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Mobility and dynamic erosion process of granular flow:insights from numerical investigation using material point method

作     者:YU Fangwei SU Lijun LI Xinpo ZHAO Yu YU Fangwei;SU Lijun;LI Xinpo;ZHAO Yu

作者机构:Institute of Mountain Hazards and EnvironmentChinese Academy of SciencesChengdu 610299China University of Chinese Academy of SciencesBeijing 100049China China-Pakistan Joint Research Center on Earth SciencesIslamabad 45320Pakistan Center for Excellence in Tibetan Plateau Earth SciencesChinese Academy of SciencesBeijing 100101China College of Civil Engineering and ArchitectureZhejiang UniversityHangzhou 310058China MOE Key Laboratory of Soft Soil and Geoenvironmental EngineeringZhejiang UniversityHangzhou 310058China 

出 版 物:《Journal of Mountain Science》 (山地科学学报(英文))

年 卷 期:2024年第21卷第8期

页      面:2713-2738页

核心收录:

学科分类:0830[工学-环境科学与工程(可授工学、理学、农学学位)] 081401[工学-岩土工程] 08[工学] 0814[工学-土木工程] 

基  金:This work was supported by the National Natural Science Foundation of China(Grant no.U22A20603) Sichuan Science and Technology Program-China(Grant No.2023ZYD0149) CAS"Light of West China"Program-China(Grant No.Fangwei Yu).In addition,a special acknowledgement should be expressed to a famous Chinese television drama:My Chief and My Regiment that accompanied me(Dr.Fangwei Yu)through the loneliness time of completing this study 

主  题:Column collapse Granular flow Granular soil Material point method Mobility Numerical tests 

摘      要:In order to understand the dynamics of granular flow on an erodible base soil,in this paper,a series of material point method-based granular column collapse tests were conducted to investigate numerically the mobility and dynamic erosion process of granular flow subjected to the complex settings,i.e.,the aspect ratio,granular mass,friction and dilatancy resistance,gravity and presence of water.A set of power scaling laws were proposed to describe the final deposit characteristics of granular flow by the relations of the normalized run-out distance and the normalized final height of granular flow against the aspect ratio,being greatly affected by the complex geological settings,e.g.,granular mass,the friction and dilatancy resistance of granular soil,and presence of water in granular *** index of the coefficient of friction of granular soil was defined as a ratio of the target coefficient of friction over the initial coefficient of friction to quantify the scaling extent of friction change(i.e.,friction strengthening or weakening).There is a characteristic aspect ratio of granular column corresponding to the maximum mobility of granular flow with the minimum index of the apparent coefficient of *** index of the repose coefficient of friction of granular flow decreased gradually with the increase in aspect ratio because higher potential energy of granular column at a larger aspect ratio causes a larger kinetic energy of granular soil to weaken the friction of granular soil as a kind of velocity-related friction *** increase in granular mass reduces gradually the indexes of the apparent and repose coefficients of friction of granular soil to enhance the mobility of granular *** mobility of granular flow increases gradually with the decrease in friction angle or increase in dilatancy angle of granular ***,the increase of gravity accelerates granular flow but showing the same final deposit profile without any dependence on ***

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