REFERENCES

Bourlange, S., Henry, P., Moore, J.C., Mikada, H., and Klaus, A., 2003. Fracture porosity in the décollement zone of Nankai accretionary wedge using logging while drilling resistivity data. Earth Planet. Sci. Lett., 209:103–112.

Brace, W.F., Walsh, J.B., and Frangos, W.T., 1968. Permeability of granite under high pressure. J. Geophys. Res., 80:2225–2236.

Byerlee, J., 1978. Friction of rocks. Pure Appl. Geophys., 116:615–626.

Byrne, T., Maltman, A., Stephenson, E., Soh, W., and Knipe, R., 1993. Deformation structures and fluid flow in the toe region of the Nankai accretionary prism. In Hill, I.A., Taira, A., Firth, J.V., et al., Proc. ODP, Sci. Results, 131: College Station, TX (Ocean Drilling Program), 83–101.

Dahlen, F.A., 1984. Non-cohesive critical Coulomb wedges: an exact solution. J. Geophys. Res., 89:10125–10133.

Jaeger, J.C., 1959. The frictional properties of joints in rock. Geofis. Pura Appl., 43:148–158.

Jouniaux, L., Lallemant, S., and Pozzi, J.-P., 1994. Changes in the permeability, streaming potential and resistivity of a claystone from the Nankai prism under stress. Geophys. Res. Lett., 21:149–152.

Jouniaux, L., and Pozzi, J.-P., 1995. Streaming potential and permeability on saturated sandstones under triaxial stress: consequences for electrotelluric anomalies prior to earthquakes. J. Geophys. Res., 100:10197–10209.

Karig, D.E., 1993. Reconsolidation tests and sonic velocity measurements of clay-rich sediments from the Nankai Trough. In Hill, I.A., Taira, A., Firth, J.V., et al., Proc. ODP, Sci. Results, 131: College Station, TX (Ocean Drilling Program), 247–260.

Kopf, A., and Brown, K.M., 2003. Friction experiments on saturated sediments and their implications for the stress state of the Nankai and Barbados subduction thrusts. Mar. Geol., 202:193–210.

Logan, J.M., and Rauenzahn, K.A., 1987. Frictional dependence of gouge mixtures of quartz and montmorillonite on velocity, composition and fabric. Tectonophysics, 144:87–108.

Moore, G.F., Taira, A., Klaus, A., et al., 2001. Proc. ODP, Init. Repts., 190 [CD-ROM]. Available from: Ocean Drilling Program, Texas A&M University, College Station TX 77845-9547, USA. [HTML version]

Moore, G.F., Taira, A., Klaus, A., and Leg 190 Scientific Party, 2001. New insights into deformation and fluid flow processes in the Nankai Trough accretionary prism: results of Ocean Drilling Program Leg 190. Geochem. Geophys. Geosyst., 2:10.1029/2001GC000166.

Moran, K., Brückmann, W., Feeser, V., and Campanella, R.G., 1993. In-situ stress conditions at Nankai Trough, Site 808. In Hill, I.A., Taira, A., Firth, J.V., et al., Proc. ODP, Sci. Results, 131: College Station, TX (Ocean Drilling Program), 283–291.

Morrow, C., Radney, B., and Byerlee, J., 1992. Frictional strength and the effective pressure law of montmorillonite and illite clays. In Evans, B., and Wong, T.F. (Eds.), Fault Mechanics and Transport Properties of Rocks: San Diego, CA (Academic Press), 69–88.

Saffer, D.M., Fye, K.M., Marone, C., and Mair, K., 2001. Laboratory results indicating complex and potentially unstable frictional behavior of smectite clay. Geophys. Res. Lett., 28:2297–2300.

Screaton, E., Saffer, D., Henry, P., Hunze, S., et al., 2002. Porosity loss within the underthrust sediments of the Nankai accretionary complex: implications for overpressures. Geology, 30:19–22.

Taylor, E., and Fisher, A., 1993. Sediment permeability at the Nankai accretionary prism, Site 808. In Hill, I.A., Taira, A., Firth, J.V., et al., Proc. ODP, Sci. Results, 131: College Station, TX (Ocean Drilling Program), 235–245.