METHOD FOR MONITORING THE LOCATION OF NON-CONVENTIONAL HYDROCARBON PRODUCTION AND DEVELOPMENT Russian patent published in 2018 - IPC G01V9/00 

Abstract RU 2670703 C9

FIELD: monitoring systems.

SUBSTANCE: invention relates to methods for monitoring underground formation in which non-conventional hydrocarbons are produced. Essence: inert gas diffusion model and target hydrocarbon diffusion model are selected. Each model describes the change in concentration as a function of time, depth and diffusion coefficient. Prior to the production of hydrocarbons, at least one fluid sample present in the zone to be monitored is taken from the soil layer above the underground formation. Composition of at least one inert gas is measured within the sample. During and/or after production of hydrocarbons, at least one second fluid sample present in the zone to be monitored is taken. Concentration of inert gas within the second sample is measured. Wherein the second sample is taken and the concentration of inert gas is measured within said sample repeatedly at different times. When the concentration of inert gas increases, the effective diffusion coefficient of the inert gas diffusion model is modified so that the inert gas diffusion model is coherent with the measurements. Relationship between the diffusion coefficient and the modified diffusion coefficient is derived. Resultant relationship to the diffusion model of the target hydrocarbon present in the zone to be monitored is used.

EFFECT: reduced environmental effect.

9 cl, 4 dwg

Similar patents RU2670703C9

Title Year Author Number
METHOD AND SYSTEM FOR RESERVOIR SURVEILLANCE UTILISING CLUMPED ISOTOPE AND/OR NOBLE GAS DATA 2012
RU2613219C2
SURVEY METHOD AND SYSTEM FOR DETECTION OF HYDROCARBONS 2012
  • Pottorf Robert Dzh.
  • Louson Majkl
  • Mej Stiven R.
  • Drejfus Sebasten L.
  • Raman Sumatkhi
  • Bond Uillyam
  • Srnka Leonard Dzh.
  • Myurer Uillyam P.
  • Pauell Uillyam G.
  • Rudolf Kurt U.
  • Vandeuoter Kristofer
  • Cherni Deniel
  • Ertas Mekhmet D.
  • Robinson Ameliya
  • Regberg Aaron B.
  • N'Gessan A. Lyusi
RU2593438C2
PRODUCTION SIMULATION METHOD AND SYSTEM 2012
  • Chuprakov Dmitry Arefievich
  • Prioul Romain Charles Andre
  • Weng Xiaowei
  • Kresse Olga
  • Gu Hongren
RU2567067C1
METHOD OF CARBON DIOXIDE RECOVERY IN AQUIFER 2012
  • Barenbaum Azarij Aleksandrovich
  • Zakirov Sumbat Nabievich
  • Zakirov Ehrnest Sumbatovich
  • Serebrjakov Vladimir Aleksandrovich
RU2514076C2
METHOD OF SURVEYING AND SYSTEM FOR DETECTION OF HYDROCARBONS USING UNDERWATER VEHICLE 2012
  • Pottorf Robert Dzh.
  • Louson Majkl
  • Mej Stiven R.
  • Drejfus Sebasten L.
  • Raman Sumatkhi
  • Bond Uillyam
  • Srnka Leonard Dzh.
  • Myurer Uillyam P.
  • Pauell Uillyam G.
  • Rudolf Kurt U.
  • Vandeuoter Kristofer Dzh.
  • Cherni Deniel
  • Ertas Mekhmet D.
  • Robinson Ameliya K.
  • Regberg Aaron B.
  • N'Gessan A. Lyusi
RU2608344C2
METHOD FOR EXTRACTING A FORMATION OF HYDROCARBONS 2005
  • Trofimov Aleksandr Sergeevich
  • Leonov Vasilij Aleksandrovich
  • Krivova Nadezhda Rashitovna
  • Zarubin Andrej Leonidovich
  • Sajfutdinov Farid Khakimovich
  • Galiev Fatykh Faritovich
  • Platonov Igor' Evgen'Evich
  • Leonov Il'Ja Vasil'Evich
RU2292453C2
METHOD OF ACID TREATMENT OF UNDERGROUND BEDS 1994
  • Vivian Mouzes
  • Ral'F Kharris
RU2122633C1
OIL AND GAS, SHALE AND COAL DEPOSIT DEVELOPMENT METHOD 2012
  • Linetskij Aleksandr Petrovich
RU2518581C2
MEHTOD FOR OBTAINING HYDROCARBONS FROM ROCK RICH IN ORGANIC COMPOUNDS 2001
  • Passi Kvinn R.
  • Tomas Mishel' M.
  • Bokhaks Kevin M.
RU2263774C2
FOAM-MEDIATED DISPLACEMENT OF OIL 1998
  • Vang Demin
RU2190091C2

RU 2 670 703 C9

Authors

Garsiya Bryuno

Dates

2018-10-24Published

2015-04-06Filed