未点火喷射器的各种组合一起运行,导致排放性能低,并且不会因喷射器接近而产生不利影响。迄今为止,在0.18至1.68 MPa(1.8至16.6 atm)的工作范围,340至670°K(186至750℉)的入口温度范围内,获得了低于3 ppm的COx排放和低于3 ppm的NOx排放。绝热火焰温度为1740至1840°K(2670至2850℉)。计划在2003年初进行全面的多喷油嘴发动机仿真,并于当年晚些时候开始发动机测试。

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