首页> 外文会议>ASME Turbo Expo: Turbomachinery Technical Conference and Exposition >COMBUSTION CHARACTERISTICS OF NATURAL GAS FUELED, PREMIXED TURBULENT JET FLAME ARRAYS CONFINED IN A HEXAGONAL COMBUSTOR
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COMBUSTION CHARACTERISTICS OF NATURAL GAS FUELED, PREMIXED TURBULENT JET FLAME ARRAYS CONFINED IN A HEXAGONAL COMBUSTOR

机译:限制在六角形燃烧室中的天然气,混合湍流射流火焰的燃烧特性

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摘要

In order to extend the operation regime of existing gas turbine combustion systems to lower the minimum loads, the applicability of matrix burners (arrays of jet flames) as an alternative to conventional swirl stabilized burners has been considered. In comparison to well-studied single jet flame systems, the effects of geometry and thermodynamic parameters on characteristics of matrix burner systems have not been studied in detail. Information, which is essential for design processes e.g. scaling of matrix burners, is not yet available in public domain. This work involves a systematic investigation of a matrix burner system operating at highly turbulent flow conditions (Reynolds Number ≈ 20000) prevailing in gas turbine combustion systems. In order to understand the effects of geometrical scaling, three variants of jet diameter have been investigated. A detailed test campaign including lean blow out limits detection, velocity field measurement and hydroxyl radical (OH*) chemilumi-nescence recording has been conducted. Influence of variation in stoichiometry and exit velocity of fuel-air mixture has been captured. The results show that it is possible to generalize the scaling of the matrix burner using the well-known Peclet criterion.
机译:为了延长现有燃气轮机燃烧系统的操作制度以降低最小载荷,已经考虑了基质燃烧器(喷射火焰阵列)作为传统涡流稳定燃烧器的替代的适用性。与研究的单射流系统相比,几何形状和热力学参数对基质燃烧器系统特性的影响尚未详细研究。信息,对于设计过程至关重要。矩阵刻录机,尚未在公共领域提供。这项工作涉及在燃气轮机燃烧系统中普遍存在的高湍流条件(Reynolds Nica≈20000)的系统上进行系统研究。为了理解几何缩放的影响,研究了三种喷射直径的变体。详细的测试活动,包括贫排放限制检测,速度场测量和羟基(OH *)进行了化学荧光记录。已经捕获了化学计量的变化和燃料 - 空气混合物的出口速度的影响。结果表明,可以使用众所周知的Peclet标准概括基质燃烧器的缩放。

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