首页> 外文会议>ASME Turbo Expo: Turbomachinery Technical Conference and Exposition >COMBUSTOR DEVELOPMENT AND ENGINE DEMONSTRATION OF MICRO-MIX HYDROGEN COMBUSTION APPLIED TO M1A-17 GAS TURBINE
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COMBUSTOR DEVELOPMENT AND ENGINE DEMONSTRATION OF MICRO-MIX HYDROGEN COMBUSTION APPLIED TO M1A-17 GAS TURBINE

机译:微混合氢燃烧的燃烧器开发和发动机演示应用于M1A-17燃气轮机

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Kawasaki Heavy Industries, LTD. (KHI) has research and development projects for a future hydrogen society. These projects comprise the complete hydrogen cycle, including the production of hydrogen gas, the refinement and liquefaction for transportation and storage, and finally the utilization in a gas turbine for electricity and heat supply. Within the development of the hydrogen gas turbine, the key technology is stable and low NOx hydrogen combustion, namely the Dry Low NOx (DLN) hydrogen combustion. KHI, Aachen University of Applied Science, and B&B-AGEMA have investigated the possibility of low NOx micro-mix hydrogen combustion and its application to an industrial gas turbine combustor. From 2014 to 2018, KHI developed a DLN hydrogen combustor for a 2 MW class industrial gas turbine with the micro-mix technology. Thereby, the ignition performance, the flame stability for equivalent rotational speed, and higher load conditions were investigated. NOx emission values were kept about half of the Air Pollution Control Law in Japan: 84ppm (O2-15%). Hereby, the elementary combustor development was completed. From May 2020, KHI started the engine demonstration operation by using an MI A-17 gas turbine with a co-generation system located in the hydrogen-fueled power generation plant in Kobe City, Japan. During the first engine demonstration tests, adjustments of engine starting and load control with fuel staging were investigated. On 21st May, the electrical power output reached 1,635 kW, which corresponds to 100 % load (ambient temperature 20 °C), and thereby NOx emissions of65ppm (O2-15, 60 RH%) were verified. Here, for the first time, a DLN hydrogen-fueled gas turbine successfully generated power and heat.
机译:川崎重工业有限公司(khi)具有未来氢社会的研发项目。这些项目包括完整的氢循环,包括生产氢气,改进和运输和储存的液化,最后利用用于电力和供热的燃气轮机。在氢气涡轮机的开发中,关键技术是稳定且低NOx氢气燃烧,即干燥的低NOx(DLN)氢燃烧。亚琛应用科学大学和B&B-Agema khi研究了低Nox微混氢燃烧的可能性及其在工业燃气轮机燃烧器中的应用。从2014年到2018年,KHI开发了一种DLN氢燃烧器,用于2 MW级工业燃气轮机,微混合技术。由此,研究了点火性能,对等效转速的火焰稳定性,以及更高的负载条件。 NOx排放值在日本的空气污染管制法中保持约一半:84ppm(O2-15%)。因此,基本燃烧器开发完成。从2020年5月起,KHI通过使用位于日本神户市的氢气燃料发电厂的同型系统的MI A-17燃气轮机开始发动机演示操作。在第一发动机演示试验期间,研究了发动机起动和负载控制的调整,具有燃料分量。在5月21日,电力输出达到1,635 kW,其对应于100%负载(环境温度20°C),从而验证了65ppm(O2-15,60RH%)的NOx排放。这里,首次成为DLN氢气燃气轮机成功产生的功率和热量。

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