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Particle mechanics modeling of creep behavior of rockfill materials under dry and wet conditions

机译:干湿条件下堆石料蠕变行为的粒子力学建模

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Rockfill is an important construction material for infrastructure engineering, such as dams, railways and airport foundations, which display a long-term post-construction settlement. However, the main mechanisms for rockfill creep and weathering influence still remain poorly understood. Particle mechanics method is used to understand the rockfill creep process under dry and wet conditions. Different bond-aging models and wetting models that represent different degradation and weakening mechanisms are compared, in order to clarify the principle and secondary mechanisms for rockfill creep and weathering influence. The results show that rockfill aggregate breakage in terms of angularity abrasion is the main source for rockfill creep under dry state. Wetting can induce additional strain mainly due to the reduction of contact friction coefficient, i.e. lubrication, and the bond strength reduction just plays a secondary role in producing additional strain. The earlier the wetting occurs during rockfill creep, the more rapidly the rockfill becomes stable. The wetting drying cycles can induce strain evolution in a 'stepped' way, which is in agreement with experimental observation. The practical implications from the modeling and the outstanding issues in this study are also discussed. (C) 2015 Elsevier Ltd. All rights reserved.
机译:堆石料是基础设施工程的重要建筑材料,例如水坝,铁路和机场地基,它们在施工后会长期沉降。但是,对堆石料蠕变和风化影响的主要机制仍知之甚少。使用粒子力学方法了解干湿条件下堆石料的蠕变过程。为了阐明堆石料蠕变和风化影响的原理和次要机理,比较了代表不同降解和弱化机理的不同粘结-老化模型和润湿模型。结果表明,堆石料在角度磨损方面的破碎是干燥状态下堆石蠕变的主要来源。润湿可引起额外的应变,这主要是由于接触摩擦系数的降低,即润滑,而粘结强度的降低在产生额外的应变中仅起次要作用。堆石料蠕变过程中发生的润湿越早,堆石料变得越稳定。湿润的干燥循环可以“逐步”方式诱导应变演变,这与实验观察一致。还讨论了建模的实际含义和本研究中的突出问题。 (C)2015 Elsevier Ltd.保留所有权利。

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