Search by property

From CSDMS

This page provides a simple browsing interface for finding entities described by a property and a named value. Other available search interfaces include the page property search, and the ask query builder.

Search by property

A list of all pages that have property "One-line model description" with value "A mesh independent flow direction model for hydrologic models". Since there have been only a few results, also nearby values are displayed.

Showing below up to 26 results starting with #1.

View (previous 50 | next 50) (20 | 50 | 100 | 250 | 500)


    

List of results

  • Model:GridMET Data Component  + (A CSDMS data component for fetching and caching gridMET meteorological data.)
  • Model:ROMS Data Component  + (A CSDMS data component used to access the Regional Ocean Modeling System (ROMS) datasets)
  • Model:SoilGrids Data Component  + (A CSDMS data component used to download the soil property datasets from the SoilGrids system.)
  • Model:ERA5 Data Component  + (A CSDMS data component used to download the ECMWF Reanalysis v5 (ERA5) datasets)
  • Model:DbSEABED Data Component  + (A CSDMS data component used to download the marine substrates datasets from the dbSEABED system.)
  • Model:NWIS Data Component  + (A CSDMS data component used to download the National Water Information System (Nwis) time series datasets.)
  • Model:NWM Data Component  + (A CSDMS data component used to download the National Water Model datasets.)
  • Model:WAVEWATCH III Data Component  + (A CSDMS data component used to fetch and cache WAVEWATCH III datasets.)
  • Model:Topography Data Component  + (A CSDMS data component used to fetch and cache NASA Shuttle Radar Topography Mission (SRTM) and JAXA Advanced Land Observing Satellite (ALOS) land elevation data using the OpenTopography REST API.)
  • Model:CAM-CARMA  + (A GCM for Titan that incorporates aerosols)
  • Model:QUAL2K  + (A Modeling Framework for Simulating River and Stream Water Quality)
  • Model:Dakotathon  + (A Python API for the Dakota iterative systems analysis toolkit.)
  • Model:PyRiverBed  + (A Python framework to generate synthetic riverbed topography of constant-width meandering rivers)
  • Model:Terrainbento  + (A Python package for multi-model analysis in long-term drainage basin evolution)
  • Model:Dorado  + (A Python package for simulating passive particle transport in shallow-water flows)
  • Model:CoAStal Community-lAnDscape Evolution (CASCADE) model  + (A coupled landscape and human-dynamics modeling framework for barrier evolution)
  • Model:SWEHR  + (A coupled model for infiltration, fluid flow, and sediment transport.)
  • Model:ACADIA  + (A finite element formulation of the non-conservative form of the vertically integrated advection/diffusion/reaction (ADR) equation)
  • Model:TwoPhaseEulerSedFoam  + (A four-way coupled two-phase Eulerian model for sediment transport)
  • Model:HydroPy  + (A global hydrological model useful for assessment of the land surface water balance.)
  • Model:BatTri  + (A graphical Matlab interface to the C language 2-D quality finite element grid generator Triangle.)
  • Model:OrderID  + (A method to test for order in a vertical succession of strata)
  • Model:Rescal-snow  + (A model of dunes and snow-waves)
  • Model:KWAVE  + (A model representing infiltration, interception, and runoff using the kinematic wave approximation)
  • Model:SedFoam-2.0  + (A multi-dimensional Eulerian two-phase model for sediment transport (version 2.0))
  • Model:OptimalCycleID  + (A numerical method to analyse a vertical succession of strata and identify the most cyclical arrangement of constituent facies)
  • Model:SedCas  + (A probabilistic sediment cascade model for sediment production, storage and transfer)
  • Model:LuSS  + (A set of MATLAB functions to model how luminescence evolves in different geomorphic scenarios.)
  • Model:TopoToolbox  + (A set of Matlab functions for topographic analysis)
  • Model:Meanderpy  + (A simple kinematic model of meandering)
  • Model:Zscape  + (A simple parallel code to demonstrate diffusion)
  • Model:ECSimpleSnow  + (A simple snow model)
  • Model:Barrier3D  + (A spatially explicit model of coastal barrier evolution)
  • Model:MCPM  + (A stand alone model for the morphological evolution of an idealized transect across a marsh channel-and-platform.)
  • Model:QUODDY  + (A state-of-the-art finite-element computer simulation program for coastal ocean circulation modeling)
  • Model:TauDEM  + (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)
  • Model:FineSed3D  + (A turbulence-resolving numerical model for fine sediment transport in bottom boundary layer)
  • Model:NUBBLE  + (A turbulent boundary layer model for the linearized shallow water equations)
  • Model:ZoneTaxon  + (A zone-based taxon)
  • Model:Anuga  + (ANUGA is a hydrodynamic modelling tool that allows users to model realistic flow problems in complex 2D geometries.)
  • Model:AnugaSed  + (Add-on package to ANUGA with modules for sediment transport and vegetation drag)
  • Model:AeoLiS  + (AeoLiS is a process-based model for simulating aeolian sediment transport in situations where supply-limiting factors are important, like in coastal environments.)
  • Model:DECAL  + (Aeolian dune landscape model)
  • Model:CSt ASMITA  + (Aggregate scale morphodynamic model of integrated coastal systems)
  • Model:ALFRESCO  + (Alaskan Frame‐based Ecosystem Code)
  • Model:Hilltop flow routing  + (Algorithm for directly measuring hillslope length from high resolution topographic data)