Background Image
Table of Contents Table of Contents
Previous Page  56 / 96 Next Page
Information
Show Menu
Previous Page 56 / 96 Next Page
Page Background

FROZEN HEAT

56

Kang, N.K. Yoo, D.G., Ryu, B.J., and Lee, S.R. (2011). Seismic chimneys

associated with gas hydrates in the Ulleung Basin, East Sea of Korea.

Proceedings of the 7th International Conference on Gas Hydrates

(ICGH 2011), Edinburgh, Scotland, United Kingdom, July 17-21, 2011.

Kastner, M., Kvenvolden, K.A., Whiticar, M.J., Camerlenghi, A., and

Lorenson, T.D., (1995). Relation between pore fluid chemistry and gas

hydrate associated with bottom-simulating reflectors at the Cascadia

Margin, Sites 889 and 892. Proceedings of the ODP, Scientific

Results, 146 (Part 1), College Station, TX, 175-187.

Kleinberg, R.L., Flaum, C. and Collett, T.S. (2005). Magnetic resonance

log of JAPEX/JNOC/GSC

et al.

Mallik 5L-38 gas hydrate production

research well: gas hydrate saturation, growth habit, and relative

permeability. In: Scientific Results from the Mallik 2002 Gas Hydrate

Production Research Well Program, Mackenzie Delta, Northwest

Territories, Canada. (Dallimore, S.R. and Collett, T.S. eds.), Geological

Survey of Canada, Bulletin 585.

Klauda, J.B. and Sandler, S.I. (2005). Global distribution of methane

hydrate in ocean sediment. Energy Fuels 19, 459-470

Kuuskraa, V. and Schmoker, J. (1998). Diverse gas plays lurk in gas

resource pyramid. Oil and Gas Journal, June 8, 1998, 123-130.

Kurihara, M., Sato, A., Ouchi, H., Narita, H., Ebinuma, T., Suzuki, K.,

Masuda, Y., Saeki, T., Yamamoto, K., Fujii, T. (2010). Prediction of

production test performances in eastern Nankai Trough methane

hydrate reservoirs using 3-D reservoir model. Proceedings, Offshore

Technology Conference, 3-6th May 2010, Houston, Texas. 19382.

Kvenvolden, K.A. (1988). Methane hydrate – A major reservoir of carbon

in the shallow geosphere? Chem. Geol. 71, 41-51

Kvenvolden, K.A. (1991). A review of Arctic gas hydrates as a source of

methane in global change. The International Conference on the Role

of the Polar Regions in Global Change, pp. 696-701. Geophysical

Institute and Center for Global Change and Arctic System Research,

University of Alaska, Fairbanks.

Kvenvolden, K.A. and Claypool, G.E. (1988). Gas hydrates in oceanic

sediment. USGS Open-File Report Report No. 88-216.

Lee, M. and Collett, T. (2009). Gas hydrate saturations estimated from

fractured reservoir at site NGHP-01-10, Krishna-Godovari basin,

India. Journal of Geophysical Research 114.

Lee, M., Agena, W., Collett, T. and Inks, T. (2011). Pre- and post-drill

comparison of the Mount Elbert gas hydrate prospect, Alaska North

Slope. J. Marine and Petroleum Geology 28, 578-588.

Lee, J.H., Baek, Y.S., Ryu, B.J., Riedel, M. and Hyndman, R.D. (2005). A

seismic survey to detect natural gas hydrate in the East Sea of Korea.

Marine Geophysical Researches 26, 51–59. doi: 10.1007/s11001-005-

6975-4.

Lee, S.R., Kim, D.S., Ryu, B.J., Bahk, J.J., Yoo, D.G., Kim, G.Y., Lee,

J.Y., Yi, J.S., Collett, T.S., Riedel, M., Torres, M.E., and UBGH2

scientists, (2011). Recent developments of gas hydrate program in

Korea: Ulleung basin gas hydrate drilling expedition 2 (UBGH2).

Proceedings of the 7th International Conference on Gas Hydrates

(ICGH 2011), Edinburgh, Scotland, United Kingdom, July 17-21, 2011.

Li, G., Moridis, G., Zhang, K., Li, X-S. (2010). Evaluation of gas

production potential form marine gas hydrate deposits in the Shenhu

area of South China Sea. Energy and Fuels 24, 6018-6033.

Long, P., Holland, M., Schultheiss, P., Riedel, M., Weinberger, J., Tréhu,

A. and Schaef, H. (2010). Infrared (IR) Imaging of gas hydrate-

bearing cores: State-of-the-art and future prospects. In: Geophysical

Characterization of Gas Hydrates (Riedel, Willoughby and Chopra,

eds.), Geophysical Development No. 14, Society of Exploration

Geophysicists.

MacDonald, G. (1990). The future of methane as an energy resource.

Annu. Rev. Energy 15, 53-83

Makogon, Y.F. (1981). Hydrates of natural gas. Penn Well Publishing

Company, Tulsa.

Masters, J. (1979). Deep basin gas trap, western Canada. AAPG Bulletin

63, 152-181.

Masuda, Y., Hariguchi, Y., Konno, Y., Kurihara, M. and Ouchi, H. (2010).

Model calculation on economics of depressurization-induced gas

production from oceanic methane hydrates. Proceedings, Offshore

Technology Conference, Houston, Texas, 3-6 May 2010. OTC-20787.

Mazumdar, A., Dewangan, P., Joäo, H.M., Peketi, A., Khosla, V.R.,

Kocherla, M., Badesab, F.K., Joshi, R.K., Roxanne, P., Ramamurty,

P.B., Karisiddaiah, S.M., Patil, D.J., Dayal, A.M., Ramprasad, T.,

Hawkesworth, C.J., Avanzinelli, R. (2009). Evidence of paleoecold

seep activity from the Bay of Bengal, offshore India. Geochemistry

Geophysics Geosystems 10, Q06005. doi:10.1029/2008GC002337.

McConnell, D., Zhang, Z. and Boswell, R. (2012). Review of progress in

evaluating gas hydrate drilling hazards. J. Mar. Pet. Geol. 34(9), 209-223.

McIver, R.D. (1981). Gas hydrates. In Long Term Energy Resources (R.F.

Meyer and J.C. Olson, eds.). pp. 713-726. Pitman, Boston.

Meyer, R.F. (1981). Speculations on oil and gas resources in small fields

and unconventional deposits. In Long Term Energy Resources (R.F.

Meyer and J.C. Olson, eds.). pp. 49-72. Pitman, Boston

Milkov, A. (2004). Global estimates of hydrate-bound gas in marine

sediments: How much is really out there? Earth-Sci. Rev. 66, 183-197

Milkov, A., Claypool, G.E., Lee, Y.-J., Dickens, G.R., Xu, W., Borowski,

W.S. and the ODP Leg 204 Scientific Party (2003). In situ methane

concentrations at Hydrate Ridge offshore Oregon: New constraints on

the global gas hydrate inventory from an active margin. Geology 31,

833-836.

Moridis, G.. and Sloan, D. (2007). Gas production of disperse, low-

saturation hydrate accumulations in oceanic sediments. Energy

Conservation and Management 48 1834-1849.

Moridis, G., Collett, T., Boswell, R., Kurihara, M., Reagan, M., Koh, C.,

Sloan, E. (2009). Toward production from gas hydrates: current status,

assessment of resources, and simulation-based evaluation of technology

and potential. SPE Reservoir Evaluation and Engineering 12(5).