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Numerical studies of depressurization-induced gas production from an interbedded marine turbidite gas hydrate reservoir model

July 1, 2017

The numerical simulation of thin hydrate-bearing sand layers interbedded with mud layers is investigated. In this model, the lowest hydrate layer occurs at the base of gas hydrate stability and overlies a thinly-interbedded saline aquifer. The predicted gas rates reach 6.25 MMscf/day (1.77 x 105 m3 /day) after 90 days of continuous depressurization with manageable water production. Development of horizontal dissociating interfaces between hydrate-bearing sand and mud layers is a primary determinant of reservoir performance. A set of simulations has been executed to assess uncertainty in in situ permeability and to determine the impact of the saline aquifer on productivity.

Publication Year 2017
Title Numerical studies of depressurization-induced gas production from an interbedded marine turbidite gas hydrate reservoir model
Authors Evgeniy Myshakin, Jeen-Shang Lin, Shun Uchida, Yongkoo Seol, Timothy S. Collett, Ray Boswell
Publication Type Conference Paper
Publication Subtype Conference Paper
Index ID 70189784
Record Source USGS Publications Warehouse
USGS Organization Central Energy Resources Science Center