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doi:10.2204/iodp.proc.311.213.2010 ReferencesArchie, G.E., 1942. The electrical resistivity log as an aid in determining some reservoir characteristics. Trans. Am. Inst. Min., Metall. Pet. Eng., 146:54–62. Bekins, B., McCaffrey, A.M., and Dreiss, S.J., 1994. Influence of kinetics on the smectite to illite transition in the Barbados accretionary prism. J. Geophys. Res., [Solid Earth], 99(B9):18147–18158. doi:10.1029/94JB01187 Bekins, B.A., and Dreiss, S.J., 1992. A simplified analysis of parameters controlling dewatering in accretionary prisms. Earth Planet. Sci. Lett., 10(3–4)9:275–287. doi:10.1016/0012-821X(92)90092-A Borowski, W.S., Paull, C.K., and Ussler, W., III, 1996. Marine pore-water sulfate profiles indicate in situ methane flux from underlying gas hydrate. Geology, 24(7):655–658. doi:10.1130/0091-7613(1996)024<0655:MPWSPI>2.3.CO;2 Boswell, R., Hunter, R., Collett, T.S., Digert, S., Hancock, S.H., Weeks, M., and the Mount Elbert Science Team, 2008. Investigation of gas hydrate–bearing sandstone reservoirs at the "Mount Elbert" stratigraphic test well, Milne Point, Alaska. Proc. Int. Conf. Gas Hydrates, 6. https://circle.ubc.ca/handle/2429/1167 Chapman, N.R., Gettrust, J.F., Walia, R., Hannay, D., Spence, G.D., Wood, W.T., and Hyndman, R.D., 2002. High-resolution, deep-towed, multichannel seismic survey of deep-sea gas hydrates off western Canada. Geophysics, 67(4):1038–1047. doi:10.1190/1.1500364 Chen, M.-A.P., 2006. Northern Cascadia marine gas hydrate: constraints from resistivity, velocity, and AVO [M.S. thesis]. Univ. Victoria, British Columbia. Claypool, G.E., Milkov, A.V., Lee, Y.-J., Torres, M.E., Borowski, W.S., and Tomaru, H., 2006. Microbial methane generation and gas transport in shallow sediments of an accretionary complex, southern Hydrate Ridge (ODP Leg 204), offshore Oregon, USA. In Tréhu, A.M., Bohrmann, G., Torres, M.E., and Colwell, F.S. (Eds.), Proc. ODP, Sci. Results, 204: College Station, TX (Ocean Drilling Program), 1–52. doi:10.2973/odp.proc.sr.204.113.2006 Claypool, G.E., Threlkeld, C.N., Mankiewicz, P.N., Arthur, M.A., and Anderson, F.T., 1985. Isotopic composition of interstitial fluids and origin of methane in slope sediment of the Middle America Trench, Deep Sea Drilling Project Leg 84. In von Huene, R., Aubouin, J., et al., Init. Repts. DSDP, 84: Washington (U.S. Govt. Printing Office), 683–691. doi:10.2973/dsdp.proc.84.124.1985 Collett, T.S., and Ladd, J., 2000. Detection of gas hydrate with downhole logs and assessment of gas hydrate concentrations (saturations) and gas volumes on the Blake Ridge with electrical resistivity log data. In Paull, C.K., Matsumoto, R., Wallace, P.J., and Dillon, W.P. (Eds.), Proc. ODP, Sci. Results, 164: College Station, TX (Ocean Drilling Program), 179–191. doi:10.2973/odp.proc.sr.164.219.2000 Collett, T.S., Riedel, M., Cochran, J., Boswell, R., Presley, J., Kumar, P., Sathe, A.V., Sethi, A., Lall, M., Sibal, V., and the NGHP Expedition 01 Scientists, 2008. Indian National Gas Hydrate Program (NGHP) Expedition 01, Initial Report: India (DGH, Ministry of Petroleum and Natural Gas). Colwell, F.S., Boyd, S., Delwiche, M.E., Reed, D.W., Phelps, T.J., and Newby, D.T., 2008. Estimates of biogenic