Deepwater Natural Gas Hydrate Innovation Opportunities

Author:

Max Michael D.,Johnson Arthur H.

Publisher

Springer International Publishing

Reference33 articles.

1. Beckman, J. (2014). Subsea power grid accelerating transfer of topsides functions to the seafloor. Offshore, 74(10), 84–85.

2. Boswell, R., Collett, T. S., Frye, M., Shedd, W., McConnell, D. R., & Shelander, D. (2012a). Subsurface gas hydrates in the northern Gulf of Mexico. Marine and Petroleum Geology, 34, 4–30. https://doi.org/10.1016/j.marpetgeo.2011.10.003 .

3. Boswell, R., Collett, T. S., Frye, M., Shedd, W., McConnell, D. R., & Shelander, D. (2012b). Architecture of gas-hydrate-bearing sands from Walker Ridge 313, Green Canyon 955, and Alaminos Canyon 21: Northern deepwater Gulf of Mexico. Marine and Petroleum Geology, 34, 134–149.

4. Chavez, M., Garcia, G., Pogoson, O., Li, L. Y., Cardona, A., & Nelson, R. (2014). Study aims to enhance ultra-deepwater well design. Offshore 1/22/114. http://www.offshore-mag.com/articles/print/volume-74/issue-1/drilling-and-completion/study-aims-to-enhance-ultra-deepwater-well-design.html . Accessed February 21, 2016.

5. Crager, B. (2014, December 12). Subsea production systems an enabling component of offshore production. Rice Global E&C Forum (Endeavor Management). Figure 2, taken from Offshore Magazine, 53 pp. http://www.forum.rice.edu/wp-content/uploads/2011/06/RT-141212-Crager.pdf . Accessed February 20, 2016.

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