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Experimental studies on transient features of natural convection in particles suspensions

机译:颗粒悬浮液自然对流瞬态特征的实验研究

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Particle Tracking Velocimetry (PTV), in conjunction with the refractive index matching technique and laser induced fluorescent (LIF) tracer particles, was used to overcome the visualization problem in a particle suspension. A square lest section was rilled with the particle suspension and impulsively heated from the bottom wall while the two facing vortical walls were kept at a constant temperature. The two-dimensional velocity fields, particle distributions in a plane and the wall temperature fields were visualized simultaneously using three cameras. The results showed peculiar flow patterns such as the formation and vanishing of two-layer convection cells which were distinct from those in a clear, particle-free fluid. Sedimentation driven convection is thought to be the fundamental mechanism for the formation of these two layer convection cells. The overlying particle-free-layer convection was started by the release of the heated clear fluid at the interface between the particle-free layer and the suspension.
机译:粒子跟踪测速(PTV)结合折射率匹配技术和激光诱导荧光(LIF)示踪剂粒子,用于克服粒子悬浮液中的可视化问题。用颗粒悬浮液钻出方形的切面,并从底壁冲动加热,同时将两个相对的涡旋壁保持恒定温度。二维速度场,平面中的颗粒分布和壁温度场使用三个摄像头同时可视化。结果显示出独特的流动模式,例如两层对流池的形成和消失,这与在透明,无颗粒的流体中不同。沉积驱动的对流被认为是形成这两层对流单元的基本机制。通过在无颗粒层和悬浮液之间的界面处释放加热的澄清流体,开始覆盖无颗粒层的对流。

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