methane production rates in deep marine sediments at Hydrate Ridge, Cascadia margin. Appl. Environ. Microbiol., 74(11):3444–3452. doi:10.1128/AEM.02114-07 Cragg, B.A., Parkes, R.J., Fry, J.C., Weightman, A.J., Rochelle, P.A., and Maxwell, J.R., 1996. Bacterial populations and processes in sediments containing gas hydrates (ODP Leg 146: Cascadia margin). Earth Planet. Sci. Lett., 139(3–4):497–507. doi:10.1016/0012-821X(95)00246-9 Dallimore, S.R., Uchida, T., and Collett, T.S. (Eds.), 1999. Scientific Results from JAPEX/JNOC/GSC Mallik 2L-38 Gas Hydrate Research Well, MacKenzie Delta, Northwest Territories, Canada. Bull.—Geol. Surv. Can, 544. Dickens, G.R., Paull, C.K., and Wallace, P., 1997. Direct measurement of in situ methane quantities in a large gas-hydrate reservoir. Nature (London, U. K.), 385(6615):426–428. doi:10.1038/385426a0 Dickens, G.R., and Snyder, G.T., 2009. Interpreting upward methane flux from marine pore water profiles. Fire Ice, Winter 2009:7–10. Ellis, M., Minshull, T., Sinha, M., and Best, A., 2008. Joint electrical and seismic interpretation of gas hydrate bearing sediments from the Cascadia margin. Eos, Trans. Am. Geophys. Union, 89(53)(Suppl.):OS43F-02. (Abstract) http://www.agu.org/meetings/fm08/waisfm08.html Emrich, K., Ehhalt, D., and Vogel, J.C., 1970. Carbon isotope fractionation during the precipitation of calcium carbonate. Earth Planet. Sci. Lett., 8(5):363–371. doi:10.1016/0012-821X(70)90109-3 Flemings, P.B., Liu, X., and Winters, W.J., 2003. Critical pressure and multiphase flow in Blake Ridge gas hydrates. Geology, 31(12):1057–1060. doi:10.1130/G19863.1 Ginsburg, G., Soloviev, V., Matveeva, T., and Andreeva, I., 2000. Sediment grain-size control on gas hydrate presence, Sites 994, 995, and 997. In Paull, C.K., Matsumoto, R., Wallace, P.J., and Dillon, W.P. (Eds.), Proc. ODP, Sci. Results, 164: College Station, TX (Ocean Drilling Program), 237–245. doi:10.2973/odp.proc.sr.164.236.2000 Goldberg, D., Guerin, G., Malinverno, A., and Cook, A., 2008. Velocity analysis of LWD and wireline sonic data in hydrate-bearing sediments on the Cascadia margin. Proc. Int. Conf. Gas Hydrates, 6. https://circle.ubc.ca/handle/2429/1619 Haacke, R.R., Westbrook, G.K., and Hyndman, R.D., 2007. Gas hydrate, fluid flow and free gas: formation of the bottom-simulating reflector. Earth Planet. Sci. Lett., 261(3–4):407–420. doi:10.1016/j.epsl.2007.07.008 Heuer, V., Pohlman, J., Elvert, M., and Hinrichs, K.-U., 2007. Carbon isotopic compositions of acetate as proxies for biogeochemical processes in gas hydrate bearing sediments. Abstracts of the 17th Annual V. M. Goldschmidt Conference. Geochim. Cosmochim. Acta, 71(15S):A402. http://goldschmidt.info/2007/abstracts/A402.pdf Heuer, V.B., Pohlman, J.W., Torres, M.E., Elvert M., and Hinrichs, K.