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首页> 外文期刊>Earth Surface Processes and Landforms: The journal of the British Geomorphological Research Group >Thermal and force-chain effects in an experimental, sloping granular shear flow
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Thermal and force-chain effects in an experimental, sloping granular shear flow

机译:实验性倾斜颗粒剪切流中的热力和力链效应

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Force chains figure prominently in shearing motions of granular materials, inasmuch as these chains of load-bearing grains dominate resistance to motion. A simple scaling of the forces involved in the motion of a dry, gravity-driven granular shear How induced by vibrations (see, e.g., Roering et al, 2001, Roering, 2004) suggests that this shearing motion reflects a balance between the rate of production and the rate of disruption of granular force chains. The rate of production of force chains is proportional to the rate of shear. The rate of disruption is proportional to the rate of shear as force chains 'age' during rotation, whence they become unstable and self-destruct. The rate of disruption is also proportional to the frequency and intensity of elastic waves, induced by acoustic vibrations, that propagate through the granular material and weaken force chains. The analysis is empirically consistent with the exponential-like profiles of grain displacement, and the strongly nonlinear increase in grain flux with increasing surface slope, observed in experiments. Copyright (c) 2008 John Wiley & Sons, Ltd.
机译:力链在颗粒材料的剪切运动中占主导地位,因为这些承重颗粒的链支配了运动阻力。对干燥的,重力驱动的颗粒剪切运动中涉及的力的简单标度是如何由振动引起的(例如,参见Roering等人,2001; Roering,2004),这表明剪切运动反映了速率之间的平衡。的生产和颗粒力链的破坏率。力链的产生速率与剪切速率成正比。当力链在旋转过程中“老化”时,破坏速率与剪切速率成比例,从而使它们变得不稳定并自毁。破裂率还与声振动引起的弹性波的频率和强度成正比,弹性波通过颗粒材料传播并削弱力链。该分析与实验中观察到的与晶粒位移的指数状分布以及随表面坡度增加的晶粒通量的强烈非线性增加是一致的。版权所有(c)2008 John Wiley&Sons,Ltd.

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