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Experimental Study of Oscillation Behaviors in Confined Impinging Jets Reactor under Excitation

机译:在激励下屏蔽撞击机反应器中振荡行为的实验研究

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Dynamic behaviors in a three-dimensional confined impinging jets reactor (CUR) under excitation were experimentally studied by a flow visualization technique at 75≤Re≤150. The effects of inlet Reynolds numbers (Re), excitation frequencies and excitation amplitudes on the oscillation behaviors in CUR have been investigated by a Particle Image Velocimetry (PIV) and a high-speed camera. Results indicate that the excitation in the inflow of the opposed jets can induce periodic oscillation of the impingement plane along the axis, whose oscillation frequency is equal to the excitation frequency. At Re≤100, the induced axial oscillation can further cause a deflective oscillation with a frequency nearly equal to the excitation, and the scale of the vortex in the impingement plane is well regulated by the excitation frequency. At Re=150, the excitation of amplitude less than 20% has insignificant effect on the deflective oscillation existing in CUR.
机译:通过75≤R≤150的流动可视化技术实验在激励下进行三维限制撞击喷射器反应器(CUR)的动态行为。通过粒子图像速度(PIV)和高速相机研究了在CUR中的振荡行为上的入口雷诺数(RE),激发频率和激发幅度的影响。结果表明,相对射流的流入中的激发可以促使冲击平面沿轴线的周期性振荡,其振荡频率等于激励频率。在Re≤100,感应的轴向振荡可以进一步引起偏转振荡,其频率几乎等于激励,并且冲击平面中的涡流的比例通过激发频率井井量度调节。在RE = 150,振幅小于20%的激发对CUR中存在的偏转振荡具有微不足道的影响。

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