Title :
A deep-sea observatory experiment using acoustic extensometers: precise horizontal distance measurements across a mid-ocean ridge
Author :
Chadwick, William W., Jr. ; Stapp, Michael
Author_Institution :
Hatfield Marine Sci. Center, Oregon State Univ./NOAA, Newport, OR, USA
fDate :
4/1/2002 12:00:00 AM
Abstract :
In July 2000, an array of instruments called acoustic extensometers was deployed at the Cleft segment of the southern Juan de Fuca Ridge, a seafloor observatory site selected by the National Science Foundation RIDGE Program. These instruments are designed to precisely measure horizontal deformation across the axis of a mid-ocean ridge in order to detect and quantify seafloor spreading events. The instruments were deployed in semipermanent seafloor benchmarks in a linear array that is 1.2-km long and spans the floor of the axial valley. The instruments make daily measurements of distance to their neighbors in the array by recording the round trip travel time of 100-kHz acoustic pulses, and simultaneous temperature measurements are used to correct the ranges for sound speed variations. The instruments are expected to have lifetimes of at least five years. In addition, precise pressure measurements have been made at each benchmark with a remotely operated vehicle in order to monitor for vertical deformation across the array. Preliminary results show that the resolution of the acoustic measurements is ±1-2 cm and that no abrupt deformation events occurred during the first year
Keywords :
condition monitoring; deformation; displacement measurement; distance measurement; extensometers; oceanographic equipment; oceanographic techniques; seafloor phenomena; ultrasonic transducer arrays; 1.2 km; 100 kHz; 5 yr; Cleft segment; RIDGE program; acoustic extensometers; acoustic pulses; acoustic ranging; daily measurements; deep-sea observatory experiment; horizontal deformation measurements; instrument array; linear array; mid-ocean ridge; precise pressure measurements; remotely operated vehicle; round trip travel time; seafloor observatory site; seafloor spreading events; semipermanent seafloor benchmarks; sound speed variations correction; southern Juan de Fuca Ridge; submarine volcano monitoring; temperature measurements; vertical deformation; Acoustic arrays; Acoustic measurements; Acoustic signal detection; Event detection; Instruments; Observatories; Pulse measurements; Sea floor; Time measurement; Velocity measurement;
Journal_Title :
Oceanic Engineering, IEEE Journal of
DOI :
10.1109/JOE.2002.1002473