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Explore water-related photography, imagery, and illustrations.

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Aerial image of the former Kanab North uranium mine on the edge of Kanab Creek, north of Grand Canyon
Kanab_North_Mine.JPG
Kanab_North_Mine.JPG
Kanab_North_Mine.JPG

Former Kanab North uranium mine on the edge of Kanab Creek, north of Grand Canyon.

built-up base of minerals around a geyser
El Tatio Geyser Field
El Tatio Geyser Field
El Tatio Geyser Field

Geyser cone in the El Tatio geyser field, Chile

Arkansas River at Dardanelle, Arkansas, during low-flow conditions on September 29, 2012
low-flow conditions on Arkansas River at Dardanelle, Arkansas
low-flow conditions on Arkansas River at Dardanelle, Arkansas
low-flow conditions on Arkansas River at Dardanelle, Arkansas

Arkansas River at Dardanelle, Arkansas, during low-flow conditions on September 29, 2012. Photograph by Daniel M. Wagner, U.S. Geological Survey.

Sam Rayburn Lake, September 2012
Sam Rayburn Lake
Sam Rayburn Lake
Sam Rayburn Lake

Sam Rayburn Lake, September 2012. Photograph by David LaRue, U.S. Army Corps of Engineers.

SIR 2012–5202

Sam Rayburn Lake, September 2012. Photograph by David LaRue, U.S. Army Corps of Engineers.

SIR 2012–5202

Granger Lake, September 2012
Granger Lake
Granger Lake
Granger Lake

Granger Lake, September 2012. Photograph by Ben Bohac, U.S. Army Corps of Engineers.

SIR 2012–5202

Granger Lake, September 2012. Photograph by Ben Bohac, U.S. Army Corps of Engineers.

SIR 2012–5202

Image: Collecting Sediment Samples
Collecting Sediment Samples
Collecting Sediment Samples
Collecting Sediment Samples

USGS employee Anthony Lopez views the Atlantic City skyline while collecting sediment samples in the Edwin B. Forsythe National Wildlife Refuge in Galloway Township, NJ.

USGS employee Anthony Lopez views the Atlantic City skyline while collecting sediment samples in the Edwin B. Forsythe National Wildlife Refuge in Galloway Township, NJ.

Image: Terrestrial Lidar to Map Flooding from Hurricane Isaac
Terrestrial Lidar to Map Flooding from Hurricane Isaac
Terrestrial Lidar to Map Flooding from Hurricane Isaac
Terrestrial Lidar to Map Flooding from Hurricane Isaac

A 3-D terrestrial lidar scan of the Interstate-510 bridge in New Orleans taken Friday (Aug. 31, 2012). The U.S. Geological Survey is using this new technology in select areas of Louisiana, Mississippi and Alabama to map flooding in urban areas impacted by Hurricane Isaac.

A 3-D terrestrial lidar scan of the Interstate-510 bridge in New Orleans taken Friday (Aug. 31, 2012). The U.S. Geological Survey is using this new technology in select areas of Louisiana, Mississippi and Alabama to map flooding in urban areas impacted by Hurricane Isaac.

Hurricane Sandy satellite image
Hurricane Sandy satellite image
Hurricane Sandy satellite image
Image: Owyhee River
Owyhee River
Owyhee River
Owyhee River

Owyhee River near Rome, OR; Alvin Sablan streamgaging.

Owyhee River near Rome, OR; Alvin Sablan streamgaging.

Cave in fractured Austin Group rock located approximately 9.3 miles northeast of city of Uvalde in Uvalde County, Texas.
Cave in fractured Austin Group rock, Uvalde County
Cave in fractured Austin Group rock, Uvalde County
Cave in fractured Austin Group rock, Uvalde County

Cave in fractured Austin Group rock located approximately 9.3 miles northeast of city of Uvalde in Uvalde County, Texas. Photograph taken August 7, 2012, by Robert R. Morris.

SIR 2013–5149

Cave in fractured Austin Group rock located approximately 9.3 miles northeast of city of Uvalde in Uvalde County, Texas. Photograph taken August 7, 2012, by Robert R. Morris.

SIR 2013–5149

Image: Sediment Sampling
Sediment Sampling
Sediment Sampling
Sediment Sampling

USGS employee Anthony Lopez enjoys the boat ride back to port after a long day of sampling sediment in the Barnegat Bay near Seaside Heights, NJ. 

USGS employee Anthony Lopez enjoys the boat ride back to port after a long day of sampling sediment in the Barnegat Bay near Seaside Heights, NJ. 

