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Numerical modeling to investigate slopes and mass flow phenomena
作者姓名:Heinz  Konietzky  Lei  NIE  Youhong  SUN
作者单位:[1]Technical University Bergakademie Freiberg , Freiberg 09596, Germany [2]College of Construction Engineering, Jilin University, Changchun 130026, China
摘    要:An overview is given about up-to-date techniques for slope stability and deformation analysis as well as mass flow phenomena simulation.The paper concentrates on a few aspects in respect to the use of numerical modeling techniques,especially in relation to the shear strength reduction techniques,discontinuum modeling,probabilistic concepts,the combination of GIS and numerical modeling as well as sophisticated hydro-mechanical coupling with time-dependent material behavior.At present these topics are preferred topics of scientific and technical research.

关 键 词:数学模型  边坡  GIS  盖然论
文章编号:1673-9736(2006)02-0180-09

Numerical modeling to investigate slopes and mass flow phenomena
Heinz Konietzky Lei NIE Youhong SUN.Numerical modeling to investigate slopes and mass flow phenomena[J].Journal of Geoscientific Research in Northeast Asia,2006,9(2):180-188.
Authors:Heinz Konietzky  Lei NIE and Youhong SUNTechnical University Bergakademie Freiberg  Freiberg  GermanyCollege of Construction Engineering  Jilin University  Changchun  China
Institution:Heinz Konietzky1,Lei NIE2 and Youhong SUN21.Technical University Bergakademie Freiberg,Freiberg 09596,Germany2.College of Construction Engineering,Jilin University,Changchun 130026,China
Abstract:An overview is given about up-to-date techniques for slope stability and deformation analysis as well as mass flow phenomena simulation. The paper concentrates on a few aspects in respect to the use of numerical modeling techniques, especially in relation to the shear strength reduction techniques, discontinuum modeling, probabilistic concepts, the combination of GIS and numerical modeling as well as sophisticated hydro-mechanical coupling with time-dependent material behavior. At present these topics are preferred topics of scientific and technical research.
Keywords:discontinuum approaches  numerical modeling  GIS  probabilistic concepts
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