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PLANAR INVESTIGATION OF OUTLET BOUNDARY CONDITIONS EFFECT ON ISOTHERMAL FLOW FIELDS OF A SWIRL- STABILIZED BURNER

机译:旋流稳定燃烧器等温流场的出口边界条件平面研究

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The swirling flow velocity profiles can be strongly influenced by the outlet conditions of the combustion chamber especially at subcritical flow conditions. The effect of such changes on the mean flow or coherent structures is still unclear. It is investigated in the present work in an industrial swirl inducing burner in cold flow conditions with help of PIV. Proper orthogonal decomposition (POD) as well as acoustic measurements were used to characterize the coherent structures shed from the burner mouth. The combustor length (670, and 2020mm) and the outlet area contraction ratio (1, 0.56, 0.27, and 0.09) are varied. Major changes in the flow field are achieved when using a short combustor and the smallest contraction ratio. For this case, a central jet with streamwise velocity is added to the typical central recirculation zone. The POD analysis of the contraction ratios 1 and 0.09 for the long combustor shows that the first helical mode as well as Kelvin Helmholtz vortices are present with minor changes for both cases. At a contraction ratio of 0.09, some new structures at the jet location and near the combustor wall appear.
机译:燃烧室的出口条件会严重影响旋流流速曲线,尤其是在亚临界流动条件下。这种变化对平均流量或相干结构的影响尚不清楚。在当前的工作中,借助于PIV,在冷流条件下的工业旋流诱导燃烧器中对其进行了研究。正确的正交分解(POD)以及声学测量被用来表征从燃烧嘴吹出的相干结构。燃烧器的长度(670和2020mm)和出口面积收缩率(1、0.56、0.27和0.09)是变化的。当使用短的燃烧器和最小的收缩比时,可实现流场的重大变化。对于这种情况,将具有水流速度的中央射流添加到典型的中央再循环区域。对长燃烧器的收缩比1和0.09的POD分析表明,在两种情况下,第一螺旋模式以及开尔文·亥姆霍兹旋涡都存在微小变化。收缩率为0.09时,在射流位置和燃烧室壁附近会出现一些新结构。

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