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DEVELOPMENT OF A FUEL-AIR PREMIXER FOR A SUB-PPM NO_X BURNER

机译:SUB-PPM NO_X燃烧器的燃油预混器的开发

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摘要

The concept of the cyclic periodical mixing combustion process, which had been presented earlier [1,2], was implemented in a test combustor with external mixture preparation [3,4]. As a major step towards the technical implementation of the process in gas turbines a low-pressure-drop fuel-air premixer on the basis of a vortex generator has been developed and implemented in the test rig. The premixer was optimized for preheat temperatures relevant for gas turbines, so that with high air preheat between 680 K and 780 K NO_X emissions below 1 ppm(v) and CO emissions below 8 ppm(v) (15% O_2, dry) were achieved in the tests for adiabatic flame temperatures between 1550 K at the blowout limit and an upper limit of 1630 K. As the measured emissions are almost identical with the data measured previously for the perfectly premixed case it can be concluded that the vortex mixer generates a spatially and temporally almost uniform mixture for properly selected fuel to air momentum flux ratios.
机译:循环周期性混合燃烧过程的概念已在较早提出[1,2],并在带有外部混合物制备的试验燃烧器中实现[3,4]。作为朝着在燃气轮机中技术实施迈出的重要一步,已经开发出了一种基于涡流发生器的低压降燃油-空气预混合器,并将其应用于测试设备中。预混器针对燃气轮机相关的预热温度进行了优化,因此在680 K至780 K的高空气预热下,NO_X排放量低于1 ppm(v),CO排放量低于8 ppm(v)(15%O_2,干燥)在绝热火焰温度为1550 K(上限)和1630 K(上限)之间的绝热测试中。由于测得的排放量几乎与之前在完全预混情况下测得的数据相同,因此可以得出结论,涡旋混合器会在空间上产生以及适当选择的燃料与空气动量通量比的时间上几乎均匀的混合物。

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