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HYDROGEN ENRICHED COMBUSTION TESTING OF SIEMENS SGT-400 AT HIGH PRESSURE CONDITIONS

机译:高压条件下西门子SGT-400的氢气富集燃烧试验

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Following successful testing of the SGT-400 combustion system at atmospheric conditions with hydrogen enriched natural gas, a high pressure combustion test campaign was carried out at the Siemens test facility in Lincoln UK. Combustion performance at full engine operating conditions was studied, with the aim of demonstrating the capability of the standard SGT-400 combustion hardware to fire fuels with increased hydrogen content. Measurements consisted of: a pilot tip thermocouple to monitor the risk of flashback; pressure sensors to capture the combustion dynamics signature; and emissions instrumentation measuring NO_x and CO. The combustor was also instrumented with thermocouples to monitor both the distribution of wall temperatures and potential locations of flashback when utilizing the highly reactive hydrogen enriched gas. The current paper reports the findings of the high pressure tests and compares with the atmospheric results that had been documented previously. Combustion behavior at full engine pressure and temperature was found to be consistent with atmospheric conditions. Pilot tip temperature increased with the hydrogen gas content due to the higher flame speed. Combustion dynamics shifted to a higher frequency for the hydrogen enriched gas, and heat release fluctuations increased. NO_x emission also increased with the hydrogen blending due to the enhanced fuel reactivity. The high pressure tests demonstrated that the SGT-400 standard DLE combustion system can operate without risk of flashback for up to 20% vol hydrogen content. The next phase of the hydrogen program is to test a production engine using enriched gas and confirm its full operational characteristics. Extending the operational envelope of the standard DLE combustion system to hydrogen contents above 20% vol is also of interest.
机译:在用富含氢气的大气条件下成功测试SGT-400燃烧系统后,在林肯英国西门子测试设施进行了高压燃烧试验活动。研究了全发动机运行条件下的燃烧性能,目的是通过增加氢含量来证明标准SGT-400燃烧五燃烧硬件的能力。测量包括:试验尖端热电偶,以监测闪回的风险;压力传感器捕获燃烧动力学签名;和排放仪表测量NO_X和CO。燃烧器还用热电偶仪表,在利用高反应性富含富含富含富含富氢气的气体时监测壁温度和闪回的潜在位置。目前的论文报告了高压测试的结果,并与先前记录过的大气结果进行了比较。发现全发动机压力和温度下的燃烧行为与大气条件一致。由于火焰速度较高,导尖尖端温度随氢气含量而增加。燃烧动力学移至富含氢气的较高频率,并且增加了热释放波动。由于增强的燃料反应性,NO_X发射也随氢混合而增加。高压测试表明,SGT-400标准DLE燃烧系统可以在没有闪回风险的情况下运行,最高可达20%的氢含量。氢气计划的下一阶段是使用富集的气体测试生产发动机,并确认其全部操作特性。将标准DLE燃烧系统的操作包络扩展到20%Vol的氢含量也是感兴趣的。

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