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      Structure, temporal evolution, and heat flux estimates from the Lucky Strike deep-sea hydrothermal field derived from seafloor image mosaics : HYDROTHERMAL OUTFLOW AND IMAGE MOSAICS

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          Mid-Ocean Ridge Hydrothermal Fluxes and the Chemical Composition of the Ocean

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            East pacific rise: hot springs and geophysical experiments.

            Hydrothermal vents jetting out water at 380 degrees +/- 30 degrees C have been discovered on the axis of the East Pacific Rise. The hottest waters issue from mineralized chimneys and are blackened by sulfide precipitates. These hydrothermal springs are the sites of actively forming massive sulfide mineral deposits. Cooler springs are clear to milky and support exotic benthic communities of giant tube worms, clams, and crabs similar to those found at the Galápagos spreading center. Four prototype geophysical experiments were successfully conducted in and near the vent area: seismic refraction measurements with both source (thumper) and receivers on the sea floor, on-bottom gravity measurements, in situ magnetic gradiometer measurements from the submersible Alvin over a sea-floor magnetic reversal boundary, and an active electrical sounding experiment. These high-resolution determinations of crustal properties along the spreading center were made to gain knowledge of the source of new oceanic crust and marine magnetic anomalies, the nature of the axial magma chamber, and the depth of hydrothermal circulation.
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              Constraints on hydrothermal heat flux through the oceanic lithosphere from global heat flow

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                Author and article information

                Journal
                Geochemistry, Geophysics, Geosystems
                Geochem. Geophys. Geosyst.
                American Geophysical Union (AGU)
                15252027
                April 2012
                April 2012
                : 13
                : 4
                : n/a
                Article
                10.1029/2011GC003990
                e9852895-90e1-4988-af64-08491652c080
                © 2012

                http://doi.wiley.com/10.1002/tdm_license_1.1

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