首页> 外文会议>IAHR(International Association of Hydraulic Engineering and Research) Symposium on River, Coastal and Estuarine Morphodynamics; 20051004-07; Urbana,IL(US) >Propagation and final deposition of granular flow: dam-break experiments with water and gas-fluidized grains
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Propagation and final deposition of granular flow: dam-break experiments with water and gas-fluidized grains

机译:颗粒流的传播和最终沉积:水和气体流化颗粒的溃坝实验

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Experimental results on propagation and final deposition of initially fluidized granular flows are presented and discussed. In the experiments, an initially fluidized bed of nearly spherical glass beads with sizes of about 45 to 90 μm is suddenly released into a horizontal channel where particles are finally deposited. During initial stages of granular flows, depth and front velocity behave similarly to those of an equivalent flow of a Newtonian fluid. This is proved by comparison with experiments, conducted in the same facility, in which water was released under the same conditions. A constant Froude number of about 2.58 is observed for the fluidized granular flows, which is somewhat lower than the value of about 3.2 observed for the water flows. This is explained in terms of reduced resistance in the latter case relative to the former. Fluidized granular flows generate deposits with a nearly horizontal bulge and a front wedge with a slope of about 2 to 4%. It is argued that fines-rich, dense pyroclas-tic flows may emplace as fluid gravity currents, except at late stages just before final deposition. Such fluid-like behavior, with negligible inter-particle friction, is likely to promote high flow mobility even on nearly horizontal slopes. Several characteristics of pyroclastic deposits are consistent with the present experimental results.
机译:介绍并讨论了初始流化颗粒流的传播和最终沉积的实验结果。在实验中,最初流化床将大小约为45至90μm的近似球形的玻璃珠突然释放到水平通道中,并最终沉积了颗粒。在粒状流的初始阶段,深度和前沿速度的行为类似于牛顿流体的等效流。通过与在相同条件下释放水的相同设施中进行的实验进行比较,证明了这一点。对于流化的颗粒流观察到约2.58的恒定弗洛德数,其略低于对水流观察到的约3.2的值。这是相对于前者而言,在后一种情况下减小了阻力。流化的颗粒流产生的沉积物几乎呈水平凸起,前楔形的斜率约为2%至4%。有人认为,除了在最终沉积之前的后期阶段,富含细粉的致密火山岩流可能会作为流体重力流出现。这种类似流体的行为,颗粒间的摩擦可忽略不计,即使在几乎水平的斜坡上也可能促进高流动性。火山碎屑沉积的几个特征与本实验结果一致。

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