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Noncoaxial Progressive Deformation of Pegmatoied dykes, Sanandaj Sirjan Zone, Iran
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作者 Leili Izadi KIAN 《Acta Geologica Sinica(English Edition)》 SCIE CAS CSCD 2016年第S1期161-,共1页
The Sanandaj-Sirjan metamorphic zone experienced a polyphase deformation history,which is related to the Zagros orogenic belt.At the northwestern part of Sanandaj-Sirjan zone many pegmatoied dykes intruded in
关键词 Iran Noncoaxial progressive deformation of Pegmatoied dykes Sanandaj Sirjan Zone
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Large-Scale Test Model of the Progressive Deformation and Failure of Cracked Soil Slopes 被引量:3
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作者 Zhi Zhou Jiaming Zhang +3 位作者 Fulong Ning Yi Luo Lily Chong Kuangbiao Sun 《Journal of Earth Science》 SCIE CAS CSCD 2020年第6期1097-1108,共12页
A large-scale test bed(LWH=6 m×3 m×2.8 m)instrumented with various sensors is used to examine the effects of rainfall infiltration and evaporation on the deformation and failure of cracked soil slopes,taking... A large-scale test bed(LWH=6 m×3 m×2.8 m)instrumented with various sensors is used to examine the effects of rainfall infiltration and evaporation on the deformation and failure of cracked soil slopes,taking the Anhui area along the Yangtze River as a field example.The results indicate that(1)during rainfall,the soil around the shallow shrinkage fissures attains transient saturation,and the attendant decrease of matric suction is the primary cause of the shallow slope failure;(2)slope deformation continues during post-rainfall evaporation;(3)if a period of evaporation is followed by heavy rainfall,soil creep is concentrated near the deepest cracks,and two zones of steep gradients in pore pressure form at the crest and toe of the slope.Finally,a saturated zone forms near each crack base and gradually enlarges,eventually forming a continuous saturated layer that induces the slope instability or failure. 展开更多
关键词 slope failure geological engineering cracked soil slope large-scale test progressive deformation
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Analysis on velocity distribution and displacement along the profile of a slope using both empirical and analytical methods
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作者 CHEN Tie-lin ZHOU Cheng +2 位作者 LIU En-long DAI Feng LIU Jiao 《Journal of Mountain Science》 SCIE CSCD 2017年第12期2589-2602,共14页
Assessing the slope deformation is significant for landslide prediction. Many researchers have studied the slope displacement based on field data from the inclinometer in combination with complicated numerical analysi... Assessing the slope deformation is significant for landslide prediction. Many researchers have studied the slope displacement based on field data from the inclinometer in combination with complicated numerical analysis. They found that there was a shear zone above the slip surface, and they usually focused on the distribution of velocity and displacement within the shear zone. In this paper,two simple methods are proposed to analyze the distribution of displacement and velocity along the whole profile of a slope from the slip surface to the slope surface during slow movement. In the empirical method, the slope soil above the shear zone is assumed as a rigid body. Dual or triple piecewise fitting functions are empirically proposed for the distribution of velocity along the profile of a slope. In the analytical method, the slope soil is not assumed as a rigid body but as a deformable material. Continuous functions of the velocity and displacement along the profile of a slope are directly obtained by solving the Newton's equation of motion associated with the Bingham model. Using the two proposed methods respectively, the displacement and velocity along the slope profiles of three slopes are determined. A reasonable agreement between the measured data and the calculated results of the two proposed methods has been reached. In comparison with the empirical method, the analytical method would be more beneficial for slope deformation analysis in slope engineering, because the parameters are material constants in the analytical solution independent of time t, and the nonlinear viscosity of the soil can be considered. 展开更多
关键词 Slope deformation progressive deformation Fitting function Analytical solution Bingham model Nonlinear viscosity
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Tectonic Evolution of the Himalayan Collision Belt
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作者 Cui Junwen Institute of Geology, Chinese Academy of Geological Sciences, Beijing 《Acta Geologica Sinica(English Edition)》 SCIE CAS CSCD 1997年第2期133-143,共11页
This paper discusses the tectonic divisions of the Himalayan collision belt anddeals with the tectonic evolution of the collision belt in the context of crustal accretion in thefront of the collision belt, deep diapir... This paper discusses the tectonic divisions of the Himalayan collision belt anddeals with the tectonic evolution of the collision belt in the context of crustal accretion in thefront of the collision belt, deep diapirism and thermal-uplift extension and deep material flow-ing of the lithosphere-backflowing. Finally it proposes a model of the tectonic evolution-progressive intracontinental deformation model-of the Himalayan belt. 展开更多
关键词 Himalayan collision belt thermal-uplift spreading thermal-uplift extension backflowing progressive intracontinental deformation at model
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