User:Jcalantoni: Difference between revisions
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|Institute member=Naval Research Laboratory | |Institute member=Naval Research Laboratory | ||
|Department member=Marine Geosciences Division | |Department member=Marine Geosciences Division | ||
|Postal address 1 member=Code | |Postal address 1 member=Code 7434 | ||
|City member= | |Postal address 2 member=1005 Balch Blvd., D-17B | ||
|City member=Stennis Space Center | |||
|Postal code member=39529 | |Postal code member=39529 | ||
|Country member=United States | |Country member=United States | ||
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|Confirm email member=joe.calantoni@nrlssc.navy.mil | |Confirm email member=joe.calantoni@nrlssc.navy.mil | ||
|Work phone member=228 688 4435 | |Work phone member=228 688 4435 | ||
| | |Cell phone member=228 254 0411 | ||
|Working group member=Coastal Working Group | |Working group member=Coastal Working Group, Marine Working Group, Cyberinformatics and Numerics Working Group, Hydrology Focus Research Group | ||
|Emaillist group member=yes | |Emaillist group member=yes | ||
|Description of your CSDMS-related interests member=I am the Section Head for the Sediment Dynamics at the U.S. Naval Research Laboratory. We are an interdisciplinary team of over a dozen scientists and engineers. One of our long term research goals is to produce accurate and efficient forecasts for seafloor, estuarine and riverine morphodynamics across the full range of relevant length and time scales. Our technical approach is focused on the development of a paradigm for operational modeling of complex multiscale geophysical flows that links models from different scales with different physics within a probabilistic framework. | |||
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Revision as of 09:03, 1 November 2016
Joseph Calantoni, website username login: Jcalantoni
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Member of the following CSDMS groups
- Coastal Working Group
- Marine Working Group
- Cyberinformatics and Numerics Working Group
- Hydrology Focus Research Group
Signed up for the mailing list: yes
I am the Section Head for the Sediment Dynamics Section at the U.S. Naval Research Laboratory. We are an interdisciplinary team of over a dozen scientists and engineers. One of our long term research goals is to produce accurate and efficient forecasts for seafloor, estuarine and riverine morphodynamics across the full range of relevant length and time scales. Our technical approach is focused on the development of a paradigm for operational modeling of complex multiscale geophysical flows that links models from different scales with different physics within a probabilistic framework.