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The Data menu provides options for bathymetry interpolation as well as accessing online bathymetry data. Being able to view bathymetry underneath the grid helps determine the resolution required in the deep and main channel regions compared to shallow regions, which can often have lower resolutionresolutions. The Grid Bathymetry Interpolation and Download Online Bathymetry options are shown in Figure 1 and their use is described below.

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In cases where cross-section data is available, it can be viewed in Grid+ with files in ldb format. For example, a file with name XS.ldb contains cross-sections with the following information (Figure 2).

  • First The first row is the name of the cross-section.
  • Second The second row has a number of data points (e.g 11111), and a number of columns (e.g 3) of each data point. It includes coordinates (X, Y) and Z (elevation)
  • Data points start from the third row to end.

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Figure 2
Figure 2

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Figure 2 Cross-section data format.

From the Import button in the main toolbar, select Import Cross-Sections option, as shown in Figure 3. The Import Cross-Sections form will be displayed. Browse to the cross-section file, then click the Open button (Figure 4), as a result, cross-sections are displayed as shown in Figure 5.

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Figure 4 Import cross-section file.

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Figure 5
Figure 5

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Figure 4 Import cross-section file.


Figure 5  Cross-sections loaded.

To display the elevation of the cross-sections by color ramp, press Alt+C from the keyboard, and the Specify Elevation will pop up. Enter the Min and Max values for the elevation range (this range is based on the Z column value in the cross-section file). In this case, enter 1100, 120 -15 (Figure 6). Then click the OK button, and the cross-section will be displayed as shown in Figure 7.

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Figure 6
Figure 6

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Figure 6  Cross-sections loaded.

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Figure 7  Cross-sections displayed in color ramp.

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Grid Bathymetry Interpolation for Dense Cross-Sections

For the river segment, the available cross-sections , we caninterpolate bathymetry for the grid. First are dense, so it is possible to interpolate grid bathymetry directly. First, draw a grid for the selected river segment, it is advised to create a fine grid to advance the interpolation results. Then, select the grid layer in the Layer Control panel, then and select Grid Bathymetry Interpolation option from the Data menu as shown in Figure 8. The Topographic Interpolation form will be displayed as shown in Figure 9.

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  • Layer : is the name of the selected grid layer that we are going to interpolate its bathymetry.
  • Using Visible Data: is the number of data points. In this case, there are 2234 points from the cross-section file.
  • Interpolation Options: There are two options including Update Missing Only (update elevation values for the missing grid nodes only, in case other nodes already have elevation values) and Overwrite All Data (create new elevation values for all grid nodes and overwrite the nodes that have existing elevation values).
  • Interpolation Method:  Grid+ currently uses only one interpolation method, the Inverse Distance Weighting (IDW). The IDW Options frame allows changing its properties.
  • Click the Interpolate button to start interpolation, and click the OK button to close the form.

After the interpolation process is done, RMC on the grid layer and select Show Properties / Bottom Elevation to display the bottom elevation of the grid after its grid nodes are assigned elevation values as shown in Figure 10.

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The bottom elevation values for the grid are for grid nodes, not for the centroid of grid cells.

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Select the Add a new polyline button from the main toolbar then start drawing a polygon that covers the grid as shown in Figure 11. Change the cursor to select object mode (press the S key or select the Select Object in the main toolbar). Select the overlay layer (the layer that contains the polygon), then LMC on the polygon (it will be highlighted by changing color to red), then RMC to display options, and select the Interpolate Grid Elevations option as shown in Figure 12. A message will be shown as in Figure 13 when the interpolation process is complete. Click the OK button to close the message.

RMC on the grid layer andselect and select Show Properties / Bottom Elevation to display the bottom elevation of the grid after its grid nodes are assigned elevation values as shown in Figure 14 2127790207.

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Figure 11
Figure 11

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Figure 14  Grid with bottom elevation(2).

Grid Bathymetry Interpolation for Sparse Cross-Sections

In reality, the available cross-sections in some river segments are few ( as the example in Figure 15). Therefore, Grid+ support interpolates grid bathymetry by blocks and then extends to the entire grid. Firstly, draw a fine grid to cover the cross-section as shown in Figure 16. Then draw a polygon to cover the grid cells near the available cross-section 

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Figure 15
Figure 15

Image AddedFigure 15  Sparse cross-sections in the river segment.

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Figure 16
Figure 16

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Figure 16  Grid to cover the cross-sections.

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Figure 17  Grid to cover the cross-sections.

Download Online Bathymetry

After selecting the Download Online Bathymetry option, the Download Online Data form will be displayed as shown in Figure 15 2127790207. Users are able to select data set using the drop-down Data Set. The currently available open-source sites are:

  • GEBCO 2021: This is 2021 GEBCO’s gridded bathymetric data set, the GEBCO_2021 Grid, is a global terrain model for ocean and land, providing elevation data, in meters, on a 15 arc-second interval grid. The data information can be found on GEBCO's website GEBCO 2021.
  • GEBCO 2014: This is 2014 GEBCO’s gridded bathymetric data set. The data information can be found on GEBCO's website GEBCO 2014.
  • GEBCO 08: a continuous terrain model for ocean and land with a spatial resolution of 30 arc-seconds released by the General Bathymetric Chart of the Oceans (GEBCO) in 2009. Bathymetric data is available to download and the user manual can be found on the website GEBCO 08.

Depending on the data set selected, different data information is provided in the Spatial Information section. The Data Extraction Limits is auto-set to the whole model domain, but the user can manually select the specific area by checking to Using Polygon File and browser to the closed polygon that contains the area inside.

Click on Download button and Grid+ will download and apply the bathymetry data of the selected Data Set to the specific defined area.

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Figure 15
Figure 15


Figure 15  Download online data for bathymetry.

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