Systemwide Events Calendar
WRRC SeminarNovember 21, 3:00pm - 4:15pm
Manoa Campus, POST 126
Modeling specific groundwater problems in Hawaii: Borehole flow and groundwater inundation
Two specific problems involving localized groundwater flow processes are presented as examples of groundwater models at different scales and different approximations: Vertical flow of groundwater through monitor wells and increased coastal flooding from groundwater-table rise with sea level.
The Pearl Harbor aquifer in southern Oahu is one of the most important sources of freshwater in Hawaii. Salinity profiles collected from uncased deep monitor wells (DMWs) commonly are used to monitor freshwater-lens thickness. However, vertical flow in DMWs can cause the measured salinity to differ from salinity in the adjacent aquifer. Substantial borehole flow and displacement of salinity in DMWs over several hundred feet have been observed in the Pearl Harbor aquifer. A numerical modeling approach incorporated hydraulic characteristics and flux rates representative of the Pearl Harbor aquifer. Borehole flow caused by vertical hydraulic gradients associated with both the natural regional flow system and groundwater withdrawals was simulated. Model results indicate that, with all other factors being equal, greater withdrawal rates, closer withdrawal locations, or higher hydraulic conductivity of the well cause greater borehole flow and displacement of salinity in the well. Borehole flow caused by the natural groundwater-flow system is five orders of magnitude greater than vertical flow in a homogeneous aquifer.
In the wake of climate change, sea-level rise will impact many coastal areas in Hawaii. Global mean sea level may rise about 1 ft by 2050 and 3 ft by 2100, and cause substantial coastal erosion and flooding. However, it is widely unrecognized that low- lying coastal areas may also be vulnerable to groundwater inundation, which is flooding due to a rise of the groundwater table with sea level. Vulnerability to groundwater inundation in southern Oahu was assessed and results indicate that 0.6 m of potential sea level rise causes significant flooding. In fact, the flooded area considering groundwater inundation more than doubles previous predictions of flooding with future sea-level rise. Groundwater inundation has wide-reaching consequences for decision- makers, resource managers and urban planners, and requires a revised approach to adapt to climate change.
Water Resources Research Center, Manoa Campus
Philip Moravcik, 808-956-3097, email@example.com
|Thursday, November 21|
|7:30am||The Wellness Center - Fitness Class Schedule
Maui Campus, Pilina Bldg., Wellness Center
|9:00am||Educational Psychology Final Oral
Manoa Campus, WIST 130
|9:00am||Political Science Final Oral
Manoa Campus, Saunders 617
Honolulu Campus, 874 Dillingham Blvd
|12:00pm||"Combining Documentation Initiatives with Language Instruction"
Manoa Campus, Moore Hall 258
|1:30pm||Emily Goris, piano
Manoa Campus, Orvis Auditorium
|2:30pm||Persian Culture Day
Honolulu Campus, Bulding 2 Floor 1 Student Lounge
Manoa Campus, POST 126
|3:00pm||Intramural Sports - Volleyball
Maui Campus, UHMC Great Lawn
|3:00pm||Ocean and Resources Engineering Final Oral
Manoa Campus, POST 723
Manoa Campus, MSB 100
|4:00pm||John Sayles Film Series
Manoa Campus, Art Auditorium
|4:30pm||Children of Peace
Manoa Campus, Wist Hall 133 (CCC)
|5:00pm||Chess Club at UH Manoa Meeting
Manoa Campus, Campus Center room 308
Manoa Campus, Hale Aloha Courtyard- 2571 Dole St
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- Red Hat System Administration I
- EWC Arts Exhibition: Bollywood & Beyond: Costume in Indian Film
- Kalaupapa -- A Source of Light, Constant and Never-Fading
- Convergence: Glitch_Click_Thunk, Featuring Mark Amerika
- Trip Around the Island
- Trip Around the Island exhibit
- Waikiki Parc Features Ashley Huang
- Holding On, Letting Go
- "On Confucian Role Ethics: Overcoming an Asymmetry in Cultural Comparisons"