Jiang Yimin, Liu Mario
Central South University, 410083, Changsha, China.
Eur Phys J E Soft Matter. 2015 Mar;38(3):15. doi: 10.1140/epje/i2015-15015-6. Epub 2015 Mar 9.
Granular solid hydrodynamics (GSH) is a continuum-mechanical theory for granular media, whose wide range of applicability is shown in this paper. Simple, frequently analytic solutions are related to classic observations at different shear rates, including: i) static stress distribution, clogging; ii) elasto-plastic motion: loading and unloading, approach to the critical state, angle of stability and repose; iii) rapid dense flow: the μ-rheology, Bagnold scaling and the stress minimum; iv) elastic waves, compaction, wide and narrow shear band. Less conventional experiments have also been considered: shear jamming, creep flow, visco-elastic behavior and non-local fluidization. With all these phenomena ordered, related, explained and accounted for, though frequently qualitatively, we believe that GSH may be taken as a unifying framework, providing the appropriate macroscopic vocabulary and mindset that help one coming to terms with the breadth of granular physics.
颗粒固体流体动力学(GSH)是一种针对颗粒介质的连续介质力学理论,本文展示了其广泛的适用性。简单且常为解析性的解与不同剪切速率下的经典观测结果相关,包括:i)静态应力分布、堵塞;ii)弹塑性运动:加载与卸载、接近临界状态、稳定角和休止角;iii)快速密集流:μ流变学、巴格诺尔德标度和应力最小值;iv)弹性波、压实、宽剪切带和窄剪切带。还考虑了不太常规的实验:剪切堵塞、蠕变流、粘弹性行为和非局部流化。尽管常常是定性地,但随着所有这些现象得到整理、关联、解释和说明,我们认为GSH可被视为一个统一框架,提供合适的宏观词汇和思维模式,有助于人们理解颗粒物理学的广度。