Hydrogen Blending Into Ansaldo Energia AE94.3A Gas Turbine: High Pressure Tests, Field Experience and Modelling Considerations

A. Ciani, L. Tay-Wo-Chong, A. Amato, E. Bertolotto, G. Spataro
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引用次数: 1

Abstract

Fuel flexibility in gas turbine development has become increasingly important and modern engines need to cope with a broad variety of fuels. The target to operate power plants with hydrogen-based fuels and low emissions will be of paramount importance in a future focusing on electric power decarbonization. Ansaldo Energia AE94.3A engine acquired broad experience with operation of various natural gas and hydrogen fuel blends, starting in 2006 in the Brindisi (Italy) power plant. Based on the exhaustive experience acquired in the field, this paper describes the latest advancements characterizing the operation of the AE94.3A burner with high pressure combustion tests adding hydrogen blends ranging from 0 to 40% in volume. The interpretation of the test results is supported by reactive and non-reactive simulations describing the effects of varying fuel reactivity on the flame structure as well as the impact of fuel / air momentum flux ratio on the fuel / air interaction and fuel distribution in the combustion chamber. As expected, increasing amounts of hydrogen in the fuel are also associated with higher amounts of NOx production, however this effect could be countered by optimization of the fuel staging strategy, based on the mentioned CFD considerations and feedback from high pressure tests.
氢气混入安萨尔多能源AE94.3A燃气轮机:高压试验,现场经验和建模考虑
燃料的灵活性在燃气轮机的发展中变得越来越重要,现代发动机需要应对各种各样的燃料。在以电力脱碳为重点的未来,以氢燃料和低排放为基础的发电厂的运营目标将是至关重要的。安萨尔多能源公司(Ansaldo Energia)的AE94.3A发动机从2006年开始在意大利布林迪西(Brindisi)发电厂积累了多种天然气和氢燃料混合物的运行经验。本文根据在该领域积累的大量经验,介绍了AE94.3A燃烧器在加入体积为0 ~ 40%的氢混合物的高压燃烧试验中运行特性的最新进展。对测试结果的解释得到了反应性和非反应性模拟的支持,这些模拟描述了不同燃料反应性对火焰结构的影响,以及燃料/空气动量通量比对燃料/空气相互作用和燃烧室中燃料分布的影响。正如预期的那样,燃料中氢气含量的增加也与NOx产量的增加有关,然而,基于上述CFD考虑和高压测试的反馈,可以通过优化燃料分级策略来抵消这种影响。
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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