By G. Shanmugam
This rock-based e-book is an try and hyperlink deep-water approach sedimentology with sandstone petroleum reservoirs. In offering a constant method interpretation, the writer has trusted his description and interpretation of middle and outcrop (1:20 to 1:50 scale) from 35 case reports (which contain 32 petroleum reservoirs), totaling greater than 30,000 toes (9,145 m), performed in past times 30 years (1974-2004). This booklet should still function an enormous resource of knowledge for college students on heritage, method, first rules, complex techniques, controversies, and useful functions on deep-water sedimentology and petroleum geology * Discusses the hyperlink among deep-water method sedimentology and petroleum geology * Addresses standards for spotting deposits of gravity-driven, thermohaline-driven, wind-driven, and tide-driven tactics in deep-water environments
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Extra info for Deep-Water Processes and Facies Models: Implications for Sandstone Petroleum Reservoirs
2004). Depending on water depths, different types of deep-water development systems are used in the Gulf of Mexico (Fig. 1): (1) Fixed Platform (FP) consists of a jacket with a deck placed on top. It is used for water depths up to 1500 ft (457 m). , 2004) Year of First Production Field or Project 1979 1984 1989 1994 1996 1996 1997 1997 1999 2000 2000 2000 2000 2001 2001 2002 2002 2002 2002 2003 2003 2003 2003 Cognac* Lena Bullwinkle Auger Mars Popeye Ram-Powell Troika Genesis Conger Diana Hoover Europa Nile Typhoon Boomvang Camden Hills King Kong King’s Peak Falcon Herschell/Na Kika Matterhorn Pardner** Operator Shell ExxonMobil Shell Shell Shell Shell Shell BP ChevronTexaco Amarada Hess ExxonMobil ExxonMobil Shell BP ChevronTexaco Kerr McGee Marathon Mariner BP Pioneer Shell TotalFinaElf Anadarko Block Water Depth in ft (m) System Type*** (See Fig.
However, it is not obvious from the graphic column the nature of grading trends. In contrast, a graphic lithologic column combined with expanded grain-size scale shows not only the nature of graded beds but also the exact position of graded bed contacts (Fig. 9). , depositional) sedimentary structures. , Pettijohn and Potter, 1964; Middleton, 1965; Middleton and Bouma, 1973; Middleton and Southard, 1977; Reineck and Singh, 1980; Allen, 1984; Collinson and Thompson, 1982; Harms et. , 1982). In addition to depositional structures, record post-depositional features.
S. ) 28 Deep-water processes and facies models (2) Compliant Tower (CT) consists of a narrow, flexible tower and a piled foundation that can support a conventional deck. It is used for water depths between 1000 and 2000 ft (305–610 m). (3) Tension Leg Platform (TLP) consists of a floating structure held in place by vertical, tensioned tendons connected to the sea floor by pile-secured templates. It is used for water depths approaching 4000 ft (1220 m). (4) Mini-Tension Leg Platform (Mini-TLP) is a low-cost platform developed for production of smaller deep-water reserves that would be uneconomic to produce using conventional TLP.
Deep-Water Processes and Facies Models: Implications for Sandstone Petroleum Reservoirs by G. Shanmugam