Property:One-line model description
From CSDMS
This is a property of type Text.
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-Bay-Marsh-Forest Transect Coupled Model Framework +
S
R
Bed-material sediment transport and storage dynamics on river networks. +
B
BlockLab computes landscape evolution in the presence of large blocks of rock on hillslopes and in channels. +
T
C
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. +
H
Calculate Hack parameters. +
F
Calculate floodwater depth based on an inundation polygon (e.g. from remote sensing) and a DEM +
S
Calculate steepness and concavity indices from gridded topography +
O
Calculate wave-generated bottom orbital velocities from surface wave parameters +
P
Calculates potential evapotranspiration +
C
A
Cellula automata model for salt marsh evolution with variable soil resistance under wind waves attack +
G
C
U
C
H
Climate driven hydrological transport model +
C
Coarse-grained delta dynamics and stratigraphy +
A
B
Coastal barrier island transgression model +
S
C
D
Code for estimating long-term exhumation histories and spatial patterns of short-term erosion from the detrital thermochronometric data. +
C
Community Water Model (CWatM) is a hydrological model simulating the water cycle daily at global and local levels, historically and into the future +
D
Component for calculating drainage density in Landlab given a channel network +
O
Component simulating overland flow using a 2-D numerical approximation of the shallow-water equations following the de Almeida et al., 2012 algorithm for storage-cell inundation modeling. +
F
Component to accumulate flow and calculate drainage area. +
L
Component to calculate drainage area and accumulate flow, while permitting dynamic loss or gain of flow downstream. +
S
Computation of spherical harmonics, Slepian functions, and transforms +
Computation of vectorial spherical harmonics, vectorial Slepian functions, and transforms +
G
R
S
Compute fluvial erosion using stream power theory with a numerically smoothed threshold +
F
Compute fluvial erosion using stream power theory (“fastscape” algorithm) +
S
Compute fluvial erosion using using “tools and cover” theory +
Compute the decay of soil moisture saturation at storm-interstorm time period +
B
Computes evolution of a bedrock river longitudinal profile in the presence of large, hillslope-derived blocks. +
Z
Controls zones and populates them with taxa. +
C
G
M
W
C
F
Create a 2D grid with randomly generated fractures. +
L
C
Cross-Shore Sediment Flux Equations +
CryoGrid 3 is a simple land-surface scheme dedicated to modeling of ground temperatures in permafrost environments. +
D
DHSVM is a distributed hydrologic model that explicitly represents the effects of topography and vegetation on water fluxes through the landscape. +
C
W
F
D
Delta-building model DeltaRCM expanded to include vegetation +
G
D
T
Diffusive Wave process component for flow routing in a D8-based, spatial hydrologic model +
D
G
T
Diversions component for a D8-based, spatial hydrologic model. +
D
DynEarthSol3D is a finite element solver that models the momentum balance and the heat transfer of elasto-visco-plastic material in the Lagrangian form. +
T
Dynamic Wave process component for flow routing in a D8-based, spatial hydrologic model +
L
G
Dynamic thermo-mechanical ice sheet model +
A
E-book: A module that calculates the evolution of a gravel bed river under an imposed cycled hydrograph. +
E-book: Calculator for aggradation and degradation of a river reach using a backwater formulation. +
R
E-book: Calculator for disequilibrium aggradation of a sand-bed river in response to rising base level. +
D
E-book: Calculator for evolution of long profile of a river ending in a 1D migrating delta, using the normal flow approximation. +
G
E-book: Calculator for evolution of long profile of river with a migrating gravel-sand transition and subject to subsidence or base level rise. +
D
E-book: Calculator for evolution of long profile of a river ending in a 1D migrating delta, using a backwater formulation. +
G
E-book: Calculator for statistical characteristics of grain size distributions. +
A
E-book: Illustration of calculation of aggradation and degradation of a river reach using the normal flow approximation; with an extension for calculation of the response to a sudden fault along the reach. +
D
E-book: Illustration of calculation of depth-discharge relation, bed load transport, suspended load transport and total bed material load for a large, low-slope sand-bed river. +
W
E-book: Implementation of the Wright-Parker (2004) formulation for hydraulic resistance combined with the Ashida-Michiue (1972) bedload formulation. +
S
E-book: Module for calculating the effect of density stratification on the vertical profiles of velocity and suspended sediment. +
F
E-book: Particle fall velocity calculator +
R
E-book: Program for calculating the Rouse-Vanoni profile of suspended sediment. +
A
E-book: Program to calculate the evolution of upward-concave bed profiles in rivers carrying uniform sediment in subsiding basins. +
E-book: calculator for aggradation and degradation of sediment mixtures in gravel-bed streams +
D
E-book: calculator for aggradation and degradation of sediment mixtures in gravel-bed streams subject to cyclic hydrographs. +
B
E-book: calculator for aggradation and degradation with a migrating bedrock-alluvial transition at the upstream end. +
R
E-book: calculator for approach to equilibrium in recirculating and feed flumes +
S
E-book: calculator for approach to equilibrium in recirculating and feed flumes +
B
E-book: calculator for backwater curves in sand-bed streams, including the effects of both skin friction and form drag due to skin friction +
S
E-book: calculator for evolution of profiles of fans in subsiding basins +