Influence of Friction Angles on Earth Pressures in Dry Granular Flow Dynamics and Soil Mechanics

J. Kafle, Ramuna Pandey, Bekha Ratna Dangol, C. N. Tiwari, Parameswari Kattel
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Abstract

The earth pressure coefficient (K) determines the nature of (tendency of) deformation of the granular mass during flow or deposition. When flow velocity is increasing, K takes its active state Kact and the flow is divergent. When the flow velocity is decreasing, K takes its passive state Kpas and the flow is convergent. The mathematical relations presented here and their 2-D and 3-D plots highlight that the passive and active earth coefficients strongly depend on the internal angle (δ) and basal angle (ϕ) of frictions. The mathematical relation for dry granular mass flow is extended to find these coefficients in soil mechanics. Results further show that active earth pressure drops as the internal angle of friction increases, but passive earth pressure rises. The earth's pressure is at rest if the wall is in its natural position
干颗粒流动力学与土力学中摩擦角对土压力的影响
土压力系数(K)决定了颗粒体在流动或沉积过程中的变形性质(趋势)。当流速增大时,K处于活动状态Kact,流动发散。当流速减小时,K处于被动状态Kpas,流速收敛。本文给出的数学关系及其二维和三维图突出表明,被动和主动土系数强烈依赖于摩擦的内角(δ)和基角(φ)。将干颗粒质量流的数学关系推广到土力学中求得这些系数。结果表明,主动土压力随内摩擦角的增大而减小,被动土压力随内摩擦角的增大而增大。如果墙在它的自然位置,地球的压力是静止的
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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