Search engine for discovering works of Art, research articles, and books related to Art and Culture
ShareThis
Javascript must be enabled to continue!

Experimental and Numerical Study to Investigate the Impact of Changing the Boundary Water Levels on Saltwater Intrusion in Coastal Aquifers

View through CrossRef
Experimental and numerical models can be used to investigate saltwater intrusion (SWI) in coastal aquifers. Sea level rise (SLR) and decline of freshwater heads due to climate change are the two key variables that may affect saltwater intrusion. This study aims to give a better understanding of the impact of increasing seawater levels and decreasing freshwater heads due to climate change and increasing abstraction rates due to overpopulation using experimental and numerical models on SWI. The experimental model was conducted using a flow tank and the SEAWAT code was used for the numerical simulation. Different scenarios were examined to assess the effect of seawater rise and landside groundwater level decline. The experimental and numerical studies were conducted on three scenarios: increasing seawater head by 25%, 50% and 75% from the difference between seawater and freshwater heads, decreasing freshwater head by 75%, 50% and 25% from the difference between seawater and freshwater heads, and a combination of these two scenarios. Good agreement was attained between experimental and numerical results. The results showed that increasing the seawater level and decreasing freshwater head increased saltwater intrusion, but the combination of these two scenarios had a severe effect on saltwater intrusion. The numerical model was then applied to a real case study, the Biscayne aquifer, Florida, USA. The results indicated that the Biscayne aquifer is highly vulnerable to SWI under the possible consequences of climate change. A 25 cm seawater rise and 28% reduction in the freshwater flux would cause a loss of 0.833 million m3 of freshwater storage per each kilometer width of the Biscayne aquifer. This study provides a better understanding and a quantitative assessment for the impacts of changing water levels’ boundaries on intrusion of seawater in coastal aquifers.
Title: Experimental and Numerical Study to Investigate the Impact of Changing the Boundary Water Levels on Saltwater Intrusion in Coastal Aquifers
Description:
Experimental and numerical models can be used to investigate saltwater intrusion (SWI) in coastal aquifers.
Sea level rise (SLR) and decline of freshwater heads due to climate change are the two key variables that may affect saltwater intrusion.
This study aims to give a better understanding of the impact of increasing seawater levels and decreasing freshwater heads due to climate change and increasing abstraction rates due to overpopulation using experimental and numerical models on SWI.
The experimental model was conducted using a flow tank and the SEAWAT code was used for the numerical simulation.
Different scenarios were examined to assess the effect of seawater rise and landside groundwater level decline.
The experimental and numerical studies were conducted on three scenarios: increasing seawater head by 25%, 50% and 75% from the difference between seawater and freshwater heads, decreasing freshwater head by 75%, 50% and 25% from the difference between seawater and freshwater heads, and a combination of these two scenarios.
Good agreement was attained between experimental and numerical results.
The results showed that increasing the seawater level and decreasing freshwater head increased saltwater intrusion, but the combination of these two scenarios had a severe effect on saltwater intrusion.
The numerical model was then applied to a real case study, the Biscayne aquifer, Florida, USA.
The results indicated that the Biscayne aquifer is highly vulnerable to SWI under the possible consequences of climate change.
A 25 cm seawater rise and 28% reduction in the freshwater flux would cause a loss of 0.
833 million m3 of freshwater storage per each kilometer width of the Biscayne aquifer.
This study provides a better understanding and a quantitative assessment for the impacts of changing water levels’ boundaries on intrusion of seawater in coastal aquifers.

Related Results

Numerical analysis of the effects of changing hydraulic parameters on saltwater intrusion in coastal aquifers
Numerical analysis of the effects of changing hydraulic parameters on saltwater intrusion in coastal aquifers
PurposeThe purpose of this paper is to develop and validate a numerical model to study the effect of changing hydraulic parameters on saltwater intrusion in coastal aquifers.Design...
Saltwater reduces CO 2 and CH 4 production in organic soils from a coastal freshwater forested wetland
Saltwater reduces CO 2 and CH 4 production in organic soils from a coastal freshwater forested wetland
Abstract. A major concern for coastal freshwater wetland function and health is saltwater intrusion and the potential impacts on greenhouse gas production. Coastal freshwater wetla...
Investigation of saltwater intrusion in thach han river system by mike hydro river package
Investigation of saltwater intrusion in thach han river system by mike hydro river package
Saltwater intrusion is one of the most severe problems for worldwide coastal regions, leading to negative impacts on both human and aquatic inhabitant communities. Quang Tri provin...
A STUDY ON SALTWATER INTRUSION RISK ASSESSMENT FOR AGRICULTURAL PRODUCTION IN TIEN GIANG PROVINCE
A STUDY ON SALTWATER INTRUSION RISK ASSESSMENT FOR AGRICULTURAL PRODUCTION IN TIEN GIANG PROVINCE
The study has developed a set of criteria for assessing saltwater intrusion risk at commune level for Tien Giang province, a region with a relatively well-developed irrigation syst...
Modelling Climate Change Impact on Seawater Intrusion using Density-Dependent Flow model
Modelling Climate Change Impact on Seawater Intrusion using Density-Dependent Flow model
As the supply of freshwater for several coastal towns worldwide, as well as for agricultural and industrial uses, coastal aquifers are crucial to the sustainability of communities....
Effects of Aquifer Bed Slope and Sea Level on Saltwater Intrusion in Coastal Aquifers
Effects of Aquifer Bed Slope and Sea Level on Saltwater Intrusion in Coastal Aquifers
The quality of groundwater resources in coastal aquifers is affected by saltwater intrusion. Over-abstraction of groundwater and seawater level rise due to climate change accelerat...
Long-term dynamics of pesticide metabolites in soil and aquifers
Long-term dynamics of pesticide metabolites in soil and aquifers
Groundwater is one of the most important resources for drinking water, and has to be protected from the input of persistent substances. Nevertheless, pesticides and especially thei...
COASTAL ENGINEERING 2000
COASTAL ENGINEERING 2000
*** Available Only Through ASCE *** http://ascelibrary.aip.org/browse/asce/vol_title.jsp?scode=C This Proceedings contains more than 300 papers pre...

Back to Top