Expedition 311 summary

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[1]  R. N. Edwards,et al.  Geophysical studies of marine gas hydrate in northern cascadia , 2013 .

[2]  M. Torres,et al.  Fluid sources, fluid pathways and diagenetic reactions across an accretionary prism revealed by Sr and B geochemistry [rapid communication] , 2005 .

[3]  N. Ross Chapman,et al.  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 , 2005 .

[4]  U. Fehn,et al.  Data report: 129I/I ratios and halogen concentrations in pore water of Hydrate Ridge and their relevance for the origin of gas hydrates: A progress report , 2005 .

[5]  W. Borowski,et al.  Relationship of pore water freshening to accretionary processes in the Cascadia margin: Fluid sources and gas hydrate abundance , 2004 .

[6]  W. Borowski,et al.  Gas hydrate growth, methane transport, and chloride enrichment at the southern summit of Hydrate Ridge, Cascadia margin off Oregon , 2004 .

[7]  Wenyue Xu Modeling dynamic marine gas hydrate systems , 2004 .

[8]  Hitoshi Tomaru,et al.  Three-dimensional distribution of gas hydrate beneath southern Hydrate Ridge: Constraints from ODP Leg 204 , 2004 .

[9]  W. Borowski,et al.  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 , 2004 .

[10]  V. Spiess,et al.  Three-dimensional seismic characterization of a venting site reveals compelling indications of natural hydraulic fracturing , 2004 .

[11]  Frank R Rack,et al.  Proceedings of the Ocean Drilling Program, 204 Initial Reports , 2003 .

[12]  N. Chapman,et al.  Decreased stability of methane hydrates in marine sediments owing to phase-boundary roughness , 2002, Nature.

[13]  N. Chapman,et al.  Seismic investigations of a vent field associated with gas hydrates, offshore Vancouver Island , 2002 .

[14]  N. Chapman,et al.  High‐resolution, deep‐towed, multichannel seismic survey of deep‐sea gas hydrates off western Canada , 2002 .

[15]  R. N. Edwards,et al.  The Assessment of Marine Gas Hydrates Through Electrical Remote Sounding: Hydrate Without a BSR? , 2000 .

[16]  R. Hyndman,et al.  THE CONCENTRATION OF DEEP SEA GAS HYDRATES FROM DOWNHOLE ELECTRICAL RESISTIVITY LOGS AND LABORATORY DATA , 1999 .

[17]  Wenyue Xu,et al.  Predicting the occurrence, distribution, and evolution of methane gas hydrate in porous marine sediments , 1999 .

[18]  I. Pecher,et al.  Vertical tectonics and the origins of BSRs along the Peru margin , 1999 .

[19]  S. Dallimore,et al.  Overview of science program, JAPEX/JNOC/GSC Mallik 2L-38 gas hydrate research well , 1999 .

[20]  R. Hyndman,et al.  Seismic velocity studies of a gas hydrate bottom-simulating reflector on the northern Cascadia continental margin: Amplitude modeling and full waveform inversion , 1999 .

[21]  Gerald R. Dickens,et al.  Direct measurement of in situ methane quantities in a large gas-hydrate reservoir , 1997, Nature.

[22]  R. Hyndman,et al.  Seismic velocity increase and deep‐sea gas hydrate concentration above a bottom‐simulating reflector on the northern Cascadia continental slope , 1996 .

[23]  J. Hunt,et al.  Petroleum Geochemistry and Geology , 1995 .

[24]  R. Hyndman The Lithoprobe corridor across the Vancouver Island continental margin: the structural and tectonic consequences of subduction , 1995 .

[25]  M. E. Mackay,et al.  Origin of bottom-simulating reflectors: Geophysical evidence from the Cascadia accretionary prism , 1994 .

[26]  G. Westbrook,et al.  Proceedings of the Ocean Drilling Program, 146 Part 1 Initial Reports , 1994 .

[27]  M. Lee,et al.  Method of estimating the amount of in situ gas hydrates in deep marine sediments , 1993 .

[28]  Kelin Wang,et al.  Thermal constraints on the zone of major thrust earthquake failure: The Cascadia Subduction Zone , 1993 .

[29]  T. Pettigrew Design and Operation of a Wireline Presure Core Sampler (PCS) , 1992 .

[30]  Earl E. Davis,et al.  A mechanism for the formation of methane hydrate and seafloor bottom‐simulating reflectors by vertical fluid expulsion , 1992 .

[31]  R. Hyndman,et al.  A seismic study of methane hydrate marine bottom simulating reflectors , 1992 .

[32]  R. Hyndman,et al.  Accretion and recent deformation of sediments along the northern Cascadia subduction zone , 1989 .

[33]  K. Kvenvolden Methane hydrate — A major reservoir of carbon in the shallow geosphere? , 1988 .

[34]  R. Riddihough Recent movements of the Juan de Fuca Plate System , 1984 .

[35]  Thomas H. Shipley,et al.  Seismic Evidence for Widespread Possible Gas Hydrate Horizons on Continental Slopes and Rises , 1979 .

[36]  T. Lewis,et al.  Geophysical and geochemical signatures associated with gas hydrate–related venting in the northern Cascadia margin , 2006 .

[37]  T. Lorenson,et al.  RELATION BETWEEN PORE FLUID CHEMISTRY AND GAS HYDRATES ASSOCIATED WITH BOTTOM-SIMULATING REFLECTORS AT THE CASCADIA MARGIN , SITES 889 AND , 2006 .

[38]  M. Riedel,et al.  Gas hydrate concentration estimates from chlorinity, electrical resistivity and seismic velocity , 2005 .

[39]  T. Inoue,et al.  Scientific results from the Mallik 2002 gas hydrate production research well program, Mackenzie Delta, northwest territories, Canada: Preface , 2005 .

[40]  E. Pollard,et al.  Overview of Ocean Drilling Program Engineering Tools and Hardware , 2002 .

[41]  M. Riedel 3-D seismic investigations of northern Cascadia marine gas hydrates , 2001 .

[42]  C. Paull,et al.  1. Leg 164 overview , 2000 .

[43]  W. Dillon,et al.  Proceedings of the Ocean Drilling Program, 164 Scientific Results , 2000 .

[44]  W. Borowski,et al.  DETECTION OF METHANE GAS HYDRATE IN THE PRESSURE CORE SAMPLER ( PCS ) : VOLUME-PRESSURE-TIME RELATIONS DURING CONTROLLED DEGASSING EXPERIMENTS , 1999 .

[45]  T. Lorenson GRAPHIC SUMMARY OF GAS HYDRATE OCCURRENCE BY PROXY MEASUREMENTS ACROSS THE BLAKE RIDGE , SITES 994 , 995 , AND 9971 , 1999 .

[46]  M. E. Mackay,et al.  Log-based porosity of ODP sites of the Cascadia accretionary prism , 1995 .

[47]  K. Moran 17. VELOCITY, POROSITY, AND PORE-FLUID LOSS FROM THE NANKAI SUBDUCTION ZONE ACCRETIONARY PRISM1 , 1993 .