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湍流条件下脉冲对颗粒运动起始的作用。

The role of impulse on the initiation of particle movement under turbulent flow conditions.

作者信息

Diplas Panayiotis, Dancey Clint L, Celik Ahmet O, Valyrakis Manousos, Greer Krista, Akar Tanju

机构信息

Baker Environmental Hydraulics Laboratory, Department of Civil and Environmental Engineering, Virginia Tech, Blacksburg, VA 24061, USA.

出版信息

Science. 2008 Oct 31;322(5902):717-20. doi: 10.1126/science.1158954.

Abstract

Fundamental to our understanding of erosional and transport phenomena in earth-surface dynamics and engineering is knowledge of the conditions under which sediment motion will begin when subjected to turbulent flow. The onset criterion currently in use emphasizes the time-averaged boundary shear stress and therefore is incapable of accounting for the fluctuating forces encountered in turbulent flows. We have validated through laboratory experiments and analytical formulation of the problem a criterion based upon the impulse imparted to a sediment grain. We demonstrate that in addition to the magnitude of the instantaneous turbulent forces applied on a sediment grain, the duration of these turbulent forces is also important in determining the sediment grain's threshold of motion, and that their product, or impulse, is better suited for specifying such conditions.

摘要

对于我们理解地球表面动力学和工程学中的侵蚀与输运现象而言,关键在于了解沉积物在紊流作用下开始运动的条件。目前使用的起始准则强调时间平均边界剪应力,因此无法考虑紊流中遇到的波动作用力。我们通过实验室实验和对该问题的解析公式验证了一个基于施加在沉积物颗粒上的冲量的准则。我们证明,除了作用在沉积物颗粒上的瞬时紊流力的大小外,这些紊流力的持续时间在确定沉积物颗粒的运动阈值时也很重要,并且它们的乘积,即冲量,更适合用于指定此类条件。

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