Study of hydraulic features of modern borehole sucker rod pumps design and their systematization by the criterion of hydraulic resistance
UDC: 332.685
DOI: -
Authors:
ALLAKHVERDIEV Z.S.
1,
KAZYMOVA L.A.
1
1 Azerbaijan State University of Oil and Industry, Baku, Republic of Azerbaijan
Keywords: oil production, borehole pump, valve, plunger, unit
Annotation:
The authors of the article present the results of the comprehensive study of hydraulic resistance in the suction system (the "suction valve-cylinder" unit), discharge (the "plunger-discharge valve" unit) of HCH1, HCH2 and HCB1 industrial borehole pumps with nominal diameters of 28, 32, 43 and 55 mm. The hydraulic resistance of the plunger-discharge valve unit of various designs used in borehole pumps of the HCH1, HCH2, and HCB1 types is investigated. Particular attention is paid to the analysis of borehole pumps hydraulic resistance of the HCH1, HCH2, type with nominal diameters of 28, 32, 43 and 55 mm with a valve unit with one and two balls, and borehole pumps of the HCB1 type with nominal diameters of 28, 32, 43, 55 mm with one and duplicated valve units.
Bibliography:
1. Abdullaev A.I., Al'bers A., Nadzhafov A.M. Otsenka inertsionnykh nagruzok v novom konstruktivnom reshenii mekhanicheskogo privoda shtangovykh nasosov // Azerbaydzhanskoe neft. khoz-vo. – 2006. – № 9. – S. 46–49.
2. Antipin Yu.V., Gil'mutdinov B.R., Musin R.R. Povyshenie effektivnosti ekspluatatsii skvazhin pri dobyche serovodorodsoderzhashchey produktsii // Neft. khoz-vo. – 2006. – № 12. – S. 118–121.
3. Allakhverdiev Z.S., Ismaylova L.A. Sily treniya mezhdu paroy plunzher–tsilindr v deformirovannom skvazhinnom shtangovom nasose // Str-vo neftyanykh i gazovykh skvazhin na sushe i na more. – 2023. – № 3(363). – S. 53–61. – DOI: 10.33285/0130-3872-2023-3(363)-53-61
4. Voronin N.A. Otsenka ostatochnykh napryazheniy v pokrytiyakh "tverdykh" topokompozitov metodom povtornogo mikroindentirovaniya // Problemy mashinostroeniya i nadezhnosti mashin. – 2023. – № 1. – S. 38–47. – DOI: 10.31857/S0235711923010145
5. Dregotesku N.D. Glubinno-nasosnaya dobycha nefti / per. s rum. P.A. Petrova; pod red. M.A. Geymana. – M.: Nedra, 1966. – 418 s.
6. Kaplan L.S. Operator po dobyche nefti i poputnogo gaza. – Ufa, 2005. – 553 s.
7. Yasashin V.A., Gimaeva I.F. Otsenka kachestvennykh kharakteristik neftyanogo struynogo nasosa // Oborudovanie i tekhnologii dlya neftegazovogo kompleksa. – 2021. – № 6(126). – S. 9–16. – DOI: 10.33285/1999-6934-2021-6(126)-9-16
8. Kerimov O.M. Povyshenie rabotosposobnosti i ekspluatatsionnykh pokazateley skvazhinnykh shtangovykh nasosov. – Baku: Maarif, 1999. – 222 s.
9. Kerimov O.M., Allakhverdiev Z.S. K voprosu razrusheniya poverkhnostnogo sloya pary plunzher-tsilindr SShN // Sovremennye metody issled. i preduprezhdeniya korrozionnykh razrusheniy: materialy chetvertoy mezhdunar. shk.-seminara. – Izhevsk: Udmurt. un-t, 2003. – S. 1–3.
10. Kerimov O.M., Allakhverdiev Z.S. K voprosu abrazivnogo iznosa sopryazheniya tipa pary plunzher-tsilindr // Khimiya tverdogo tela i sovremennye mikro- i nanotekhnologii: tez. dokl. mezhdunar. nauch. konf. – Kislovodsk, 2002. – S. 282–283.
11. Kerimov O.M., Allakhverdiev Z.S., Kasymova S.K. Issledovanie plasticheskoy deformatsii v pare sedlo-sharik skvazhinnogo shtangovogo nasosa // Str-vo neftyanykh i gazovykh skvazhin na sushe i na more. – 2010. – № 3. – S. 32–34.