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EFFECT OF ASYMMETRIC JET PLACEMENT ON TURBULENT FLOW STRUCTURE INSIDE A JET-STIRRED REACTOR

机译:非对称喷射放置对喷射反应器内部湍流结构的影响

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Particle Image Velocimetry (PIV) was used to investigate the turbulent flow structure inside a jet-stirred cylindrical vessel. The submerged jet issued vertically downward from a long pipe ensuring fully developed turbulent flow conditions at the outlet. The Reynolds number based on jet mean exit velocity was 15,000. The effect of symmetric and asymmetric nozzle placement within the vessel on the resulting flow patterns was also studied. The measured turbulent velocity fields are presented using Reynolds decomposition into mean and fluctuating components, which, for the selected flow configuration, inflow and boundary conditions, allow for straightforward assessment of turbulence models and numerical schemes. The flow field was subdivided into three regions: the jet, the jet-wall interaction and bulk of vessel. Proper Orthogonal Decomposition (POD) analysis was applied to identify the most energetic coherent structures of the turbulent flow field in the bulk of tank region. The swirling strength vortex identification technique was used to detect the existence and strength of vortical structures in the jet region.
机译:粒子图像VENOCIMETRY(PIV)用于研究喷射搅拌圆柱容器内的湍流结构。从长管道垂直发出的浸没式喷射,确保出口处完全发育的湍流条件。基于喷射平均出口速度的雷诺数为15,000。还研究了对称和不对称喷嘴放置在所得到的流动模式上的对称和不对称喷嘴的影响。使用Reynolds分解给出测量的湍流速度,以平均和波动部件,其用于所选择的流动配置,流入和边界条件,允许对湍流模型和数值方案进行直接评估。流场被细分为三个区域:喷射,射流相互作用和大部分血管。应用了适当的正交分解(POD)分析以识别大量罐区域中湍流场中最能充电的相干结构。使用旋转强度涡旋识别技术来检测喷射区域中涡流结构的存在和强度。

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