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Stephen, Ralph A (2001): (Appendix B) Compressional and shear wave attenuation as functions of pressure, ODP Hole 176-735B [dataset]. PANGAEA, https://doi.org/10.1594/PANGAEA.787384, In supplement to: Stephen, RA (2001): Data report: Physical properties measurements in ODP Hole 735B. In: Natland, JH; Dick, HJB; Miller, DJ; Von Herzen, RP (eds.) Proceedings of the Ocean Drilling Program, Scientific Results, College Station, TX (Ocean Drilling Program), 176, 1-19, https://doi.org/10.2973/odp.proc.sr.176.017.2001

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Project(s):
Coverage:
Latitude: -32.723210 * Longitude: 57.266010
Date/Time Start: 1997-10-24T13:45:00 * Date/Time End: 1997-12-01T19:00:00
Minimum DEPTH, sediment/rock: 117.360 m * Maximum DEPTH, sediment/rock: 208.106 m
Event(s):
176-735B * Latitude: -32.723210 * Longitude: 57.266010 * Date/Time Start: 1997-10-24T13:45:00 * Date/Time End: 1997-12-01T19:00:00 * Elevation: -720.6 m * Penetration: 1508 m * Recovery: 865.99 m * Location: Indian Ocean * Campaign: Leg176 * Basis: Joides Resolution * Method/Device: Drilling/drill rig (DRILL) * Comment: 122 cores; 1003.2 m cored; 504.8 m drilled; 86.3 % recovery
Comment:
Sediment depth is given in mbsf. Q = quality factor. Attenuation = 1000/Q.
Parameter(s):
#NameShort NameUnitPrincipal InvestigatorMethod/DeviceComment
1Sample code/labelSample labelStephen, Ralph ADSDP/ODP/IODP sample designation
2DEPTH, sediment/rockDepth sedmGeocode
3Ultrasonic attenuation, compressional waveQpStephen, Ralph AAttenuation measurement, spectral ratio method (Toksöz et al. 1979)at 60 MPa (1)
4Ultrasonic attenuation, compressional waveQpStephen, Ralph AAttenuation measurement, spectral ratio method (Toksöz et al. 1979)at 100 MPa
5Ultrasonic attenuation, compressional waveQpStephen, Ralph AAttenuation measurement, spectral ratio method (Toksöz et al. 1979)at 150 MPa
6Ultrasonic attenuation, compressional waveQpStephen, Ralph AAttenuation measurement, spectral ratio method (Toksöz et al. 1979)at 200 MPa
7Ultrasonic attenuation, compressional waveQpStephen, Ralph AAttenuation measurement, spectral ratio method (Toksöz et al. 1979)at 60 MPa (2)
8Ultrasonic attenuation, shear waveQsStephen, Ralph AAttenuation measurement, spectral ratio method (Toksöz et al. 1979)Qs1; at 60 MPa (1)
9Ultrasonic attenuation, shear waveQsStephen, Ralph AAttenuation measurement, spectral ratio method (Toksöz et al. 1979)Qs1; at 100 MPa
10Ultrasonic attenuation, shear waveQsStephen, Ralph AAttenuation measurement, spectral ratio method (Toksöz et al. 1979)Qs1; at 150 MPa
11Ultrasonic attenuation, shear waveQsStephen, Ralph AAttenuation measurement, spectral ratio method (Toksöz et al. 1979)Qs1; at 200 MPa
12Ultrasonic attenuation, shear waveQsStephen, Ralph AAttenuation measurement, spectral ratio method (Toksöz et al. 1979)Qs1; at 60 MPa (2)
13Ultrasonic attenuation, shear waveQsStephen, Ralph AAttenuation measurement, spectral ratio method (Toksöz et al. 1979)Qs2; at 60 MPa (1)
14Ultrasonic attenuation, shear waveQsStephen, Ralph AAttenuation measurement, spectral ratio method (Toksöz et al. 1979)Qs2; at 100 MPa
15Ultrasonic attenuation, shear waveQsStephen, Ralph AAttenuation measurement, spectral ratio method (Toksöz et al. 1979)Qs2; at 150 MPa
16Ultrasonic attenuation, shear waveQsStephen, Ralph AAttenuation measurement, spectral ratio method (Toksöz et al. 1979)Qs2; at 200 MPa
17Ultrasonic attenuation, shear waveQsStephen, Ralph AAttenuation measurement, spectral ratio method (Toksöz et al. 1979)Qs2; at 60 MPa (2)
Size:
191 data points

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