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Experimental and Computational Study of Trapped Vortex Combustor Sector Rig with High-Speed Diffuser Flow

机译:高速扩散器流动的涡流燃烧器扇形钻机的实验与计算研究

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The Trapped Vortex Combustor (TVC) potentially offers numerous operational advantages over current production gas turbine engine combustors. These include lower weight, lower pollutant emissions, effective flame stabilization, high combustion efficiency, excellent high altitude relight capability, and operation in the lean burn or RQL modes of combustion. The present work describes the operational principles of the TVC, and extends diffuser velocities toward choked flow and provides system performance data. Performance data include EINOx results for various fuel-air ratios and combustor residence times, combustion efficiency as a function of combustor residence time, and combustor lean blow-out (LBO) performance. Computational fluid dynamics (CFD) simulations using liquid spray droplet evaporation and combustion modeling are performed and related to flow structures observed in photographs of the combustor. The CFD results are used to understand the aerodynamics and combustion features under different fueling conditions. Performance data acquired to date are favorable compared to conventional gas turbine combustors. Further testing over a wider range of fuel-air ratios, fuel flow splits, and pressure ratios is in progress to explore the TVC performance. In addition, alternate configurations for the upstream pressure feed, including bi-pass diffusion schemes, as well as variations on the fuel injection patterns, are currently in test and evaluation phases.
机译:与目前生产的燃气涡轮发动机燃烧器相比,捕集式涡流燃烧器(TVC)可能具有许多运行优势。其中包括重量更轻,污染物排放更低,有效的火焰稳定性,高燃烧效率,出色的高空重燃能力以及在稀薄燃烧或RQL燃烧模式下运行。本工作描述了TVC的工作原理,并将扩散器的速度向着阻塞流方向延伸,并提供了系统性能数据。性能数据包括各种燃油-空气比和燃烧室停留时间的EINOx结果,燃烧效率与燃烧室停留时间的关系以及燃烧室稀薄吹出(LBO)性能。进行了使用液体喷雾蒸发和燃烧建模的计算流体动力学(CFD)模拟,并且与燃烧室照片中观察到的流动结构有关。 CFD结果用于了解不同加油条件下的空气动力学和燃烧特性。与常规的燃气轮机燃烧器相比,迄今为止获得的性能数据是有利的。为了探索TVC的性能,正在对更广泛的燃料空气比,燃料分流和压力比进行进一步测试。另外,用于上游压力供给的替代构造,包括双向扩散方案,以及燃料喷射模式的变化,目前处于测试和评估阶段。

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