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Worm, Horst-Ulrich (2001): (Table 1) Viscosity coefficients at various temperatures of samples from ODP Hole 176-735B [dataset]. PANGAEA, https://doi.org/10.1594/PANGAEA.722783, Supplement to: Worm, H-U (2001): Magnetic stability of oceanic gabbros from ODP Hole 735B. Earth and Planetary Science Letters, 193(3-4), 287-302, https://doi.org/10.1016/S0012-821X(01)00517-9

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Abstract:
Ocean Drilling Program (ODP) Hole 735B was drilled to a depth of 1.5 km in a tectonic window of gabbroic lower oceanic crust created at the Southwest Indian Ridge. The gabbros have a very stable natural remanent magnetization (NRM) of reversed polarity with most unblocking temperatures slightly below the Curie temperature of magnetite. The NRM includes a drilling-induced overprint but its intensity decays strongly towards the interior of the drill core. The demagnetization data yield no or only a very small secondary magnetization component acquired during the present Brunhes chron or an earlier normal chron, suggesting cooling through most of the blocking temperature range during chron C5r and a strong resistance against the acquisition of thermoviscous magnetization. A novel furnace has been designed to measure magnetizations and their time dependences at high temperatures (up to 580 deg C) inside a commercial SQUID magnetometer. Magnetic viscosity experiments have been conducted on the gabbros at temperatures up to 550 deg C to determine the time and temperature stability of remanent magnetization. Viscosities are generally small and increase little with temperature below the main blocking temperature, where the increase becomes almost an order of magnitude. Extrapolations to geological times infer viscous acquisitions that would be 5-25% of a thermoremanence in 100 kyr and at temperatures of 200-500 deg C. At ocean bottom temperature the predicted magnetization of one sample acquired in the present Brunhes chron should be 10% of the NRM. However, this is not recognized during NRM demagnetization and partial thermoremanent magnetization (pTRM) acquisitions at 250 deg C are also much smaller than predicted. It thus appears that the NRMs are generally magnetically harder than magnetizations acquired after heating to 570 deg C in the laboratory. Susceptibility changes during heating are small (<5%) indicating a seemingly stable magneto-mineralogy, but conspicuous minima occur after heating to 520 deg C. Also, quasi paleointensity experiments reveal characteristic patterns in the NRM/pTRM ratios and also large increases in pTRM capacity after heating to 570 deg C. Moreover, anhysteretic remanent magnetization acquisition in the low field range (<=10 mT) is strongly enhanced after heating by factors up to three. The alteration of the magneto-mineralogy is interpreted to result from the annealing of defects in magnetite that originate from tectonically induced strain. The oceanic gabbros of Hole 735B are thus ideal source layer material for marine magnetic anomalies, and secondary thermoviscous acquisition, as a possible cause for anomalous skewness, is essentially absent.
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 Elevation: -720.6 m * Maximum Elevation: -720.6 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:
viscosity coefficients S at temperatures between 20 deg and 550 deg C normalized by initial magnetization at 10 s after field removal M (10 s). Sample 176-735B-153R-6,64 at 550 deg C 50 µT and at 525 deg C 25 µT
Parameter(s):
#NameShort NameUnitPrincipal InvestigatorMethod/DeviceComment
1Sample code/labelSample labelWorm, Horst-UlrichDSDP/ODP/IODP sample designation
2NRM, IntensityInten (NRM)mA/mWorm, Horst-Ulrich
3FactorFactorWorm, Horst-UlrichQ-factor = ratio of remanent to induced magnetization
4Viscosity coefficientSWorm, Horst-Ulrich550 deg C, 1
5Viscosity coefficientSWorm, Horst-Ulrich550 deg C, 2
6Viscosity coefficientSWorm, Horst-Ulrich525 deg C
7Viscosity coefficientSWorm, Horst-Ulrich500 deg C
8Viscosity coefficientSWorm, Horst-Ulrich450 deg C
9Viscosity coefficientSWorm, Horst-Ulrich400 deg C
10Viscosity coefficientSWorm, Horst-Ulrich300 deg C
11Viscosity coefficientSWorm, Horst-Ulrich200 deg C
12Viscosity coefficientSWorm, Horst-Ulrich120 deg C
13Viscosity coefficientSWorm, Horst-Ulrich25 deg C
Size:
30 data points

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