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This product is recommended for use at a scale of approximately 1:75,000 or less detail to reflect the limitations in the modelling and the recommended catchment to regional scale of inundation assessments with this product. The product is NOT suitable for assessments of potential risks at property level.

The datasets available are:
Sea Level Rise:
- SLR00CM_2009 - Current (2009) sea level                        
- SLR20CM_2040 - Projected 20cm sea level rise by 2040  
- SLR47CM_2070 - Projected 47cm sea level rise by 2070  
- SLR82CM_2100 - Projected 82cm sea level rise by 2100  

Storm tide (1-in-100 year) with added wind forcing plus sea level rise
- SLR00CM_ST_2009 - Current (2009) inundation to 1-in-100 year storm tide level 
- SLR20CM_ST_2040 - Inundation to 1-in-100 year storm tide level with storm surge increased by 6% plus 20 cm sea level rise 
- SLR47CM_ST_2070 - Inundation to 1-in-100 year storm tide level with storm surge increased by 13% plus 47 cm sea level rise 
- SLR82CM_ST_2100 - Inundation to 1-in-100 year storm tide level with storm surge increased by 19% plus 82 cm sea level rise

Interactive Map:- Hydra site decommissioned on 25/10/2022 as requested by the site owner.
http://mapshare.maps.vic.gov.au/gvh270hydra/
&gt; Future Coasts (Modelled)

This data has been computed to support the Victorian Governments Future Coasts Project.</gco:CharacterString>
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Areas of application include: Strategic planning, Adaptation planning, Risk assessment, Catchment hydrological modelling.</gco:CharacterString>
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http://www.climatechange.vic.gov.au/publications (Research and reports)
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The inputs used to compute coastal inundation are:
- Vicmap Elevation - Coastal 1m (LiDAR) DEM &amp; 0.5m Contours
- Predictions of sea level rise from the Intergovernmental Panel on Climate Change (IPCC)
- The National Tidal Centre modeled high water from the Bureau of Meteorology (BOM)
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- Storm Tide modeled levels
- Wind forcing modeling

The Coastal Inundation model predicts inundation for two scenarios at four time scales:

Incremental sea level based on the National Tidal Centre tidal range grid
-  Present day (2009) scenario
- 20 cm sea level rise consistent with IPCC A1FI 2040 scenario
- 47 cm sea level rise consistent with IPCC A1FI 2070 scenario
- 82 cm sea level rise consistent with IPCC A1FI 2100 scenario

Storm tide (1-in-100 year) with added wind forcing
- Present day  (2009) scenario (inundation to 1-in-100 year storm tide level)
- IPCC A1FI 2040 scenario (inundation to 1-in-100 year storm tide level with storm surge increased by 6% plus 20 cm sea level rise)
- IPCC A1FI 2070 scenario (inundation to 1-in-100 year storm tide level with storm surge increased by 13% plus 47 cm sea level rise)
- IPCC A1FI 2100 scenario (inundation to 1-in-100 year storm tide level with storm surge increased by 19% plus 82 cm sea level rise)

The Coastal Inundation processing model uses a "bathtub" method, whereby sea level heights are computed against DEM heights with no consideration for water flow or drainage/stream connectivity.

The Coastal Inundation dataset has been subject to cartographic generalisation to ensure cartographic clarity and usability for a scale use of 1:75,000 or less detail.</gco:CharacterString>
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