GenCade 2.0 Structures/Events Coverage Dialog

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The GenCade Structures/Events coverage allows the user to define the structures and planned events for a GenCade simulation. Only one of this type coverage can be added to the simulation, so it should contain arcs for all structures and events needed. However, there can be multiple arcs of the same types within this coverage unless it is mentioned in the sections below.

This coverage uses Feature Arcs within the SMS to define the positioning for each type and to assign a variety of attributes including:

  • Geometric objects – shoreline and contours.
  • Structures – jetty, inlet, seawall, or breakwater and their associated parameters.
  • Events – bypass or beach nourishment events and their time ranges and parameters.

This coverage is combined with the Gencade Grid and Points coverages to define all necessary pieces for the Gencade simulation.

The Structures and Events coverage contains many different types as shown and described below.

Generic

A Generic arc is the default for this dialog. Generic arcs are not yet assigned to be of any type and no information for these arcs is written to the input files.

Geometric Objects

Initial Shoreline

Only one Initial Shoreline is allowed per GenCade simulation. This is the definition of where the water meets the land. The points for the shoreline can be loaded into SMS in several ways including from ArcGIS Shapefiles. As mentioned in the USACE Technical Report[1],

Rigorous quality control is required to make sure the initial shoreline accurately represents the shoreline of interest. This process requires a detailed inspection of the shoreline. It is recommended to smooth out sudden changes in shoreline orientation especially near an inlet. The smoothing algorithm [in SMS] can be used for this purpose.

Regional Contour

In some cases, a regional contour may be added to the simulation. This arc can be defined in a similar manner, however it should be declared as the "Regional Contour" type under Arc Options on this dialog. Once the regional contour is specified, GenCade will maintain a desired overall shoreline curvature, e.g., preserving a bay shape without the presence of structures, even if the model is run for very long time periods.

Adding a regional contour represents a simplified method to describe the effects on the shoreline evolution of processes acting at longer time scales than what is simulated in GenCade. Thus, the regional contour should incorporate large-scale trends in shoreline shape, and not small-scale features that are expected to change at time scales modeled by GenCade.

Reference Line

If the user wishes to see another shoreline within the SMS interface, they can add one or more shorelines as the "Reference Line" type. This type is not written to any input file and is not used by GenCade in any way. It is merely for the user to reference within the SMS display window.

Structures

GenCade simulates the effects of common coastal structures on the shoreline position. Common types structures that can be represented are groins, jetties, harbor breakwaters (with respect to their functioning as a jetty or groin), detached breakwaters, seawalls, and "soft structures" such as beach fills. Considerable flexibility is allowed in combining these basic structures to produce more complex configurations, e.g., T-shaped groins, Y-shaped and half-Y groins, and jetties with spurs. Combinations of these types of structures are also possible.

There may be as many structures as needed for a GenCade simulation, however there are a few restrictions.

  • Groins/jetties must be placed at least two grid cells apart.
  • A groin/jetty may not be placed in the cell adjacent to a boundary cells, regardless if the boundary is gated by a groin or jetty or if it is an open beach.
  • Diffracting structures of any type cannot overlap, except having their tips at the same cell wall.

Breakwater

GenCade Structures dialog showing the Breakwater option
GenCade Structures dialog showing the Breakwater option

Detached breakwaters have a few options to define for each structure.

  • Depth 1 (depth of the cell nearest the grid origin)
  • Depth 2 (depth of the cell farthest from the grid origin)
  • Transmission Type - selection from this combo box defines other parameters used in breakwater computations.
    • Constant - single constant transmission coefficient.
    • Ahren's - first of three formulations taking several additional coefficients.
    • Seabrook & Hall - second formulation
    • d'Angremond - third formulation

Note: All of these formulations take 5 parameters, and the first four are the same for each case.

  • Freeboard to MSL
  • Width
  • Seaward side slope
  • Shoreward side slope

The Ahren's and Seabrook & Hall formulations each take a fifth parameter for Armor stone D50.
The d'Angremond formulation takes a fifth parameter for Permeability.

Seawall

Groin

GenCade Structures dialog showing the Groin option
GenCade Structures dialog showing the Groin option

Inlet

GenCade Structures dialog showing the Inlet option
GenCade Structures dialog showing the Inlet option

Jetty (Left and Right)

File:Structure jetty.png
GenCade Structures dialog showing the Left Jetty on Inlet option

Attachment Bar

Events

Bypass Event

GenCade Structures dialog showing the Bypass Event option
GenCade Structures dialog showing the Bypass Event option

Beachfill Event

Other

SBAS Polygon

SBAS Flux

References

  1. GenCade Version 1 Model Theory and User's Guide, https://hdl.handle.net/11681/7333