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考虑颗粒破碎影响的粗粒土本构模型 被引量:25

Constitutive model for coarse granular aggregates incorporating particle breakage
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摘要 颗粒破碎直接改变了粗粒土本身结构,对粗粒土的剪胀、内摩擦角、峰值强度、渗透系数都会产生影响。为了能够准确地描述粗粒土的应力-应变关系,特别是高应力条件下出现显著颗粒破碎时的应力-应变关系,亟待建立考虑颗粒破碎的粗粒土本构模型。根据三轴试验数据,建立考虑颗粒破碎耗能的应力-应变关系,采用相关联流动法则导出考虑颗粒破碎的粗粒土本构模型。所建立的本构模型考虑了颗粒破碎对粗粒土剪胀、内摩擦角的影响。通过变异粒子群优化算法确定模型参数,拟合试验曲线。模型计算结果与试验曲线拟合较好,能够很好地描述粗粒土在不同围压下的体积剪胀、剪缩和应力硬化、软化现象。 Particle breakage of coarse granular aggregates modifies its structure directly, influencing its dilatancy, friction angle, strength and permeability. In order to accurately describe stress-strain relationship of coarse granular aggregates, especially in high pressure with significant particle breakage, it is indispensable to develop coarse granular aggregates constitutive model incorporating particle breakage. According to triaxial test results, the stress-strain relationship incorporating particle breakage is developed, on which a constitutive model is generated incorporating particle breakage with application of associated flow rules. The constitutive model incorporates the influences exerting on dilatancy and friction angle by particle breakage. The parameters of model are determined by mutation particle swarm optimization algorithm, on which the stress-strain curves of triaxial test are simulated. The simulation of model presentation and test results accurately describe dilation and contraction, strain hardening and post-peak strain softening features of the coarse aggregates at various confining pressures.
出处 《岩土力学》 EI CAS CSCD 北大核心 2009年第11期3261-3266,3272,共7页 Rock and Soil Mechanics
基金 国家自然科学基金项目(No.50479057)
关键词 颗粒破碎 破碎耗能 应力软化 变异粒子群优化算法 摩擦系数 临界状态线 剪胀 particle breakage breakage energy stress-softening mutation particle swarm optimization algorithm friction coefficient critical state line dilatancy
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参考文献17

  • 1[日]日本土质学会.粗粒料的现场压实[M].郭熙灵,文丹译.北京:中国水利水电出版社,1999.
  • 2LADE P V, YAMAMUROJ A, BOPP P A. Significance of particle crushing in granular materials[J]. Journal of Geotechnical Engineering, 1996. 122(4): 309-- 316.
  • 3NAKATA Y, HYDE A F L, HYODO M, et al. A probabilistic approach to sand particle crushing in the triaxial test[J]. Geotechnique, 1999, 49(5): 567--583.
  • 4MCDOWELL G R, BOLTON M D. On the micromechanics of crushable aggregates[J]. Geotechnique, 1998, 48(5): 667--679.
  • 5MCDOWELL G R, NAKATA Y, HYODO M. On the plastic hardening of sand[J]. Geotechnique, 2002, 52(5): 349--358.
  • 6UENG T S, CHEN T J. Energy aspects of particle breakage in drained shear of sands[J]. Geotechnique,2000, 50(1): 65--72.
  • 7SALIM W, constitutive 1NDRARATNA B. A new model for coarse granular incorporating particle breakage[J] elastoplastic aggregates Canadian Geotechnical Journal, 2004, 41 (4): 657-- 671.
  • 8刘汉龙,秦红玉,高玉峰,周云东.堆石粗粒料颗粒破碎试验研究[J].岩土力学,2005,26(4):562-566. 被引量:145
  • 9程展林,丁红顺,吴良平.粗粒土试验研究[J].岩土工程学报,2007,29(8):1151-1158. 被引量:110
  • 10迟世春,贾宇峰.土颗粒破碎耗能对罗维剪胀模型的修正[J].岩土工程学报,2005,27(11):1266-1269. 被引量:35

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