首页> 外文期刊>Journal of Fluids Engineering: Transactions of the ASME >Flow Field and Turbulence Characterization of a Counter Impinging Jet Reactor Using Particle Image Velocimetry
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Flow Field and Turbulence Characterization of a Counter Impinging Jet Reactor Using Particle Image Velocimetry

机译:反撞击射流反应器的流场和湍流特性的粒子图像测速

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摘要

We characterize the three dimensional structure and quantify turbulence quantities in a counter-impinging jet reactor with trapezoidal cross-section to test the feasibility of achieving stratified mixing. Dye flow-visualization and particle image velocimetry (PIV) velocity field measurements are made in the inlet section of the reactor. Two-component velocity measurements are made on three sets of orthogonal planes for Re_j = 1000, 1800, 2600, and 3700; the overall structure of the flow field is found to be qualitatively similar for the Reynolds numbers studied, but the precise trajectory of the mean flow is found to be sensitive to inflow boundary conditions. Reynolds stresses and anisotropic invariants are calculated; the turbulent kinetic energy decreases linearly with increasing distance downstream in the reactor and it decreases at the same relative rate for all Reynolds numbers studied; anisotropic invariants and Reynolds stress maps indicate a turbulent stress state that tends toward isotropy downstream of the inlets. Turbulent stress maps indicate that the Reynolds stress components are stratified in the reactor channel, becoming uniform as a function of z by y/D_h = 4.
机译:我们表征了三维结构,并在具有梯形横截面的对冲射流反应器中量化了湍流量,以测试实现分层混合的可行性。染料流可视化和颗粒图像测速(PIV)速度场测量是在反应器的入口部分进行的。在Re_j = 1000、1800、2600和3700的三组正交平面上进行两分量速度测量;对于所研究的雷诺数,流场的总体结构在质量上是相似的,但是平均流的精确轨迹对流入边界条件很敏感。计算出雷诺应力和各向异性不变量;在研究的所有雷诺数中,湍动能随反应堆下游距离的增加而线性减小,并且以相同的相对速率减小。各向异性不变量和雷诺应力图表明,湍流应力状态趋向于入口下游的各向同性。湍流应力图表明,雷诺应力分量在反应堆通道中分层,通过y / D_h = 4随z变均匀。

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