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The Entrainment Rate of Non-Boussinesq Hazardous Geophysical Gas-Particle Flows: An Experimental Model With Application to Pyroclastic Density Currents

机译:非Boussinesq危险地球物理气体颗粒流量的夹带率:一种试验模型,其应用于吡焦密度电流

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The entrainment rate of pyroclastic density currents is investigated by large-scale experiments. The ground flows are initiated by the impact on the terrain of a dense gas-particle fountain issuing from a cylindrical conduit, similarly to natural volcanic events. On impact, the excess density with respect to the surrounding atmosphere was up to 11.6 kg/m(3), making the currents non-Boussinesq. A power law model of the entrainment rate is developed, which is similar to that proposed for snow avalanches by Ancey (2004, ) and is verified for the Richardson's number range between 0.25 and 5.95. Rapid changes of the entrainment are caused by (i) strong accelerations at the fountain impact on the ground; (ii) break in slope; and (iii) topographic obstacles. Such changes, together with the sedimentation rate, influence flow mobility. The use of the power law is suggested for modeling the motion of unsteady hazardous geophysical mass flows such as pyroclastic density currents and snow avalanches.
机译:火山碎屑密度电流的混入率通过大规模实验研究。与从圆柱形管道发出的致密气体粒子喷泉的地形的影响,与天然火山发生同样地引发地面流动。在撞击时,相对于周围大气的多余密度高达11.6 kg / m(3),使电流非Boussinesq。混入率的幂律模型开发,这是类似的,通过Ancey(2004年)提出了雪崩,并验证了0.25和5.95之间的理查森的数量范围。夹带的快速变化是由(i)在地面上喷泉的强烈加速度引起的; (ii)在坡度中断; (iii)地形障碍。这种变化与沉降率,影响流动性。建议使用权力法用于对诸如诸如Pyroclastic密度电流和雪崩之雪的不稳定危险地球物理质量流动的运动。

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