Coarse-grained debris flow dynamics on erodible beds

被引:104
作者
Lanzoni, Stefano [1 ]
Gregoretti, Carlo [2 ]
Stancanelli, Laura Maria [3 ]
机构
[1] Univ Padua, Dept Civil Environm & Architectural Engn, Padua, Italy
[2] Univ Padua, Dept Land Environm Agr & Forestry, Padua, Italy
[3] Univ Catania, Dept Civil Engn & Architecture, Catania, Italy
关键词
stony debris flow; erodible bed; velocity profile; coherence length; nonlocal rheology; FIELD OBSERVATIONS; FLUID PRESSURE; INITIATION; SLOPES; RUNOFF; MODEL; WATER; DOLOMITES; TORRENT; CANOPY;
D O I
10.1002/2016JF004046
中图分类号
P [天文学、地球科学];
学科分类号
07 ;
摘要
A systematic set of flume experiments is used to investigate the features of velocity profiles within the body of coarse-grained debris flows and the dependence of the transport sediment concentration on the relevant parameters (runoff discharge, bed slope, grain size, and form). The flows are generated in a 10 m long laboratory flume, initially filled with a layer consisting of loose debris. After saturation, a prescribed water discharge is suddenly supplied over the granular bed, and the runoff triggers a debris flow wave that reaches nearly steady conditions. Three types of material have been used in the tests: gravel with mean grain size of 3 and 5 mm, and 3 mm glass spheres. Measured parameters included: triggering water discharge, volumetric sediment discharge, sediment concentration, flow depth, and velocity profiles. The dynamic similarity with full-sized debris flows is discussed on the basis of the relevant dimensionless parameters. Concentration data highlight the dependence on the slope angle and the importance of the quasi-static friction angle. The effects of flow rheology on the shape of velocity profiles are analyzed with attention to the role of different stress-generating mechanisms. A remarkable collapse of the dimensionless profiles is obtained by scaling the debris flow velocity with the runoff velocity, and a power law characterization is proposed following a heuristic approach. The shape of the profiles suggests a smooth transition between the different rheological regimes (collisional and frictional) that establish in the upper and lower regions of the flow and is compatible with the presence of multiple length scales dictated by the type of contacts (instantaneous or long lasting) between grains.
引用
收藏
页码:592 / 614
页数:23
相关论文
共 79 条
[21]   Initiation conditions for debris flows generated by runoff at Chalk Cliffs, central Colorado [J].
Coe, Jeffrey A. ;
Kinner, David A. ;
Godt, Jonathan W. .
GEOMORPHOLOGY, 2008, 96 (3-4) :270-297
[22]   Coarse-grained debris-flows: Hysteresis and time-dependent rheology [J].
Contreras, SM ;
Davies, TRH .
JOURNAL OF HYDRAULIC ENGINEERING-ASCE, 2000, 126 (12) :938-941
[23]   Direct determination of rheological characteristics of debris flow [J].
Coussot, P ;
Laigle, D ;
Arattano, M ;
Deganutti, A ;
Marchi, L .
JOURNAL OF HYDRAULIC ENGINEERING-ASCE, 1998, 124 (08) :865-868
[24]   Experimental analysis on the impact force of viscous debris flow [J].
Cui, Peng ;
Zeng, Chao ;
Lei, Yu .
EARTH SURFACE PROCESSES AND LANDFORMS, 2015, 40 (12) :1644-1655
[25]   Rheophysics of dense granular materials: Discrete simulation of plane shear flows [J].
da Cruz, F ;
Emam, S ;
Prochnow, M ;
Roux, JN ;
Chevoir, F .
PHYSICAL REVIEW E, 2005, 72 (02)
[26]   Effects of debris flow composition on runout, depositional mechanisms, and deposit morphology in laboratory experiments [J].
de Haas, Tjalling ;
Braat, Lisanne ;
Leuven, Jasper R. F. W. ;
Lokhorst, Ivar R. ;
Kleinhans, Maarten G. .
JOURNAL OF GEOPHYSICAL RESEARCH-EARTH SURFACE, 2015, 120 (09) :1949-1972
[27]  
Egashira S, 1997, DEBRIS-FLOW HAZARDS MITIGATION: MECHANICS, PREDICTION & ASSESSMENT, P340
[28]   The triggering of debris flow due to channel-bed failure in some alpine headwater basins of the Dolomites: analyses of critical runoff [J].
Gregoretti, C. ;
Fontana, G. Dalla .
HYDROLOGICAL PROCESSES, 2008, 22 (13) :2248-2263
[29]   Runoff of small rocky headwater catchments: Field observations and hydrological modeling [J].
Gregoretti, C. ;
Degetto, M. ;
Bernard, M. ;
Crucil, G. ;
Pimazzoni, A. ;
De Vido, G. ;
Berti, M. ;
Simoni, A. ;
Lanzoni, S. .
WATER RESOURCES RESEARCH, 2016, 52 (10) :8138-8158
[30]   The initiation of debris flow at high slopes: experimental results [J].
Gregoretti, C .
JOURNAL OF HYDRAULIC RESEARCH, 2000, 38 (02) :83-88