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首页> 外文期刊>Journal of Engineering for Gas Turbines and Power >Study on the Operational Window of a Swirl Stabilized Syngas Burner Under Atmospheric and High Pressure Conditions
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Study on the Operational Window of a Swirl Stabilized Syngas Burner Under Atmospheric and High Pressure Conditions

机译:大气和高压条件下旋流稳定合成气燃烧器运行窗口的研究

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摘要

Providing better fuel flexibility for future gas turbine generations is a challenge as the fuel range is expected to become significantly wider (natural gas, syngas, etc.). The technical problem is to reach a wide operational window, regarding both operational safety and low emissions. In a previous paper, an approach to meet these requirements has already been presented. However, in this previous study it was difficult to exactly quantify the improvement in operational safety due to the fact that the flashback phenomena observed were not fully understood. The present continuative paper is focused on a thorough investigation of operational safety also involving the influence of pressure on flashback and the emissions of the proposed burner concept. To gain better insight into the character of the propagation and to visualize the path of the flame during its upstream motion, tests were done on an atmospheric combustion test rig providing almost complete optical access to the mixing section as well as the flame tube. OH~* chemiluminescence, HS-Mie scattering and ioniza-tion detectors were applied and undiluted H_2 was used as fuel for the detailed analysis. To elaborate on the influence of pressure on the stability behavior, additional tests were conducted on a pressurized test rig using a downscaled burner. OH chemiluminescence, flashback and lean blow out measurements were conducted in this campaign, using CH_4, CH_4I H_2 mixtures and pure H_2. The conducted experiments delivered the assets and drawbacks of the fuel injection strategy, where high axial fuel momentum was used to tune the flow field to achieve better flashback resistance.
机译:为未来的燃气轮机提供更好的燃料灵活性是一项挑战,因为预计燃料范围将大大扩大(天然气,合成气等)。技术问题是在操作安全性和低排放方面要达到广阔的操作窗口。在先前的论文中,已经提出了一种满足这些要求的方法。但是,在先前的研究中,由于不能完全理解所观察到的回火现象,因此难以准确量化操作安全性的提高。本续篇论文集中于对操作安全性的全面研究,其中还涉及压力对回火和拟议燃烧器概念的排放的影响。为了更好地了解传播的特征并可视化火焰在上游运动期间的路径,在大气燃烧试验台上进行了测试,提供了对混合部分以及火焰管几乎完全的光学通道。应用OH〜*化学发光,HS-Mie散射和电离检测器,将未稀释的H_2用作燃料进行详细分析。为了详细说明压力对稳定性行为的影响,在使用小型燃烧器的加压试验台上进行了附加试验。在该活动中,使用CH_4,CH_4I H_2混合物和纯H_2进行了OH化学发光,回火和稀薄吹出测量。进行的实验提供了燃料喷射策略的优点和缺点,其中使用了较高的轴向燃料动量来调整流场以实现更好的耐回火性。

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