Matches in SemOpenAlex for { <https://semopenalex.org/work/W2738409711> ?p ?o ?g. }
Showing items 1 to 55 of
55
with 100 items per page.
- W2738409711 abstract "Abstract The purpose of this paper is to assess the technological efficiency of methods for increasing condensate recovery from the Achimov deposits of the Urengoy Oil and Gas Condensate Field (Аch52-3 reservoir within the East Urengoy License Area). The distinctive features of the Achimov reservoirs are the low permeability (of the order of 1 mD) and abnormally high initial reservoir pressure (≈ 600 atm.). The technological performance was simulated using the ECLIPSE 300 composite flow model. To simulate the condensate recovery improvement methods at one of the Аch52-3 sections, the authors selected a development element the average parameters of which corresponded to the parameters of a full-scale model. The performance of various methods was evaluated by comparing the selected methods to the baseline scenario, which represents a traditional gas development process, i.e. the depletion. The methods for maintaining reservoir pressure by injecting various agents into the reservoir were considered as alternative scenarios for reservoir engineering: dry gas (cycling), nitrogen, water, WAG. In addition, the optimal ratio of injection and production wells, the voidage replacement, and gas recovery rate were selected. The economic efficiency of various development scenarios was estimated using an economic model. The complex approach was used to rank the options, taking into account both the technological results (gas / condensate recovery ratios) and economic indicators (NPV, state discounted revenue). The results of the studies on condensate recovery improvement confirm the technological applicability of unconventional technologies for the development of gas condensate fields, in particular, injection of nitrogen into the reservoir. These technologies make it possible to achieve a relative increase in condensate recovery by 40-50% compared to the baseline scenario. On the other hand, under current macroeconomic conditions, the conventional depletion method for gas-condensate recovery remains more attractive." @default.
- W2738409711 created "2017-07-31" @default.
- W2738409711 creator A5006126841 @default.
- W2738409711 creator A5024103637 @default.
- W2738409711 creator A5089039956 @default.
- W2738409711 date "2017-10-16" @default.
- W2738409711 modified "2023-09-23" @default.
- W2738409711 title "Study of the Efficiency of Methods for Enhanced Condensate Recovery, Based on Reservoir Simulation Models" @default.
- W2738409711 cites W2087378426 @default.
- W2738409711 doi "https://doi.org/10.2118/187855-ms" @default.
- W2738409711 hasPublicationYear "2017" @default.
- W2738409711 type Work @default.
- W2738409711 sameAs 2738409711 @default.
- W2738409711 citedByCount "0" @default.
- W2738409711 crossrefType "proceedings-article" @default.
- W2738409711 hasAuthorship W2738409711A5006126841 @default.
- W2738409711 hasAuthorship W2738409711A5024103637 @default.
- W2738409711 hasAuthorship W2738409711A5089039956 @default.
- W2738409711 hasConcept C127313418 @default.
- W2738409711 hasConcept C2778668878 @default.
- W2738409711 hasConcept C39432304 @default.
- W2738409711 hasConcept C41008148 @default.
- W2738409711 hasConcept C78762247 @default.
- W2738409711 hasConceptScore W2738409711C127313418 @default.
- W2738409711 hasConceptScore W2738409711C2778668878 @default.
- W2738409711 hasConceptScore W2738409711C39432304 @default.
- W2738409711 hasConceptScore W2738409711C41008148 @default.
- W2738409711 hasConceptScore W2738409711C78762247 @default.
- W2738409711 hasLocation W27384097111 @default.
- W2738409711 hasOpenAccess W2738409711 @default.
- W2738409711 hasPrimaryLocation W27384097111 @default.
- W2738409711 hasRelatedWork W1487076507 @default.
- W2738409711 hasRelatedWork W2000152491 @default.
- W2738409711 hasRelatedWork W2016848616 @default.
- W2738409711 hasRelatedWork W2021646990 @default.
- W2738409711 hasRelatedWork W2080271003 @default.
- W2738409711 hasRelatedWork W2090392944 @default.
- W2738409711 hasRelatedWork W2100328466 @default.
- W2738409711 hasRelatedWork W2105837217 @default.
- W2738409711 hasRelatedWork W2172607480 @default.
- W2738409711 hasRelatedWork W2254195501 @default.
- W2738409711 hasRelatedWork W2367140515 @default.
- W2738409711 hasRelatedWork W2387375802 @default.
- W2738409711 hasRelatedWork W2919445210 @default.
- W2738409711 hasRelatedWork W2952946953 @default.
- W2738409711 hasRelatedWork W2999733504 @default.
- W2738409711 hasRelatedWork W3129729961 @default.
- W2738409711 hasRelatedWork W3203341278 @default.
- W2738409711 hasRelatedWork W860736121 @default.
- W2738409711 hasRelatedWork W2065691093 @default.
- W2738409711 hasRelatedWork W2959446089 @default.
- W2738409711 isParatext "false" @default.
- W2738409711 isRetracted "false" @default.
- W2738409711 magId "2738409711" @default.
- W2738409711 workType "article" @default.