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Initiation of Movement of Quartz Particles

机译:石英粒子运动的开始

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A theoretical description of the initiation of movement of sediments consisting of uniform-size, quartz particles is developed. These sediments behave in a noncohesive manner for coarse-grained particles but show cohesive behavior for fine-grained particles, i.e., as the particle size decreases, the critical shear stress increases and also becomes strongly dependent on the bulk density. The analysis includes gravitational, lift, drag, and cohesive forces as well as changes in bulk density and is uniformly valid for the range of particle sizes investigated, from fine-grained, cohesive particles to coarse-grained, noncohesive particles. Excellent agreement between theory and experiments is obtained. The analysis is also extended to quartz particles with small amounts of an added clay, bentonite, which makes the mixture more cohesive. This increase in cohesivity is greatest for intermediate size particles. An additional binding force due to the bentonite must then be included in the analysis.
机译:提出了由均匀大小的石英颗粒组成的沉积物运动开始的理论描述。这些沉积物对于粗颗粒而言表现为非粘结性,但对于细颗粒而言表现出粘结性,即,随着粒径的减小,临界剪切应力增加,并且也强烈依赖于堆积密度。该分析包括重力,升力,阻力和内聚力,以及堆积密度的变化,并且对于所研究的粒径范围(从细颗粒,内聚颗粒到粗颗粒,非内聚颗粒)均有效。理论和实验之间获得了极好的一致性。分析还扩展到添加了少量粘土,膨润土的石英颗粒,这使混合物更具粘性。对于中等尺寸的颗粒,这种内聚力的增加最大。然后必须在分析中包括由膨润土引起的附加结合力。

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