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Doppler global velocimetry for the analysis of combustor flows

机译:多普勒整体测速分析燃烧室流量

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The principle of Doppler global velocimetry (DGV) and a DGV system optimized for time averaged three-component velocity measurements is described in this paper. Furthermore, the design of the different components of the DGV-system as well as the manner of its operation is presented. The volumetric, time averaged, three-component velocity distribution was acquired in the isothermal flow of a low NOx, staged combustion chamber sector from Rolls-Royce Deutschland. The combustor was developed within the German public-funded Engine 3E program. On the basis of the collected data, the complex flow phenomena in the combustor could be analyzed in detail and supported by CFD calculations. A recently developed, pulsed Nd:YAG laser now enables planar, time-averaged, three-component DGV application in combusting flow fields. Measurements were carried out in a single-nozzle, kerosene combustion chamber model, operated under atmospheric pressure. The successful measurements demonstrated the capability of DGV as a new tool for combustion research. It was possible to separately measure the gas velocity and the velocity of the fuel droplets, a promising capability of DGV for two phase flow analysis.
机译:本文介绍了多普勒全局测速(DGV)的原理和针对时间平均三分量速度测量而优化的DGV系统。此外,还介绍了DGV系统不同组件的设计及其运行方式。从罗尔斯·罗伊斯公司获得了低NOx分级燃烧室部分的等温流中的时间平均体积三分量速度分布。该燃烧器是在德国公共资助的Engine 3E计划中开发的。根据收集的数据,可以详细分析燃烧室中的复杂流动现象,并通过CFD计算来支持。最近开发的脉冲Nd:YAG脉冲激光器现在可以在燃烧流场中应用平面,时间平均的三分量DGV。在大气压下操作的单喷嘴煤油燃烧室模型中进行测量。成功的测量证明了DGV作为燃烧研究新工具的能力。可以分别测量气体速度和燃料液滴的速度,这是DGV用于两相流分析的有前途的功能。

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