Image:  Hot Springs Creek
Hot Springs Creek
Hot Springs Creek
Hot Springs Creek

USGS scientist Jennifer Lewicki measures the discharge along a tributary to Hot Springs Creek, Akutan Island, Alaska. Steam (upper left) rises from 3 high-temperature springs that discharge into the tributary.

USGS scientist Jennifer Lewicki measures the discharge along a tributary to Hot Springs Creek, Akutan Island, Alaska. Steam (upper left) rises from 3 high-temperature springs that discharge into the tributary.

Image: Akutan Hot Springs
Akutan Hot Springs
Akutan Hot Springs
Akutan Hot Springs

A hot spring discharges 77°C (~171°F) water into Hot Springs Creek, Akutan Island, Alaska.

A hot spring discharges 77°C (~171°F) water into Hot Springs Creek, Akutan Island, Alaska.

Low streamflow on the Arkansas River at Syracuse, Kansas.
Low streamflow on the Arkansas River at Syracuse, Kansas.
Low streamflow on the Arkansas River at Syracuse, Kansas.
Low streamflow on the Arkansas River at Syracuse, Kansas.

This image shows a low streamflow on the Arkansas River at Syracuse.
Human activity, such as groundwater pumping, land management, reservoir operations and urbanization, has a measurable effect on streamflows in Kansas locally, regionally and statewide, according to a new USGS report.

This image shows a low streamflow on the Arkansas River at Syracuse.
Human activity, such as groundwater pumping, land management, reservoir operations and urbanization, has a measurable effect on streamflows in Kansas locally, regionally and statewide, according to a new USGS report.

Water tower for public supply in Clayton, NJ
Water tower for public supply in Clayton, NJ
Water tower for public supply in Clayton, NJ
Water tower for public supply in Clayton, NJ

Groundwater is pumped from a public-supply well and stored in a water tower for residents' use in Clayton, New Jersey. The well taps groundwater from the North Atlantic Coastal Plain aquifer.

Groundwater is pumped from a public-supply well and stored in a water tower for residents' use in Clayton, New Jersey. The well taps groundwater from the North Atlantic Coastal Plain aquifer.

Hydrologic tehcnician collects a sample of untreated groundwater from a public-supply well
Hydrologic tehcnician collects a sample from a public-supply well
Hydrologic tehcnician collects a sample from a public-supply well
Hydrologic tehcnician collects a sample from a public-supply well

Groundwater in the Atlantic and Gulf Coastal Plain aquifers is old—more than 21,300 years old in more than half of the wells sampled.

Scientists sampling surface water from a gulch
Water Quality Sampling at Mount Rushmore National Memorial
Water Quality Sampling at Mount Rushmore National Memorial
Water Quality Sampling at Mount Rushmore National Memorial

Sampling Lafferty Gulch surface water that was analyzed for perchlorate and metals on July 10, 2012. Water-quality sampling of groundwater and surface water was conducted during 2011-15 at Mount Rushmore National Memorial to characterize the occurrent of perchlorate and selected metals commonly associated with fireworks.

Sampling Lafferty Gulch surface water that was analyzed for perchlorate and metals on July 10, 2012. Water-quality sampling of groundwater and surface water was conducted during 2011-15 at Mount Rushmore National Memorial to characterize the occurrent of perchlorate and selected metals commonly associated with fireworks.

Mount Rushmore water sampling
Water Sampling at Mount Rushmore
Water Sampling at Mount Rushmore
Water Sampling at Mount Rushmore

USGS scientists take samples of Lafferty Gulch surface water, which was analyzed for perchlorate and metals.

USGS scientists take samples of Lafferty Gulch surface water, which was analyzed for perchlorate and metals.

Scientists collecting soil samples
Water Quality Sampling at Mount Rushmore National Memorial
Water Quality Sampling at Mount Rushmore National Memorial
Water Quality Sampling at Mount Rushmore National Memorial

Collection of composite soil samples, Mount Rushmore National Memorial, June 20, 2012. Water-quality sampling of groundwater and surface water and soil sampling was conducted during 2011-15 at Mount Rushmore National Memorial to characterize the occurrent of perchlorate and selected metals commonly associated with fireworks.

Collection of composite soil samples, Mount Rushmore National Memorial, June 20, 2012. Water-quality sampling of groundwater and surface water and soil sampling was conducted during 2011-15 at Mount Rushmore National Memorial to characterize the occurrent of perchlorate and selected metals commonly associated with fireworks.

Image: Normandy Reservoir
Normandy Reservoir
Normandy Reservoir
Normandy Reservoir

Grass growing in areas that would normally be underwater near Normany Dam.

Grass growing in areas that would normally be underwater near Normany Dam.

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