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A multiple inlet swirler for gas turbine combustorsud

机译:燃气轮机燃烧器的多入口旋流器 ud

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摘要

The central recirculation zone (CRZ) in a swirl stabilized gas turbine combustor has a dominant effect on the fuel air mixing process and flame stability. Most of state of the art swirlers share one disadvantage; the fixed swirl number for the same swirler configuration. Thus, in a mathematical sense, Reynolds number becomes the sole parameter for controlling the flow characteristics inside the combustor. As a result, at low load operation, the generated swirl is more likely to become feeble affecting the flame stabilization and mixing process. This paper introduces a new swirler concept which overcomes the mentioned weakness of the modern configurations. The new swirler introduces air tangentially and axially to the combustor through tangential vanes and an axial vanes respectively. Therefore, it provides different swirl numbers for the same configuration by regulating the ratio between the axial and tangential flow momenta. The swirler aerodynamic performance was investigated using four CFD simulations in order to demonstrate the impact of tangential to axial flow rate ratio on the CRZ. It was found that the length of the CRZ is directly proportional to the tangential to axial air flow rate ratio.
机译:涡流稳定型燃气轮机燃烧器中的中央再循环区(CRZ)对燃料空气混合过程和火焰稳定性具有主要影响。大多数最先进的旋流器都有一个缺点。相同旋流器配置的固定旋流数。因此,从数学上讲,雷诺数成为控制燃烧器内部流动特性的唯一参数。结果,在低负载操作下,产生的旋流更可能变得微弱,影响火焰稳定和混合过程。本文介绍了一种新的旋流器概念,它克服了现代配置中提到的缺点。新的旋流器分别通过切向叶片和轴向叶片将空气切向和轴向引入燃烧室。因此,通过调节轴向和切向流动力矩之间的比率,它为相同的配置提供了不同的旋流数。为了证明切向轴向流量比对CRZ的影响,使用四个CFD模拟研究了旋流器的空气动力学性能。已经发现,CRZ的长度与切向空气轴向流量比成正比。

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