Matches in SemOpenAlex for { <https://semopenalex.org/work/W2066552023> ?p ?o ?g. }
- W2066552023 abstract "Abstract Hydraulic fracturing and horizontal drilling are the two key technologies that have made the development of unconventional shale formations economical. Hydraulic fracturing has been the major and relatively inexpensive stimulation method used for enhanced oil and gas recovery in the petroleum industry since 1949. The multi-stage and multicluster per stage fracture treatments in horizontal wellbores create a large stimulated reservoir volume (SRV) that increases both production and estimated ultimate recovery (EUR). This paper presents a new analytical solution methodology for predicting the behavior of multiple patterned transverse vertical hydraulic fractures intercepting horizontal wellbores. The numerical solution is applicable for finite-conductivity vertical fractures in rectangular shaped reservoirs. The mathematical formulation is based on the method of images with no flow boundaries for symmetrical patterns. An economics procedure is also presented for optimizing transverse fracture spacing and number of fracture stages/clusters to maximize the Net Present Value (NPV) and Discounted Return on Investment (DROI). The advantages of this approximate analytical production solution for multiple finite-conductivity vertical transverse fractures in horizontal wells and corresponding optimization procedure include: 1) the solution is based on fundamental engineering principles, 2) the production and interference of multiple transverse fractures are predicted to a first-order, and 3) it provides the basis for optimizing fracture and cluster spacing based on NPV and DROI, not just initial production rate. The methodology provides a simple way to predict the production behavior (including interaction) and associated economics of multi-stage/multi-cluster transverse fracture spacing scenarios in horizontal wellbores. The high initial production (IP) rates from multiple transverse fractures and the late time production decline as a result of fracture interference is discussed. Numerous examples are presented illustrating the method for optimizing (maximizing NPV and DROI) multiple transverse vertical hydraulic fractures in horizontal wellbores. Application of this technique will help provide the design engineer with a better tool for designing and optimizing multi-stage/multi-cluster transverse hydraulic fractures in horizontal wellbores. The governing production equations and fundamental procedure for NPV and DROI optimization of transverse fractures in a horizontal wellbore are discussed." @default.
- W2066552023 created "2016-06-24" @default.
- W2066552023 creator A5027923250 @default.
- W2066552023 creator A5028014803 @default.
- W2066552023 creator A5073450657 @default.
- W2066552023 creator A5088187296 @default.
- W2066552023 date "2010-02-23" @default.
- W2066552023 modified "2023-10-03" @default.
- W2066552023 title "Optimization of Multiple Transverse Hydraulic Fractures in Horizontal Wellbores" @default.
- W2066552023 cites W1966125237 @default.
- W2066552023 cites W1966803669 @default.
- W2066552023 cites W1980261156 @default.
- W2066552023 cites W1992381571 @default.
- W2066552023 cites W1993075736 @default.
- W2066552023 cites W2000933682 @default.
- W2066552023 cites W2005294821 @default.
- W2066552023 cites W2005964185 @default.
- W2066552023 cites W2006007738 @default.
- W2066552023 cites W2009563554 @default.
- W2066552023 cites W2010603015 @default.
- W2066552023 cites W2021269913 @default.
- W2066552023 cites W2021449099 @default.
- W2066552023 cites W2021724188 @default.
- W2066552023 cites W2029425669 @default.
- W2066552023 cites W2035570582 @default.
- W2066552023 cites W2039997192 @default.
- W2066552023 cites W2041946919 @default.
- W2066552023 cites W2045004955 @default.
- W2066552023 cites W2048780537 @default.
- W2066552023 cites W2049989322 @default.
- W2066552023 cites W2050201367 @default.
- W2066552023 cites W2053562260 @default.
- W2066552023 cites W2056895698 @default.
- W2066552023 cites W2057342974 @default.
- W2066552023 cites W2060371120 @default.
- W2066552023 cites W2062239408 @default.
- W2066552023 cites W2063781260 @default.
- W2066552023 cites W2064696096 @default.
- W2066552023 cites W2067333304 @default.
- W2066552023 cites W2067385148 @default.
- W2066552023 cites W2070848757 @default.
- W2066552023 cites W2079510860 @default.
- W2066552023 cites W2086403242 @default.
- W2066552023 cites W2086531656 @default.
- W2066552023 cites W2090912832 @default.
- W2066552023 cites W2103619555 @default.
- W2066552023 cites W2149287219 @default.
- W2066552023 cites W2160914303 @default.
- W2066552023 cites W4230981436 @default.
- W2066552023 cites W4236173924 @default.
- W2066552023 cites W4301157999 @default.
- W2066552023 doi "https://doi.org/10.2118/131732-ms" @default.
- W2066552023 hasPublicationYear "2010" @default.
- W2066552023 type Work @default.
- W2066552023 sameAs 2066552023 @default.
- W2066552023 citedByCount "137" @default.
- W2066552023 countsByYear W20665520232012 @default.
- W2066552023 countsByYear W20665520232013 @default.
- W2066552023 countsByYear W20665520232014 @default.
- W2066552023 countsByYear W20665520232015 @default.
- W2066552023 countsByYear W20665520232016 @default.
- W2066552023 countsByYear W20665520232017 @default.
- W2066552023 countsByYear W20665520232018 @default.
- W2066552023 countsByYear W20665520232019 @default.
- W2066552023 countsByYear W20665520232020 @default.
- W2066552023 countsByYear W20665520232021 @default.
- W2066552023 countsByYear W20665520232022 @default.
- W2066552023 countsByYear W20665520232023 @default.
- W2066552023 crossrefType "proceedings-article" @default.
- W2066552023 hasAuthorship W2066552023A5027923250 @default.
- W2066552023 hasAuthorship W2066552023A5028014803 @default.
- W2066552023 hasAuthorship W2066552023A5073450657 @default.
- W2066552023 hasAuthorship W2066552023A5088187296 @default.
- W2066552023 hasConcept C127313418 @default.
- W2066552023 hasConcept C127413603 @default.
- W2066552023 hasConcept C154954056 @default.
- W2066552023 hasConcept C187320778 @default.
- W2066552023 hasConcept C66938386 @default.
- W2066552023 hasConcept C78762247 @default.
- W2066552023 hasConceptScore W2066552023C127313418 @default.
- W2066552023 hasConceptScore W2066552023C127413603 @default.
- W2066552023 hasConceptScore W2066552023C154954056 @default.
- W2066552023 hasConceptScore W2066552023C187320778 @default.
- W2066552023 hasConceptScore W2066552023C66938386 @default.
- W2066552023 hasConceptScore W2066552023C78762247 @default.
- W2066552023 hasLocation W20665520231 @default.
- W2066552023 hasOpenAccess W2066552023 @default.
- W2066552023 hasPrimaryLocation W20665520231 @default.
- W2066552023 hasRelatedWork W1966707926 @default.
- W2066552023 hasRelatedWork W1976240542 @default.
- W2066552023 hasRelatedWork W1983991449 @default.
- W2066552023 hasRelatedWork W1992932336 @default.
- W2066552023 hasRelatedWork W1995985617 @default.
- W2066552023 hasRelatedWork W2009563554 @default.
- W2066552023 hasRelatedWork W2011512069 @default.
- W2066552023 hasRelatedWork W2026374846 @default.
- W2066552023 hasRelatedWork W2036400800 @default.
- W2066552023 hasRelatedWork W2050201367 @default.
- W2066552023 hasRelatedWork W2051829219 @default.
- W2066552023 hasRelatedWork W2057342974 @default.