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INIS
segregation
100%
rheology
54%
particle size
50%
shear
46%
particles
46%
sediments
39%
hydraulics
37%
topography
37%
slurries
37%
pipelines
37%
velocity
33%
leaks
31%
values
30%
dynamics
29%
scaling laws
29%
computerized simulation
27%
scaling
24%
size
24%
fluids
23%
granular materials
21%
distribution
21%
water
21%
transport
20%
fluid mechanics
18%
feedback
18%
floods
18%
belt conveyors
18%
lakes
18%
comminution
18%
retention
18%
barriers
18%
layers
18%
concentration
17%
depth
16%
grain size
16%
ore concentrates
15%
mixtures
13%
equations
13%
deposits
12%
ice
12%
elevation
10%
emergencies
10%
ruptures
10%
volume
10%
design
9%
curves
9%
refractive index
8%
snow
8%
expansion
8%
strain rate
8%
Keyphrases
Particle Segregation
56%
Hydraulics
37%
Sheared Granular Flows
37%
Shear Rate
34%
Intruder
32%
Numerical Simulation
28%
Dense Granular Flow
28%
Large Particle
23%
Scaling Laws
23%
Experimental Scaling
23%
Granular Materials
20%
Rheology
18%
Geophysical Flows
18%
Sediment Transport
18%
Fluid Mechanics
18%
Glacial Lake Outburst Flood
18%
Granular Avalanche
18%
Comminution
18%
Slurry
18%
Pipeline Integrity
18%
Two Dimensional
18%
Spill
18%
Putting
18%
Complex Topography
18%
Wide-ranging
18%
Force Distribution
18%
Memory Barriers
18%
Sediment Layer
18%
Optical Altimetry
18%
Size Ratio
15%
Water Volume
14%
Grain Size
14%
Flow Resistance
14%
Retention Structures
12%
Shear-driven
10%
Small Grains
9%
Historical Data
9%
Steep Slope
9%
Arbitrary Topography
9%
Constant Flow
9%
Depth-averaged
9%
Two-dimensional numerical Model
9%
Resistance Model
9%
Rough Surface
9%
Pipeline Rupture
9%
Mild Slope
9%
Computational Fluid Dynamics
9%
Hydraulic Transport
9%
Slurry Rheology
9%
Transport Operations
9%
Engineering
Shear Rate
37%
Rheology
31%
Computer Simulation
28%
Two Dimensional
28%
Refractive Index
21%
Refractivity
21%
Velocity Profile
18%
Pclet Number
18%
Energetics
18%
Conveyor Belt
18%
Internal Dynamic
18%
Size of Particle
18%
Scaling Law
18%
Newtonian Fluid
18%
Strain Rate
18%
Computational Fluid Dynamics
18%
R-Value
18%
Hazardous Materials Spills
18%
Polydispersity
18%
Rigid Wall
18%
Grain Size
18%
Net Force
18%
Altimetry
18%
Transients
14%
Velocity Field
12%
Flow Problem
9%
Product Quality
9%
Extreme Case
9%
Oscillatory
9%
Pyroclastics
9%
Functional Dependence
9%
Particle Concentration
9%
Driven Flow
9%
Flow Front
9%
Runout
9%
Functional Form
9%
Yield Point
9%
Hydraulics
9%
Progression
9%
Computational Cost
9%
Final Condition
9%
Constant Flow
9%
Slurry Rheology
9%
Flow Condition
9%
Flow Equation
9%
Numerical Model
9%
Digital Elevation Model
9%
Digital Camera
9%
Microparticles
9%
Dust Layer
9%