Property:One-line model description

From CSDMS

This is a property of type Text.

Showing 50 pages using this property.
H
A mesh independent flow direction model for hydrologic models  +
O
A method to test for order in a vertical succession of strata  +
R
A model of dunes and snow-waves  +
K
A model representing infiltration, interception, and runoff using the kinematic wave approximation  +
S
A multi-dimensional Eulerian two-phase model for sediment transport (version 2.0)  +
O
A numerical method to analyse a vertical succession of strata and identify the most cyclical arrangement of constituent facies  +
S
A probabilistic sediment cascade model for sediment production, storage and transfer  +
L
A set of MATLAB functions to model how luminescence evolves in different geomorphic scenarios.  +
T
A set of Matlab functions for topographic analysis  +
M
A simple kinematic model of meandering  +
Z
A simple parallel code to demonstrate diffusion  +
E
A simple snow model  +
B
A spatially explicit model of coastal barrier evolution  +
M
A stand alone model for the morphological evolution of an idealized transect across a marsh channel-and-platform.  +
Q
A state-of-the-art finite-element computer simulation program for coastal ocean circulation modeling  +
T
A suite of Digital Elevation Model (DEM) tools for the extraction and analysis of hydrologic information from topography as represented by a DEM. TauDEM 5 is a new version implemented to take advantage of parallel processing  +
F
A turbulence-resolving numerical model for fine sediment transport in bottom boundary layer  +
N
A turbulent boundary layer model for the linearized shallow water equations  +
Z
A zone-based taxon  +
A
ANUGA is a hydrodynamic modelling tool that allows users to model realistic flow problems in complex 2D geometries.  +
Add-on package to ANUGA with modules for sediment transport and vegetation drag  +
AeoLiS is a process-based model for simulating aeolian sediment transport in situations where supply-limiting factors are important, like in coastal environments.  +
D
Aeolian dune landscape model  +
C
Aggregate scale morphodynamic model of integrated coastal systems  +
A
Alaskan Frame‐based Ecosystem Code  +
H
Algorithm for directly measuring hillslope length from high resolution topographic data  +
D
Algorithm for extracting channel networks from high resolution topographic data  +
M
Alluvial morphodynamics of bedrock reaches  +
S
An easy-to-use MATLAB code to simulate long-term lithosphere and mantle deformation.  +
An iceberg drift and melt model, developed to simulate sedimentation in high-latitude glaciated fjords.  +
T
An immersed boundary, Navier–Stokes code for the simulation of gravity and turbidity currents interacting with complex topographies.  +
I
An implementation of the Implicit Drainage Area method (regular and hybrid versions) for calculating drainage area from flow directions using parallel iterative solvers.  +
R
An intermediate complexity model for simulating stream channel evolution (years to decades) at the watershed scale.  +
S
An updated Lagrangian explicit finite difference code for modeling a finitely deforming elasto-visco-plastic solid in 3D.  +
Analysis of time-variable gravity from the GRACE satellite mission using spherical harmonics and spherical Slepian functions  +
B
Barrier Island Translation model  +
Barrier-Bay-Marsh-Forest Transect Coupled Model Framework  +
Basin and landscape dynamics  +
S
Basin filling stratigraphic model  +
R
Bed-material sediment transport and storage dynamics on river networks.  +
B
Bedload transport model  +
Bergen Ocean Model  +
Biogenic mixing of marine sediments  +
BlockLab computes landscape evolution in the presence of large blocks of rock on hillslopes and in channels.  +
T
Build and destroy strath and fill terraces  +
C
COAWST: A Coupled-Ocean-Atmosphere-Wave-Sediment Transport Modeling System  +
Caesar Lisflood is a morphodynamic / Landscape evolution model that simulates erosion and deposition in river catchments and reaches over time scales from hours to 1000's of years.  +
Calculate Chi Indices  +
H
Calculate Hack parameters.  +
F
Calculate floodwater depth based on an inundation polygon (e.g. from remote sensing) and a DEM  +