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- W2041014716 abstract "Abstract Recent successful exploration and production programs in deepwater settings worldwide have increased the need to better understand the range of structural and stratigraphic depositional complexities and their impacts on performance and sweep efficiency. As oil and gas companies explore and produce hydrocarbons in deeper water settings, and in their quest to produce hydrocarbons from difficult or unconventional reservoirs, there is a need to develop innovative ways of achieving success and reducing the overall cost – an enabler to remaining competitive and profitable. First generation deep-water production in the Gulf of Mexico was from well imaged, structurally and stratigraphically simple fields, penetrated by multiple wells and producing at high ultimate - high recovery rates with gradual pressure declines. A second-tier of deep-water fields in the Gulf of Mexico, Deep-water Nigeria and Brazil are structurally and stratigraphically complex and are posing more challenges to cost efficient development. A poor initial understanding of the distribution and impact of these heterogeneities has led to unforeseen compartmentalization issues within these second-generation deep-water reservoirs. One of the key challenges in the development of structurally and stratigraphically complex fields is to realistically translate geological and reservoir engineering data into parameters that can be used to assess and mitigate compartmentalization. Many structural and stratigraphic features that do not define pressure compartments prior to production become significant barriers to flow during production, necessitating the drilling of more wells to increase recovery from the field. Clearly the ability to make early predictions on when and where such barriers occur and their effectiveness during a production lifecycle can be key to successfully developing second generation fields in deepwater settings. The importance of answering these questions and realistically characterizing and quantifying structural and stratigraphic heterogeneities has been demonstrated in many deepwater fields. These characterizations have yielded more accurate and better-defined well paths of highly deviated and horizontal wells across faults and different stratigraphies, robust field development plans with clear economic advantages, and successful history matches." @default.
- W2041014716 created "2016-06-24" @default.
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- W2041014716 date "2007-08-06" @default.
- W2041014716 modified "2023-10-18" @default.
- W2041014716 title "Impact of Structural and Stratigraphic Heterogeneities in Deep Water Development" @default.
- W2041014716 cites W2107061443 @default.
- W2041014716 doi "https://doi.org/10.2118/111909-ms" @default.
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