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CFD predictions of Swirl burner aerodynamics with variable outlet configurations

机译:具有可变插座配置的旋流燃烧器空气动力学的CFD预测

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摘要

Swirl stabilised combustion is one of the most widely used techniques for flame stabilisation in gas turbine combustors. Lean premixed combustion systems allow the reduction of NOx coupled with fair flame stability. The swirl mechanism produces an aerodynamic region known as central recirculation zone (CRZ) providing a low velocity region where the flame speed matches the flow velocity, thus anchoring the flame whilst serving to recycle heat and active chemical species to the root of the former. Another beneficial feature of the CRZ is the enhancement of the mixing in and around this region. However, the mixing and stabilisation processes inside of this zone have shown to be extremely complex. The level of swirl, burner outlet configuration and combustor expansion are very important variables that define the features of the CRZ. Therefore, in this paper swirling flame dynamics are investigated using computational fluid dynamics (CFD) with commercial software (ANSYS). A new generic swirl burner operated under lean-premixed conditions was modelled. A variety of nozzles were analysed using several gaseous blends at a constant power output. The investigation was based on recognising the size and strength of the central recirculation zones. The dimensions and turbulence of the Central Recirculation Zone were measured and correlated to previous experiments. The results show how the strength and size of the recirculation zone are highly influenced by the blend and infer that it is governed by both the shear layer surrounding the Central Recirculation Zones (CRZ) and the gas composition.
机译:旋流稳定燃烧是燃气轮机燃烧器中最广泛使用的火焰稳定技术之一。精益预混燃烧系统允许减少NOx与公平的火焰稳定性相连。旋转机制产生称为中央再循环区(CRZ)的空气动力学区域,提供低速区域,其中火焰速度与流速匹配,从而将火焰锚固,同时将用于将热和活性化学物质再循环到前者根的热和活性化学物质。 CRZ的另一个有益特征是增强该地区和周围的混合。然而,该区域内部的混合和稳定过程表明是非常复杂的。旋流水平,燃烧器插座配置和燃烧器扩展是定义CRZ的特征的非常重要的变量。因此,在本文中,使用商业软件(ANSYS)使用计算流体动力学(CFD)研究旋流火焰动态。建模了一个新的通用漩涡燃烧器,采用瘦尺码条件进行了建模。在恒定功率输出处使用多个气态混合物进行分析各种喷嘴。调查是基于识别中央再循环区的尺寸和强度。测量中央再循环区的尺寸和湍流并与先前的实验相关。结果表明,回复区的强度和尺寸是如何受到混合物的高度影响,并推断它由围绕中央再循环区(CRZ)和气体组成的剪切层来控制。

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    Hesham Baej;

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  • 年度 2019
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  • 原文格式 PDF
  • 正文语种 eng
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