Matches in SemOpenAlex for { <https://semopenalex.org/work/W4293241620> ?p ?o ?g. }
Showing items 1 to 66 of
66
with 100 items per page.
- W4293241620 abstract "Abstract Bit hydraulics is an important factor for obtaining proper hole cleaning and optimized drilling rate or rate of penetration (ROP). The drilling engineer and drilling Foreman must be aware about the effect of drilling bit hydraulics on the drilling operation. The knowledge and interpretation of the drilling hydraulics are the keys of acquiring drilling optimization. Understanding the circulating pressure or mud pump pressure that includes pressure loss of surface equipment, pressure loss of drilling string, pressure loss of mud motor, pressure loss of bit and pressure loss of annulus, is so critical. Additionally, a comprehension of hydraulics will help properly to utilize maximum power that is available to drill hole and know the effect on pressure losses. Knowledge from this research will help in modeling drilling bit hydraulics more accurately and therefore optimize rate of penetration. Also, will introduce a new robust rate of penetration model that takes into consideration the effect of drilling bit hydraulics before spud or start drilling hole section. This is the first study to develop such a new methodology and validate for drilling bit hydraulics on rate of penetration in a real time. There are several theoretical methods, and models have been proposed to determine the rate of penetration models that are not applicable in drilling and work-over operations and were not including the influences of drilling rig or bit hydraulics properly. The critical influence to have an optimized rate of penetration is extremely dependent on implementing proper drilling bit hydraulics. Drilling bit hydraulics from same formation section, mud type, rig and bit hydraulics were collected and analyzed to determine their effect on ROP. A strong new model, methodology and strategy were established for optimized bit hydraulics to confirm high drilling rate to reduce the drill time and accelerate wells delivery. Drilling bit hydraulics such as total flow area of nozzles (TFA), jet velocity of nozzles (Vn), pressure loss of bit (dPb), Hydraulic horsepower of bit (HHP), hydraulic horsepower of bit per square inches (HSI), jet impact force (Fj) were considered in this methodology. The methodology confirms optimum well drilling performance that can facilitate to improve the rate of penetration to assist drilling engineers and foremen to reduce the drilling time. Validation of deployment of this model has shown improved rate of penetration by more than 50%." @default.
- W4293241620 created "2022-08-27" @default.
- W4293241620 creator A5029149528 @default.
- W4293241620 creator A5030457016 @default.
- W4293241620 creator A5043686122 @default.
- W4293241620 creator A5046818830 @default.
- W4293241620 creator A5063894925 @default.
- W4293241620 creator A5080526944 @default.
- W4293241620 creator A5086494119 @default.
- W4293241620 date "2022-04-29" @default.
- W4293241620 modified "2023-10-12" @default.
- W4293241620 title "A New Rate of Penetration Model Improves Well Drilling Performance" @default.
- W4293241620 cites W1975330214 @default.
- W4293241620 cites W1981175226 @default.
- W4293241620 cites W2033434342 @default.
- W4293241620 cites W2048116825 @default.
- W4293241620 cites W2058420197 @default.
- W4293241620 cites W2090132397 @default.
- W4293241620 cites W2772477842 @default.
- W4293241620 cites W2779506944 @default.
- W4293241620 cites W4302344771 @default.
- W4293241620 doi "https://doi.org/10.2118/209943-ms" @default.
- W4293241620 hasPublicationYear "2022" @default.
- W4293241620 type Work @default.
- W4293241620 citedByCount "3" @default.
- W4293241620 countsByYear W42932416202023 @default.
- W4293241620 crossrefType "proceedings-article" @default.
- W4293241620 hasAuthorship W4293241620A5029149528 @default.
- W4293241620 hasAuthorship W4293241620A5030457016 @default.
- W4293241620 hasAuthorship W4293241620A5043686122 @default.
- W4293241620 hasAuthorship W4293241620A5046818830 @default.
- W4293241620 hasAuthorship W4293241620A5063894925 @default.
- W4293241620 hasAuthorship W4293241620A5080526944 @default.
- W4293241620 hasAuthorship W4293241620A5086494119 @default.
- W4293241620 hasConcept C127413603 @default.
- W4293241620 hasConcept C146978453 @default.
- W4293241620 hasConcept C152068911 @default.
- W4293241620 hasConcept C169961344 @default.
- W4293241620 hasConcept C25197100 @default.
- W4293241620 hasConcept C2776497017 @default.
- W4293241620 hasConcept C78519656 @default.
- W4293241620 hasConcept C78762247 @default.
- W4293241620 hasConceptScore W4293241620C127413603 @default.
- W4293241620 hasConceptScore W4293241620C146978453 @default.
- W4293241620 hasConceptScore W4293241620C152068911 @default.
- W4293241620 hasConceptScore W4293241620C169961344 @default.
- W4293241620 hasConceptScore W4293241620C25197100 @default.
- W4293241620 hasConceptScore W4293241620C2776497017 @default.
- W4293241620 hasConceptScore W4293241620C78519656 @default.
- W4293241620 hasConceptScore W4293241620C78762247 @default.
- W4293241620 hasLocation W42932416201 @default.
- W4293241620 hasOpenAccess W4293241620 @default.
- W4293241620 hasPrimaryLocation W42932416201 @default.
- W4293241620 hasRelatedWork W1996600066 @default.
- W4293241620 hasRelatedWork W2005651186 @default.
- W4293241620 hasRelatedWork W2006765428 @default.
- W4293241620 hasRelatedWork W2025610623 @default.
- W4293241620 hasRelatedWork W2081743261 @default.
- W4293241620 hasRelatedWork W2350189835 @default.
- W4293241620 hasRelatedWork W2371231022 @default.
- W4293241620 hasRelatedWork W2889691385 @default.
- W4293241620 hasRelatedWork W2926099224 @default.
- W4293241620 hasRelatedWork W4386615157 @default.
- W4293241620 isParatext "false" @default.
- W4293241620 isRetracted "false" @default.
- W4293241620 workType "article" @default.