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Forecasting salt-water intrusion into coastal aquifers due to climate change

  • Kiel University
  • Stony Brook University

Research output: Chapter in Book/Report/Conference proceedingConference contributionpeer-review

2 Scopus citations

Abstract

A global, coastal database was investigated in a model typology based on a simple, unconfined, coastal aquifer to begin to explore the impacts of climate change on saline intrusion. A basic database provided temperature, precipitation, population density and evapotranspiration in mm/yr. Because evapotranspiration is not forecast, as a rule, in climate models the evapotranspiration value is predicted from a linear correlation with the temperature data. A "freshwater scaling parameter" was calculated as the average annual precipitation minus the predicted evapotranspiration minus the product of the population density times the national per capita water use. A few parameters provide good resolution of types of coastal hydrology as a basis for forecasts. When fully developed, the algorithm is intended to be incorporated into the Dynamic Interactive Vulnerability Assessment (DIVA) model presently to investigate salt water intrusion length in estuaries, beach erosion, land-loss and other parameters.

Original languageEnglish
Title of host publicationWorld Environmental and Water Resources Congress 2010
Subtitle of host publicationChallenges of Change - Proceedings of the World Environmental and Water Resources Congress 2010
Pages752-760
Number of pages9
DOIs
StatePublished - 2010
EventWorld Environmental and Water Resources Congress 2010: Challenges of Change - Providence, RI, United States
Duration: May 16 2010May 20 2010

Publication series

NameWorld Environmental and Water Resources Congress 2010: Challenges of Change - Proceedings of the World Environmental and Water Resources Congress 2010

Conference

ConferenceWorld Environmental and Water Resources Congress 2010: Challenges of Change
Country/TerritoryUnited States
CityProvidence, RI
Period05/16/1005/20/10

Keywords

  • Aquifers
  • Climate change
  • Coastal environment
  • Forecasting
  • Salt water intrusion

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