-U., 2009. The stable carbon isotope biogeochemistry of acetate and other dissolved carbon species in deep subseafloor sediments at the northern Cascadia margin. Geochim. Cosmochim. Acta, 73:3323–3336. doi:10.1016/j.gca.2009.03.001 Hyndman, R.D., and Davis, E.E., 1992. A mechanism for the formation of methane hydrate and seafloor bottom-simulating reflectors by vertical fluid expulsion. J. Geophys. Res., [Solid Earth], 97(B5):7025–7041. doi:10.1029/91JB03061 Hyndman, R.D., Spence, G.D., Chapman, R., Riedel, M., and Edwards, R.N., 2001. Geophysical studies of marine gas hydrate in northern Cascadia. In Paull, C.K., and Dillon, W.P. (Eds.), Natural Gas Hydrates: Occurrence, Distribution, and Detection. Geophys. Monogr., 124:273–295. Hyndman, R.D., Yuan, T., and Moran, K., 1999. The concentration of deep sea gas hydrates from downhole electrical resistivity logs and laboratory data. Earth Planet. Sci. Lett., 172(1–2):167–177. doi:10.1016/S0012-821X(99)00192-2 Iijima, A., and Utada, M., 1966. Zeolites in sedimentary rocks, with references to the depositional environments and zonal distribution. Sedimentology, 7(4):327–357. doi:10.1111/j.1365-3091.1966.tb01299.x Kastner, M., Kvenvolden, K.A., Whiticar, M.J., Camerlenghi, A., and Lorenson, T.D., 1995a. Relation between pore fluid chemistry and gas hydrates associated with bottom-simulating reflectors at the Cascadia margin, Sites 889 and 892. In Carson, B., Westbrook, G.K., Musgrave, R.J., and Suess, E. (Eds.), Proc. ODP, Sci. Results, 146 (Pt. 1): College Station, TX (Ocean Drilling Program), 175–187. doi:10.2973/odp.proc.sr.146-1.213.1995 Kastner, M., Sample, J.C., Whiticar, M.J., Hovland, M., Cragg, B.A., and Parkes, J.R., 1995b. Geochemical evidence for fluid flow and diagenesis at the Cascadia convergent margin. In Carson, B., Westbrook, G.K., Musgrave, R.J., and Suess, E. (Eds.), Proc. ODP, Sci. Results, 146 (Pt. 1): College Station, TX (Ocean Drilling Program), 375–384. doi:10.2973/odp.proc.sr.146-1.243.1995 Kastner, M., Torres, M., Solomon, E., and Spivack, A.J., 2008. Marine pore fluid profiles of dissolved sulfate; do they reflect in situ methane fluxes? Fire Ice, Summer 2008:6–8. Kimura, G., Silver, E.A., Blum, P., et al., 1997. Proc. ODP, Init. Repts., 170: College Station, TX (Ocean Drilling Program). doi:10.2973/odp.proc.ir.170.1997 Lu, Z., Hensen, C., Fehn, U., and Wallmann, K., 2008. Halogen and 129I systematics in gas hydrate fields at the northern Cascadia margin (IODP Expedition 311): insights from numerical modeling. Geochem., Geophys., Geosyst., 9(10):Q10006. doi:10.1029/2008GC002156 Malinverno, A., 2010. Marine gas hydrates in thin sand layers that soak up microbial methane. Earth Planet. Sci. Lett., 292(3–4):399–408. doi:10.1016/j.epsl.2010.02.008 Malinverno, A., Kastner, M., Torres, M.E., and Wortmann, U.G., 2008. Gas hydrate occurrence from pore water chlorinity and downhole logs in a transect across the northern Cascadia margin (Integrated Ocean Drilling Program Expedition 311). J. Geophys. Res., [Solid Earth], 113(B8):B08103. doi:10.1029/2008JB005702 Milkov, A.V., Dickens, G.R., Claypool, G.E., Lee, Y-J., Borowski, W.S., Torres, M.E., Xu, W., Tomaru, H., Tréhu, A.M., and Schultheiss, P., 2004. Co-existence of gas hydrate, free gas, and brine within the regional gas hydrate stability zone at Hydrate Ridge (Oregon margin): evidence from prolonged degassing of a pressurized core. Earth Planet. Sci. Lett., 222(3–4):829–843. doi:10.1016/j.epsl.2004.03.028 Paull, C.K., Lorensen, T.D., Borowski, W.S., Ussler, W., III, Olsen, K., and Rodriguez, N.M., 2000. Isotopic composition of CH4, CO2 species, and sedimentary organic matter within samples from the Blake Ridge: gas source implications. In