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EFFECTS OF SURFACE WATER MAUI HAWAII

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Product Details

Product Number
234885
Series
SIR-2010-5011
Scale
NO SCALE
Alternate ID
SIR-2010-5011
ISBN
978-1-4113-2837-2
Authors
JEFF A PERREAULT
Version Date
01/01/2010
Regions
HI
Countries
USA
Media
Paper
Format
Bound

Additional Details

Description
The perennial flow provided by Waihe#e River, Waiehu Stream, #Iao Stream, and Waikapu Stream, collectively known as Na Wai #Eha (#The Four Streams#), made it possible for widespread agricultural activities to flourish in the eastern part of West Maui, Hawai#i. The streams of the Na Wai #Eha area flow in their upper reaches even during extended dry-weather conditions because of persistent groundwater discharge to the streams. Overall, the lower reaches of these streams lose water, which may contribute to groundwater recharge. During climate years 1984#2007 (when complete streamflow records were available for Waihe#e River and #Iao Stream), Waihe#e River had the greatest median flow of the four streams upstream of the uppermost diversion on each stream. The median flows, in million gallons per day, during climate years 1984#2007 were: 34 for Waihe#e River near an altitude of 605 feet; 25 for #Iao Stream near an altitude of 780 feet; and estimated to be 4.3 for Waikapu Stream near an altitude of 1,160 feet; 3.2 for North Waiehu Stream near an altitude of 880 feet; and 3.2 for South Waiehu Stream near an altitude of 870 feet. Existing stream diversions in the Na Wai #Eha area have a combined capacity exceeding at least 75 million gallons per day and are capable of diverting all or nearly all of the dry-weather flows of these streams, leaving some downstream reaches dry. Hourly photographs collected during 2006#2008 indicate that some stream reaches downstream of diversions are dry more than 50 percent of the time. Many of these reaches would be perennial or nearly perennial in the absence of diversions. A lack of sufficient streamflow downstream of existing diversions has led to recent conflicts between those currently diverting or using the water and those desiring sufficient instream flows for protection of traditional and customary Hawaiian rights (including the cultivation of taro), maintenance of habitat for native stream fauna, recreation, aesthetics, and groundwater recharge from loss of water through the streambed. In response to a need for additional information, the U.S. Geological Survey (USGS) undertook the present investigation to characterize the effects of existing surface-water diversions on (1) streamflow, (2) potential groundwater recharge from the streams to the underlying groundwater body, (3) physical habitat for native stream fauna (fish, shrimp, and snails), and (4) instream temperatures. Information collected for this study includes discharge measurements under different streamflow conditions to characterize streamflow and seepage losses, hourly photographs of stream conditions from mounted cameras, snorkel surveys of stream fauna, measurements of microhabitat (depth, velocity, and substrate) under different flow conditions, and measurements of water temperatures. Families of curves were developed to show the relations between surface-water diversion intake capacity (the maximum rate that an intake can divert) and (1) selected duration discharges for sites near the coast; (2) selected duration discharges for the diversions; (3) groundwater-recharge reduction; and (4) physical-habitat reduction for native stream fauna. These curves may be used by water managers to evaluate the effects of different diversion intake capacities on streamflow, water available for offstream use, groundwater recharge, and habitat for native stream fauna.
Survey Date
2010
Print Date
2010
Height In Inches
11.000
Width In Inches
0.250
Length In Inches
8.500
Two Sided
Yes
Pieces
1
Languages
English
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