Combined Heat and Power Supply Demonstration of Micro-Mix Hydrogen Combustion Applied to M1A-17 Gas Turbine

Atsushi Horikawa, M. Ashikaga, Masato Yamaguchi, Tomoyuki Ogino, Shigeki Aoki, M. Wirsum, H. Funke, K. Kusterer
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Abstract

Kawasaki Heavy Industries, Ltd. (KHI), Aachen University of Applied Sciences, and B&B-AGEMA GmbH have investigated the potential of low NOx micro-mix (MMX) hydrogen combustion and its application to an industrial gas turbine combustor. Engine demonstration tests of a MMX combustor for the M1A-17 gas turbine with a co-generation system were conducted in the hydrogen-fueled power generation plant in Kobe City, Japan. This paper presents the results of the commissioning test and the combined heat and power (CHP) supply demonstration. In the commissioning test, grid interconnection, loading tests and load cut-off tests were successfully conducted. All measurement results satisfied the Japanese environmental regulation values. Dust and soot as well as SOx were not detected. The NOx emissions were below 84 ppmv at 15 % O2. The noise level at the site boundary was below 60 dB. The vibration at the site boundary was below 45 dB. During the combined heat and power supply demonstration, heat and power were supplied to neighboring public facilities with the MMX combustion technology and 100 % hydrogen fuel. The electric power output reached 1800 kW at which the NOx emissions were 72 ppmv at 15 % O2, and 60 %RH. Combustion instabilities were not observed. The gas turbine efficiency was improved by about 1 % compared to a non-premixed type combustor with water injection as NOx reduction method. During a total equivalent operation time of 1040 hours, all combustor parts, the M1A-17 gas turbine as such, and the co-generation system were without any issues.
微混合氢燃烧在M1A-17燃气轮机上应用的热电联供论证
川崎重工有限公司(KHI)、亚琛应用科学大学和B&B-AGEMA有限公司研究了低氮氧化物微混合(MMX)氢燃烧的潜力及其在工业燃气轮机燃烧室中的应用。在日本神户市的氢燃料发电厂进行了带有热电联产系统的M1A-17燃气轮机MMX燃烧室的发动机演示试验。本文介绍了试运行试验和热电联供示范的结果。在调试试验中,成功进行了并网、负荷试验和负荷切断试验。所有测量结果均满足日本环境法规值。没有检测到灰尘和煤烟以及SOx。当含氧量为15%时,NOx排放量低于84 ppmv。工地边界的噪音水平低于60分贝。场地边界处的振动小于45 dB。在热电联供示范中,利用MMX燃烧技术和100%氢燃料向周边公共设施提供热电。在15% O2和60% RH条件下,NOx排放量为72 ppmv,功率输出达到1800 kW。燃烧不稳定性未被观察到。与非预混型燃烧器相比,采用喷水减NOx方法的燃气轮机效率提高了约1%。在1040小时的总等效运行时间内,所有燃烧室部件,M1A-17燃气轮机以及热电联产系统没有任何问题。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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