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A list of all pages that have property "Describe length scale and resolution" with value "10s to 100s km length scale". Since there have been only a few results, also nearby values are displayed.

Showing below up to 11 results starting with #1.

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List of results

  • Model:ThawLake1D  + (1D Uppermost 10 m has high resolution gridcells (0.05m). Below 10 m to 500 m depth, grid cells are coarser (1m).)
  • Model:HEBEM  + (A grid with 100x100 cells, Typical cells with a resolution of 40x40m)
  • Model:SurfaceRoughness  + (A requirement is high resolution topographic data, typically ~1m resolution. For a detailed discussion of lengthscale and resolution constraints we urge the user to refer to the original manuscript)
  • Model:ESCAPE  + (A set of four examples is provided (eSCAPE-demo - https://github.com/Geodels/eSCAPE-demo) and illustrates the different capabilities of the code from synthetic to regional, to continental and to global scale models.)
  • Model:GeoClaw  + (Adaptive refinement allows using a very coarse grid on the ocean scale (e.g. 2 degree resolution) and several nested levels of refinement down to e.g. 1/3 arc-second (10 meter) resolution in specific coastal regions.)
  • Model:TopoToolbox  + (All spatial data should be provided as projected, georeferenced (e.g., UTM) grids or shapefiles where spatial units are given in meters. Data referenced in a geographic coordinate system will return unexpected results.)
  • Model:Sun fan-delta model  + (Alluvial channel morphology is not explicitly modeled; rather, channel width, depth, slope, and discharges of water and sediment are represented as sub-grid characteristics. Each cell contains at most one channel.)
  • Model:1D Particle-Based Hillslope Evolution Model  + (Although the hillslope length and height aAlthough the hillslope length and height are specified, these are dimensionless numbers from the perspective of the module. Accordingly, the resolutions supported by the module are primarily constrained by the language in which it is implemented. However, the process of "dimensionalizing" the module's outputs may place practical constraints on resolution. The associated paper discusses this issue.The associated paper discusses this issue.)
  • Model:GFlex  + (Analytical solution produces unrealistic results with low elastic thickness and/or very large cells due to the Green's function approximation.)
  • Model:NEXRAD-extract  + (Angular resolution around the radar; gridded data typically have km-nmi-size pixels)