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TURBULENT BEHAVIOUR IN A LOW ASPECT RATIO DUMP COMBUSTOR AT LOW SWIRL NUMBER

机译:低旋流比低比空转比燃烧室的湍流特性

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This paper reports an experimental investigation of a non-reacting flow in a low aspect ratio dump combustor with taper exit. The separated flow reattachment length for this combustor was higher than the length of the combustor. In order to understand the flow behavior inside the combustor, the velocity measurement inside the combustor was carried out by calibrated one-dimensional hot wire probes for the same flow conditions. The turbulent intensity variation inside the combustor without swirl flow was found to be axi-symmetric. The turbulence intensity along the centre line is lower than at other radial locations because of the presence of the potential core. The intensity in the core region increases as one moves along the centerline in the axial direction, which can be attributed to the weakening of the potential core and the increase in the extent of the shear layer. The turbulence behavior significantly changed with the use of a swirler at the inlet of the combustor. The intensity variation inside the combustor is more uniform than the low swirl number SN=0.23. The higher turbulence kinetic energy and turbulent dissipation rate was observed at this swirl number. Therefore, the effect of swirl is expected to improve the combustion through better mixing and flame stabilization.
机译:本文报告了在具有锥孔出口的低长宽比转储燃烧器中进行非反应流的实验研究。该燃烧器的分开的流动重装长度大于燃烧器的长度。为了了解燃烧器内部的流动特性,在相同的流动条件下,通过校准的一维热线探针对燃烧器内部的速度进行了测量。发现没有旋流的燃烧器内部的湍流强度变化是轴对称的。由于存在潜在的核心,沿中心线的湍流强度低于其他径向位置。芯区域中的强度随着沿轴向沿中心线的移动而增加,这可以归因于潜在芯的弱化和剪切层范围的增加。在燃烧室入口处使用旋流器,湍流行为发生了显着变化。燃烧器内部的强度变化比低旋流数SN = 0.23更均匀。在该旋流数下观察到较高的湍动能和湍流耗散率。因此,涡流的效果有望通过更好的混合和火焰稳定来改善燃烧。

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