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首页> 外文期刊>Indian Journal of Science and Technology >Numerical Simulations of Rich Burn Quick Mix Lean Combustor
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Numerical Simulations of Rich Burn Quick Mix Lean Combustor

机译:富燃快速混合稀薄燃烧器的数值模拟

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Objectives: This paper aims to present a summary of Nitrogen oxide formation in designed Rich Burn Quick Mix Lean Burn Gas Turbine Combustor. The combustor uses Hydrogen as a fuel and designed for 20 kW power output. Methods/Statistical Analysis: The numerical study has been carried out for designed combustion chamber by using Modified O'Conaire Mechanism. The output of numerical study concludes that the design combustion chamber has high velocities of the order of 600m/s in the quick mix zone which in turns suggest very high pressure drop. The highpressure drop is not advisable for gas turbine engine. The modifications in quick mix zone are redesigned to reduce the velocities and in turn reduce pressure drop. Redesign of quick mix zone is carried out providing diffuser at the exit of quick mix zone. The redesigned combustor is numerically simulated at different overall equivalence ratio. Findings: The results suggest low velocity levels in the rich zone leading to better mixing of fuel and air streams, near uniform temperature distribution in annulus liner, flame blow out in quick mix zone, and stable combustion in lean zone. Application/Improvements: Modified Combustion chamber was numerically tested for different altitude condition and different equivalence ratio for stable operation during real life condition.
机译:目的:本文旨在概述设计的Rich Burn快速混合稀薄燃气轮机燃烧器中氮氧化物的形成。该燃烧器使用氢气作为燃料,设计输出功率为20 kW。方法/统计分析:使用改进的O'Conaire机构对设计的燃烧室进行了数值研究。数值研究的结果表明,设计燃烧室在快速混合区具有600m / s量级的高速度,这又表明压力降非常高。对于燃气涡轮发动机,建议不要使用高压降。重新设计了快速混合区中的修改,以降低速度并进而降低压降。进行快速混合区的重新设计,以在快速混合区的出口处提供扩散器。重新设计的燃烧器在不同的总当量比下进行了数值模拟。研究结果:结果表明,富油区的速度水平较低,导致燃料和空气流更好地混合,环形衬里的温度分布接近均匀,快速混合区的火焰被吹散,贫油区的燃烧稳定。应用/改进:对改进的燃烧室进行了数值测试,以适应不同的海拔条件和不同的当量比,从而在现实生活中稳定运行。

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