Property:One-line model description

From CSDMS

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G
Evolves gravel-bed river long profiles  +
R
Excel file for creating XYZ coordinates of artificial river valley topography  +
E
Exponential soil production function in the style of Ahnert (1976)  +
G
Extended GST model: combination of an analytical GST migration model combined with closure relations based on the assumption of quasi-equilibrium conditions  +
N
Extract data from NEXRAD Doppler Radar NetCDFs  +
S
Fan-delta and alluvial fan landscape evolution model  +
Fill sinks in a landscape to the brim, following the Barnes et al. (2014) algorithms.  +
D
Find depressions on a topographic surface.  +
F
Finite Volume two-dimensional shock-capturing model.  +
S
Finite element model for fluid flow, clastic, carbonate and evaporate sedimentation  +
Flexure model  +
F
Floodplain and Channel Evaluation Tool (FACET)  +
Flow direction on a raster grid by the D infinity method.  +
B
Flow-partitioning and avulsion in a river delta bifurcation  +
E
Fluvial Landscape Evolution Model  +
T
Fluvial gravel and sand transport model  +
E
Fluvial landscape evolution model  +
Y
Fluvial sediment transport model  +
A
Fluvial-dominated delta sedimentation model  +
F
Frost model predicts the likelihood of occurrence of permafrost in the land surface based on the monthly temperature distribution  +
Fully Nonlinear Boussinesq Wave Model  +
Fuzzy logic model to model microbial reef development  +
W
GCM for deep paleoclimate studies  +
G
GENEralized model for SImulating Shoreline change  +
GIPL(Geophysical Institute Permafrost Laboratory) is an implicit finite difference one-dimensional heat flow numerical model.  +
GISS Atmosphere-Ocean Model  +
GISS GCM ModelE  +
W
GUI implementation of the Werner (1995) cellular automata aeolian dune model  +
T
Gausian distribution calculator of instantaneous shear stresses on the fluvial bed  +
P
Generate random sequence of precipitation events  +
S
Generate random sequence of spatially-resolved precipitation events  +
A
Generates planforms for single-thread channel using a second-order autoregressive model  +
L
Geometric model to explore autogenic increase of vertical incision rate in entrenching alluvial rivers.  +
Q
Geometric model to study the response of fluvial-deltas to base-level changes.  +
D
Geometry classification of delta islands  +
G
Geomorphic Model of Barrier, Estuarine, and Shoreface Translations + Marsh + Seagrass  +
Geomorphic Model of Barrier, Estuarine, and Shoreface Translations  +
C
Geomorphic and carbon evolution of a bay-marsh-forest coastal transect  +
Geomorphic and carbon evolution of a bay-marsh-forest coastal transect with restorations  +
G
Geomorphic model of barrier, estaurine, and shoreface translations plus dynamic marsh plus waves  +
Glacier / ice sheet evolution model  +
Global Scalable Paleo Landscape Evolution  +
Global future agricultural land use dynamics model  +
W
Global sediment flux and water discharge model.  +
S
Global stream profiler web-app  +
G
Ground-water and Surface-water FLOW model  +
H
HBV model is a rainfall-runoff model  +
Hallberg Isopycnal Model  +
HydroCNHS, a Python Package of Hydrological Model for Coupled Natural–Human Systems  +
Hydrological Model Assessment and Development  +
Hydrological model for simulation of water and water quality over time  +
Hydrologically Enhanced Basin Evolution Model  +
P
Hypopycnal sediment plume  +
W
Ice Sheet Modelling in Julia  +
I
Ice Sheet System Model (ISSM)  +
S
Ice sheet model  +
I
Icepack is a Python package for simulating the flow of glaciers and ice sheets, as well as for solving glaciological data assimilation problems.  +
T
Infiltration process component (Green-Ampt method) for a D8-based, spatial hydrologic model  +
Infiltration process component (Richards 1D method) for a D8-based, spatial hydrologic model  +
Infiltration process component (Smith-Parlange method) for a D8-based, spatial hydrologic model  +
Kinematic Wave process component for flow routing in a D8-based, spatial hydrologic model.  +
L
LEMming landscape evolution model: a 2-D, regular-grid, rules-based, hybrid finite-difference / cellular automaton model that is designed to explore the effect of multiple rock types on landscape evolution.  +
LISFLOOD - a distributed hydrological rainfall-runoff model  +
LaMEM - Lithosphere and Mantle Evolution Model  +
M
Landform evolution model  +
S
Landlab component for 2-D calculation of fluvial sediment transport and bedrock erosion  +
E
Landlab component for fluvial erosion/deposition.  +
S
Landlab component that calculates soil infiltration based on the Green-Ampt solution.  +
L
Landlab component that models soil creep as a linear diffusion process  +
V
Landlab component that simulates inter-species plant competition using a 2D cellular automata model.  +
L
Landlab component that simulates landslide probability of failure as well as mean relative wetness and probability of saturation.  +
C
Landscape Evolution Model  +
G
Landscape evolution model  +
W
Landscape evolution model  +
R
Landscape evolution resulting from feedback between flow, vegetation, and sediment  +
C
Landscape simulation model  +
M
Landscape-scale soil evolution model  +
C
Large scale SPM based on irregular spatial discretization  +
L
Laterally erode neighbor node through fluvial erosion.  +
S
Linear inverse problems using spherical harmonics and spherical Slepian functions  +
H
Linear-reservoir hydrological model with snowpack and evapotranspiration  +
L
Lithospheric flexure solution  +
Lithospheric flexure solution for a broken plate  +
Logrithmic velocity distribution solution  +
C
Long term 2D morphodynamics of coastal areas  +
Los Alamos sea ice model  +
M
MARSSIM terrestrial and planetary Landform Evolution Model  +
MODFLOW 6 is an object-oriented program and framework developed to provide a platform for supporting multiple models and multiple types of models within the same simulation  +
MODFLOW is a three-dimensional finite-difference ground-water model  +
MOM6 is the latest generation of the Modular Ocean Model which is a numerical model code for simulating the ocean general circulation.  +
Macro-roughness model framework for treating erosion, bed cover, and sediment transport in bedrock river channels.  +
R
Matlab toolbox for mapping and measuring river planform changes  +
K
Matlab-based scripts to extract topometrics for catchments and identify river knickpoints.  +
M
Matlab® code for paleo-hydrological flood flow reconstruction in a fluvial channel  +
T
Meteorology process component for a D8-based, spatial hydrologic model  +
M
Miami Isopycnic Coordinate Ocean Model  +
MizuRoute is a stand-alone runoff routing tool  +
Model for Scale Adaptive River Transport with Water Management in Python  +
T
Model non-linear soil creep after Ganti et al. (2012)  +
V
Model plant dynamics using multiple representative plant species  +