Paull, C.K., Matsumoto, R., Wallace, P.J., and Dillon, W.P. (Eds.), Proc. ODP, Sci. Results, 164: College Station, TX (Ocean Drilling Program), 67–78. doi:10.2973/odp.proc.sr.164.207.2000 Paull, C.K., and Ussler, W., III, 1997. Are low salinity anomalies below BSRs a consequence of interstitial gas bubble barriers? Eos, Trans. Am. Geophys. Union, 78(46):F339. (Abstract) Pohlman, J.W., Canuel, E.A., Chapman, N.R., Spence, G.D., Whiticar, M.J., and Coffin, R.B., 2005. The origin of thermogenic gas hydrates on the northern Cascadia margin as inferred from isotopic (13C/12C and D/H) and molecular composition of hydrate and vent gas. Org. Geochem., 36(5):703–716. doi:10.1016/j.orggeochem.2005.01.011 Pohlman, J.W., Kaneko, M., Heuer. V., Plummer, R., Coffin, R.B., and the IODP Expedition 311 Scientific Party, 2006. Molecular and isotopic characterization of gases from IODP Expedition 311: source and gas hydrate related controls. Eos, Trans. Am. Geophys. Union, 87(52)(Suppl.):OS11E-06. (Abstract). http://www.agu.org/meetings/fm06/waisfm06.html Pohlman, J.W., Kaneko, M., Heuer, V.B., Coffin, R.B., and Whiticar, M., 2009. Methane sources and production in the northern Cascadia margin gas hydrate system. Earth Planet. Sci. Lett., 287(3–4):504–512. doi:10.1016/j.epsl.2009.08.037 Riedel, M., Spence, G.D., Chapman, N.R., and Hyndman, R.D., 2002. Seismic investigations of a vent field associated with gas hydrates, offshore Vancouver Island. J. Geophys. Res., 107(B9):2200. doi:10.1029/2001JB000269 Riedel, M., Novosel, I., Spence, G.D., Hyndman, R.D., Chapman, N.R., Solem, R.C., and Lewis, T., 2006. Geophysical and geochemical signatures associated with gas hydrate–related venting in the northern Cascadia margin. Geol. Soc. Am. Bull., 118(1):23–38. doi:10.1130/B25720.1 Schowalter, T.T., 1979. Mechanics of secondary hydrocarbon migration and entrapment. AAPG Bull., 63(5):723–760. Suess, E., Torres, M.E., Bohrmann, G., Collier, R.W., Greinert, J., Linke, P., Rehder, G., Tréhu, A., Wallmann, K., Winckler, G., and Zuleger, E., 1999. Gas hydrate destabilization: enhanced dewatering, benthic material turnover and large methane plumes at the Cascadia convergent margin. Earth Planet. Sci. Lett.,170(1–2):1–15. doi:10.1016/S0012-821X(99)00092-8 Teichert, B.M.A., Torres, M.E., Bohrmann, G., and Eisenhauer, A., 2005. Fluid sources, fluid pathways and diagenetic reactions across an accretionary prism revealed by Sr and B geochemistry. Earth Planet. Sci. Lett., 239(1–2):106–121. doi:10.1016/j.epsl.2005.08.002 Tohidi, B., Anderson, R., Clennell, M.B., Burgass, R.W., and Biderkab, A.B., 2001. Visual observation of gas-hydrate formation and dissociation in synthetic porous media by means of glass micromodels. Geology, 29(9):867–870. doi:10.1130/0091-7613(2001)029<0867:VOOGHF>2.0.CO;2 Torres, M.E., Kastner, M., Wortmann, U.G., Colwell, F., and Kim, J., 2007. Estimates of methane production rates based on δ13C of the residual DIC in pore fluids from the Cascadia margin. Eos, Trans. Am. Geophys. Union, 88(52)(Suppl.):GC14A-04. (Abstract) http://www.agu.org/meetings/fm07/waisfm07.html Torres, M.E., Teichert, B.M.A., Tréhu, A.M., Borowski, W., and Tomaru, H., 2004. Relationship of pore water freshening to accretionary processes in the Cascadia margin: fluid sources and gas hydrate abundance. Geophys. Res. Lett., 31:L22305. doi:10.1029/2004GL021219 Torres, M.E., Tréhu, A.M., Cespedes, N., Kastner, M., Wortmann, U.G., Kim, J.