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藏东南泥石流沟纵剖面演化的最小功模式 被引量:14
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作者 蒋忠信 《地理科学》 CSCD 北大核心 2003年第1期25-31,共7页
西藏东南地区的泥石流可分为雨水、冰雪融水和冰湖溃决等 3种成因类型 ,其沟谷纵剖面演化均遵循最小功原理 ,即通过调整坡降使流速增大 ,表现为单位流体的全程流速平均值懕与纵剖面形态指数N正相关 :懕∝f(N) ,对雨水型泥石流沟 ,流... 西藏东南地区的泥石流可分为雨水、冰雪融水和冰湖溃决等 3种成因类型 ,其沟谷纵剖面演化均遵循最小功原理 ,即通过调整坡降使流速增大 ,表现为单位流体的全程流速平均值懕与纵剖面形态指数N正相关 :懕∝f(N) ,对雨水型泥石流沟 ,流速函数 f(N) ={ 1 3- 2 [(N +1) (N +2 ) (N +3) ]} 1 2 ;对融水型泥石流沟 ,f(N) ={ 2 3- 2 [(N +1) (N +3) ]} 1 2 ;对溃决型泥石流沟 ,f(N) =[N (N +1) ]2 3。在泥石流沟谷演化进程中 ,与懕值由小变大相应 ,N值由小变大 ,沟谷纵剖面从上凸抛物线形变为下凹抛物线形 ,泥石流沟谷地貌演化阶段按泥石流孕育阶段、发展阶段、旺盛阶段、衰减阶段的顺序演替。以藏东南典型泥石流沟作为实例 ,检验了上述沟谷地貌演化的模式与规律。 展开更多
关键词 雨水泥石流 融水泥石流 溃决泥石流 最小功原理 沟谷纵剖面 西藏 成因 类型 分布 成因
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Effect of rainfall on a colluvial landslide in a debris flow valley
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作者 QIAO Liang MENG Xing-min +4 位作者 CHEN Guan ZHANG Yi GUO Peng ZENG Run-qiang LI Ya-jun 《Journal of Mountain Science》 SCIE CSCD 2017年第6期1113-1123,共11页
A colluvial landslide in a debris flow valley is a typical phenomena and is easily influenced by rainfall. The direct destructiveness of this kind of landslide is small, however, if failure occurs the resulting blocki... A colluvial landslide in a debris flow valley is a typical phenomena and is easily influenced by rainfall. The direct destructiveness of this kind of landslide is small, however, if failure occurs the resulting blocking of the channel may lead to a series of magnified secondary hazards. For this reason it is important to investigate the potential response of this type of landslide to rainfall. In the present paper, the Goulingping landslide, one of the colluvial landslides in the Goulingping valley in the middle of the Bailong River catchment in Gansu Province, China, was chosen for the study. Electrical Resistivity Tomography(ERT), Terrestrial Laser Scanning(TLS), together with traditional monitoring methods, were used to monitor changes in water content and the deformation of the landslide caused by rainfall. ERT was used to detect changes in soil water content induced by rainfall. The most significant findings were as follows:(1) the water content in the centralupper part(0~41 m) of the landslide was greaterthan in the central-front part(41~84 m) and(2) there was a relatively high resistivity zone at depth within the sliding zone. The deformation characteristics at the surface of the landslide were monitored by TLS and the results revealed that rainstorms caused three types of deformation and failure:(1) gully erosion at the slope surface;(2) shallow sliding failure;(3) and slope foot erosion. Subsequent monitoring of continuous changes in pore-water pressure, soil pressure and displacement(using traditional methods) indicated that long duration light rainfall(average 2.22 mm/d) caused the entire landslide to enter a state of creeping deformation at the beginning of the rainy season. Shear-induced dilation occurred for the fast sliding(30.09 mm/d) during the critical failure sub-phase(EF). Pore-water pressure in the sliding zone was affected by rainfall. In addition, the sliding L1 parts of the landslide exerted a discontinuous pressure on the L2 part. Through the monitoring and analysis, we conclude that this kind of landslide may have large deformation at the beginning and the late of the rainy season. 展开更多
关键词 Colluvial landslide Debris flow Rainfall Electrical resistivity tomography Terrestrial laser scanning Electrical resistivity tomography
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