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首页> 外文期刊>Earth and Planetary Science Letters: A Letter Journal Devoted to the Development in Time of the Earth and Planetary System >Inviscid behaviour of fines-rich pyroclastic flows inferred from experiments on gas-particle mixtures
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Inviscid behaviour of fines-rich pyroclastic flows inferred from experiments on gas-particle mixtures

机译:从对气体-颗粒混合物的实验中推断出的富含细粉的火山碎屑流的无粘性行为

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Experiments were carried out on granular flows generated by instantaneous release of gas-fluidised, bidisperse mixtures and propagating into a horizontal channel. The mixture consists of fine (<100 mu m) and coarse (>100 mu m) particles of same density, with corresponding grain size ratios of similar to 2 to 9. Initial fluidisation of the mixture destroys the interparticle frictional contacts, and the flow behaviour then depends on the initial bed packing and on the timescale required to re-establish strong ftictional contacts. At a fines mass fraction (alpha) below that of optimal packing (similar to 40%), the initial mixtures consist of a continuous network of coarse particles with fines in interstitial voids. Strong frictional contacts between the coarse particles are probably rapidly re-established and the flows steadily decelerate. Some internal friction reduction appears to occur as a and the grain size ratio increases, possibly due to particle rolling and the lower roughness of internal shear surfaces. Segregation only occurs at large grain size ratio due to dynamical sieving with fines concentrated at the flow base. In contrast, at alpha above that for optimal packing, the initial mixtures consist of coarse particles embedded in a matrix of fines. Flow velocities and run-outs are similar to that of the monodisperse fine end-member, thus showing that the coarse particles are transported passively within the matrix whatever their amount and grain size are. These flows propagate at constant height and velocity as inviscid fluid gravity currents, thus suggesting negligible interparticle friction. We have determined a Froude number of 2.61 +/- 0.08 consistent with the dam-break model for fluid flows, and with no significant variation as a function of alpha, the grain size ratio, and the initial bed expansion. Very little segregation occurs, which suggests low intensity particle interactions during flow propagation and that active fluidisation is not taking place. Strong frictional contacts are only re-established in the final stages of emplacement and stop the flow motion. We infer that fines-rich (i.e. matrix-supported) pyroelastic flows propagate as inviscid fluid gravity currents for most of their emplacement, and this is consistent with some field data. (C) 2005 Elsevier B.V. All rights reserved.
机译:对通过瞬时释放气体流化的双分散混合物并传播至水平通道而产生的颗粒流进行了实验。混合物由密度相同的细颗粒(<100微米)和粗颗粒(> 100微米)组成,相应的粒径比接近2到9。混合物的初始流化破坏了颗粒间的摩擦接触,并破坏了流体的流动。然后,行为取决于床的初始填充和重新建立牢固的虚拟接触所需的时间范围。当细粉质量分数(α)低于最佳填充的细粉质量分数(约40%)时,初始混合物由连续的网状粗颗粒组成,并在间隙空隙中形成细粉。粗颗粒之间的强摩擦接触可能会很快重新建立,并且流量会稳定减速。当a和晶粒尺寸比增加时,似乎会发生一些内部摩擦降低,这可能是由于颗粒滚动和内部剪切表面的粗糙度较低所致。由于动态筛分且细粉集中在流基处,因此仅在大粒径比下才会发生偏析。相反,在高于最佳堆积的α时,初始混合物由嵌入细粉基质中的粗颗粒组成。流速和跳动与单分散细端部件的流速和跳动相似,因此表明无论颗粒的数量和大小如何,粗颗粒均在基质内被动运输。这些流动作为不可见的流体重力流以恒定的高度和速度传播,因此表明颗粒间的摩擦可忽略不计。我们确定的弗洛德数为2.61 +/- 0.08,与流体流动的溃坝模型一致,并且没有明显的变化作为α,晶粒尺寸比和初始床层膨胀的函数。很少发生偏析,这表明在流动传播期间低强度的颗粒相互作用,并且未发生主动流化。只有在安装的最后阶段才能重新建立强摩擦接触,并停止流动运动。我们推断出细粉丰富的(即基质支撑的)热弹性流在其大部分位置都以不粘流体重力流的形式传播,这与某些现场数据是一致的。 (C)2005 Elsevier B.V.保留所有权利。

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