-H., Long, P., Malinverno, A., Pohlman, J.W., Riedel, M., and Collett, T., 2008. Methane hydrate formation in turbidite sediments of northern Cascadia, IODP Expedition 311. Earth Planet. Sci. Lett., 271(1–4):170–180. doi:10.1016/j.epsl.2008.03.061 Tréhu, A.M., Bohrmann, G., Rack, F.R., Torres, M.E., et al., 2003. Proc. ODP, Init. Repts., 204: College Station, TX (Ocean Drilling Program). doi:10.2973/odp.proc.ir.204.2003 Uchida, T., Ebinuma, T., and Ishizaki, T., 1999. Dissociation condition measurements of methane hydrate in confined small pores of porous glass. J. Phys. Chem. B, 103(18):3659–3662. doi:10.1021/jp984559l von Huene, R., and Pecher, I.A., 1998. Vertical tectonics and the origins of BSRs along the Peru margin. Earth Planet Sci. Lett., 166(1–2):47–55. doi:10.1016/S0012-821X(98)00274-X Wang, J., 2006. The lithological constraint to gas hydrate formation: evidence of grain size of sediments from IODP 311 on Cascadia margin. Eos, Trans. Am. Geophys. Union, 87(52)(Suppl.):OS33B-1708 (Abstract). http://www.agu.org/meetings/fm06/waisfm06.html Wang, K., Hyndman, R.D., and Davis, E.E., 1993. Thermal effects of sediment thickening and fluid expulsion in accretionary prisms: model and parameter analysis. J. Geophys. Res., [Solid Earth], 98(B6):9975–9984. doi:10.1029/93JB00506 Weinberger, J.L., Brown, K.M., and Long, P.E., 2005. Painting a picture of gas hydrate distribution with thermal images. Geophys. Res. Lett., 32(4):L04609. doi:10.1029/2004GL021437 Westbrook, G.K., Carson, B., Musgrave, R.J., et al., 1994. Proc. ODP, Init. Repts., 146 (Pt. 1): College Station, TX (Ocean Drilling Program). doi:10.2973/odp.proc.ir.146-1.1994 Wortmann, U.G., Chernyavsky, B.M., Torres, M.E., and Kastner, M., 2008. 34S/32S and 18O/16O ratios of dissolved sulfate from interstitial water samples above gas hydrate bearing sediments of IODP Expedition 311, Cascadia. Eos, Trans. Am. Geophys. Union, 89(53)(Suppl.):OS33A-1308. (Abstract) http://www.agu.org/meetings/fm08/waisfm08.html Xu, W., and Ruppel, C., 1999. Predicting the occurrence, distribution, and evolution of methane gas hydrate in porous marine sediments. J. Geophys. Res., [Solid Earth], 104(B3):5081–5096. doi:10.1029/1998JB900092 Yoshioka, H., Maruyama, A., Nakamura, T., Higashi, Y., Fuse, H., Sakata, S., and Bartlett, D.H., 2010. Activities and distribution of methanogenic and methane-oxidizing microbes in marine sediments from the Cascadia margin. Geobiology, 8(3):223–233. doi:10.1111/j.1472-4669.2009.00231.x Yuan, T., Hyndman, R.D., Spence, G.D., and Desmons, B., 1996. Seismic velocity increase and deep-sea gas hydrate concentration above a bottom-simulating reflector on the northern Cascadia continental slope. J. Geophys. Res., [Solid Earth], 101(B6):13655–13671. doi:10.1029/96JB00102 Yuan, T., Spence, G.D., Hyndman, R.D., Minshull, T.A., and Singh, S.C., 1999. Seismic velocity studies of a gas hydrate bottom-simulating reflector on the northern Cascadia continental margin: amplitude modeling and full waveform inversion. J. Geophys. Res., [Solid Earth], 104(B1):1179–1192. doi:10.1029/1998JB900020 |