Basic water model use case (Water Overlay): Difference between revisions

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For all effective uses of any variant of the water overlay, it is strongly recommended to load in data for a stationary water system. The behavior of any water, whether it's pre-existing, expected inflow, or due to natural event or calamity, is affected by the presence of features which can capture or steer water in other directions. The more real-world [[hydrological feature]]s and [[hydrological construction]]s are loaded in, the more accurately the water flow can be simulated.
For all effective uses of any variant of the water overlay, it is strongly recommended to load in data for a stationary water system. The behavior of any water, whether it's pre-existing, expected inflow, or due to natural event or calamity, is affected by the presence of features which can capture or steer water in other directions. The more real-world [[hydrological feature]]s and [[hydrological construction]]s are loaded in, the more accurately the water flow can be simulated.
*Prepare data
*Prepare properties
*Prepare result types
*Configuration wizard
*Grid cell size

Revision as of 15:07, 8 April 2019

Please note: This page is currently being updated.


For all effective uses of any variant of the water overlay, it is strongly recommended to load in data for a stationary water system. The behavior of any water, whether it's pre-existing, expected inflow, or due to natural event or calamity, is affected by the presence of features which can capture or steer water in other directions. The more real-world hydrological features and hydrological constructions are loaded in, the more accurately the water flow can be simulated.

  • Prepare data
  • Prepare properties
  • Prepare result types
  • Configuration wizard
  • Grid cell size