首页> 外文会议>ASME Turbo Expo: Turbomachinery Technical Conference and Exposition >DEVELOPMENT AND ATMOSPHERIC TESTING OF A HIGH HYDROGEN FLAMESHEET™ COMBUSTOR FOR THE OP16 GAS TURBINE
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DEVELOPMENT AND ATMOSPHERIC TESTING OF A HIGH HYDROGEN FLAMESHEET™ COMBUSTOR FOR THE OP16 GAS TURBINE

机译:用于OP16燃气轮机的高氢火焰丸™燃烧器的开发和大气检测

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Gas turbines with a combustion system for hydrogen operation offer a low carbon solution to support the stability of the energy grid. This provides a solution capturing the needs for energy storage, in the form of hydrogen, and flexible power generation. Fuel flexibility is a key requirement to reduce the operational risks in case hydrogen is not available, whereby hydrogen can be combined with other conventional or alternative fuels. A key issue to achieve 100% hydrogen combustion with low emissions is to prevent flashback. To address the challenges, a project consortium was set-up consisting of gas turbine equipment manufacturers, academia and end-users. The major objective is to develop a cost-effective, ultra-low emissions (sub 9 ppm NO_x and CO) combustion system for gas turbines in the 1-300 MW output range, including the 1.85 MWe OPRA OP16 gas turbine. At the center of this innovative high-technology project is the patented and novel aerodynamic trapped vortex FlameSheet™ combustion technology platform. Burner concepts based on an aerodynamically trapped vortex flame stabilization have a higher resistance towards flame blowout than conventional swirl stabilized burners. This paper will present the results of the first phase of the project, whereby atmospheric testing of the upgraded FlameSheet™ combustor has been performed operating on natural gas, hydrogen and mixtures thereof. The optimized combustor configurations demonstrated a wide load range on 100% hydrogen, and these results will be presented.
机译:具有用于氢操作的燃气涡轮机的燃气轮机提供低碳解决方案以支持能量栅格的稳定性。这提供了一种解决方案,以氢气的形式捕获能量存储的需求和灵活的发电。燃料灵活性是减少氢气不可用的操作风险的关键要求,由此氢气可以与其他常规或替代燃料组合。实现100%氢燃烧的关键问题是防止闪回。为解决挑战,建立了一个项目联盟,包括燃气轮机设备制造商,学术界和最终用户。主要目标是为1-300兆瓦输出范围内的燃气轮机开发具有成本效益,超低排放(Sub 9 PPM No_X和Co)燃烧系统,包括1.85 MWE OPRA OP16燃气轮机。该创新的高科技项目的中心是专利和新型空气动力学被困的涡旋Flamesheet™燃烧技术平台。基于空气动力学捕获的涡流火焰稳定的燃烧器概念比传统的旋流稳定燃烧器具有更高的火焰井喷的阻力。本文将介绍该项目的第一阶段的结果,由此已经在天然气,氢气和混合物上进行了升级的Flamesheet™燃烧器的大气测试。优化的燃烧器配置在100%氢气上表现出宽的负载范围,并且将呈现这些结果。

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