Collective term for Cased-Hole Logging operations performed in with a purpose to inspect the integrity of well completion:

Leak DetectionPipe Defectoscopy Cement Sheath Logging

Bleed-off Testing

Mechanical defectoscopyTemperature Cement Logging

Annulus Pressure Testing

Electromagnetic defectoscopyGamma Density Cement Logging

Leak TracerTesting

Utrasonic defectoscopyAcoustic Cement Bond Logging
Production LoggingOptical Defectoscopy
Temperature Logging

Noise Logging


See Also


Petroleum Industry / Upstream /  Data Acquisition / Well & Reservoir Surveillance / Well logging / Cased-Hole Logging

Well & Log Analysis ] [ Leak Detection ][ Pipe Defectoscopy ][ Cement Sheath Logging ]

References


Richard Bateman, Cased Hole Log Analysis and Reservoir Performance Monitoring, 2015




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O. Bratland, Pipe flow 1. Single-phase Flow Assurance

O. Bratland, Pipe flow 2. Multiphase Flow Assurance

A.M. Ansari, N.D. Sylvester, O. Shoham, J.P. Brill. A Comprehensive Mechanistic Model for Upward Two-Phase Flow in Wellbores. SPE Annual Technical Conference and Exhibition, 23-26 September, New Orleans, Louisiana, 1990.

D.H. Beggs, J.P. Brill. A Study of Two-Phase Flow in Inclined Pipes. Journal of PetroleumTechnology, vol. 25, 1973.

H. Shi, J.A. Holmes, L.R. Diaz, L.J. Durlofsky, K. Aziz. Drift-Flux Parameters for Three-Phase Steady-State Flow in Wellbores. SPE Annual Technical Conference and Exhibition, 26-29 September, Houston, Texas, 2004.

H. Shi, J.A. Holmes, L.J. Durlofsky, K. Aziz, L.R. Diaz, B. Alkaya, G. Oddie. Drift-Flux Modeling of Multiphase Flow in Wellbores. SPE Annual Technical Conference and Exhibition, 5-8 October, Denver, Colorado, 2003.

Y. Nicolas, E.J. Witterholt. Measurements of Multiphase Fluid Flow. Fall Meeting of the Society of Petroleum Engineers of AIME, 8-11 October, San Antonio, Texas, 1972.

Hinze, J.O. 1959. Turbulence, McGraw-Hill Book Co., Inc., New York

S.A. Nikolaev and others, “Sound Generation by Percolation Flows through Porous Media” published in Acoustic Journal, 1992, 38, No. 1, 114–118

Y.M. Zaslavsky, “On the Theory of Acoustical Emission Accompanying Gas Filtration by Partially Fluid-Saturated Medium” published in Technical Acoustics Electronic Journal, http://ejta.org, 2005,

M.J. Lighthill, “On Sound Generated Aerodynamically: Turbulence as a Sound Source”, 1954.

Wang Y, Jin J, Bai B and Wei M, “Study of Displacement Efficiency and Flow Behavior of Foamed Gel in Non-Homogeneous Porous Media”, 2015, PLoS ONE 10(6): e0128414.

SPE 177620-MS Quantification of Reservoir Pressure in Multi-Zone Well under Flowing Conditions Using Spectral Noise Logging Technique, Zubair Reservoir, Raudhatain Field, North Kuwait (2015)

SPE 162081 Spectral noise logging data processing technology (2012)

Arbuzov, A.A., Alekhin, A.P., Bochkarev, V.V., Minakhmetova, R.N., Chukhutin, D.V. and Zakirov, A.N. Memory Pulsed Neutron-Neutron Logging, SPE- 162074, SPE Russian Oil & Gas Exploration & Production Technical Conference and Exhibition, Moscow, Russia, October 16–18, 2012.

Williams M.M.R. Effective diffusion coefficients in heterogeneous media. J. Nucl. Energy, v.26, pp. 189-209, 1972

Crain, E.R., “Crain’s Petrophysical Handbook., at http://www.spec2000.net, Rocky Mountain House, Alberta, Canada, 2013

TERMOSIM Software (https://tgtoil.com/technologies/hpt-high-precision-temperature-logging/itsm/)

Salamatin A., Karuzin A., Aslanyan I., Zaripov I. TERMOSIM Handbook – Kazan, Russia: TGT Oil And Gas Services, 2014. – 320 
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Nelson Suarez, Ademola Otubaga and Nagendra Mehrotra et al. 2013. Complementing Production Logging with Spectral Noise Analysis to Improve Reservoir Characterisation and Surveillance. SPWLA 54 th Annual Symposium held in New Orleans, Louisiana, USA, 22-26 June.

Salim Ghalem, D. Elyes Draoui, Ayman Mahamed et al. 2012. Innovative Noise and High-Precision Temperature Logging Tool for Diagnosing Complex Well Problems. SPE-161712 presented at the Abu-Dhabi International Petroleum Exhibition and Conference held in Abu-Dhabi, UAE, 11-14 November.

A.A. Lutfullin, A.R. Abdrahimov, I.N. Shigapov, I.Yu. Aslanyan, A.M. Aslanyan, R.K. Kuzyutin et al. 2014. Identification of Behind-Casing Flowing Reservoir Intervals by the Integrated High-Precision Temperature and Spectral Noise Logging Techniques. SPE-171251-MS presented at the SPE Russian Oiland Gas Exploration and Production Technical Conference and Exhibition held in Moscow, Russia, 14-16 October.

Arthur Aslanyan, Irina Aslanyan, Andrey Salamatin, Andrey Karuzin, Yulia Fesina et al. 2014. Numerical Temperature Modelling for Quantitative Analysis of Low-Compressible Fluid Production. SPE 172090 presented at the Abu-Dhabi International Petroleum Exhibition and Conference held in Abu-Dhabi, UAE, 10-13 November.

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Ihab, N. M., El-Hamawi, M., Rasheed A.H. Arthur, A.A., Filenev, M., Aslanyan I.Yu., Bargouthi J., Salim, B., Leak Detection By Temperature And Noise Logging. 2012. Abu Dhabi International Petroleum Exhibition & Conference, Abu Dhabi, UAE, 11-14 November.

A.M. Aslanyan, I.Yu. Aslanyan; Yu.S. Maslennikova, R.N. Minakhmetova, S.V. Soroka, R.S. Nikitin, R.R. Kantyukov, Detection of behind-casing gas flows using integrated high-precision temperature logging, spectral noise logging, and pulsed neutron logging toolstring. УДК 550.832.44. Jun 06 2016



TGT WLA Handbook (ru)


Контроль целостности скважинной конструкции (ЦСК) является важной частью процесса обеспечения плановой разрбаотки запасов.

Элементы скважинной конструкции подвергаются агрессивному воздействию давления, температуры и окружающей среды и со временем выходят из строя.

Это приводит к риску возникновения техногенных катастроф, угрозе человеческому здоровью и гигантским эксплуатационным потерям.

Выявление и устранение таких нарушений осуществляется нефтегазовыми активами на повседневной основе и контролируется государственными органами технологического надзора.


Нарушения ЦСК могут приводить к утечкам флюида мимо основной магистрали движения флюида согласно проектной конструкции скважины. 

Также нарушения ЦСК могут находиться в латентном состоянии, тем не менее, в любую минуту способном привести к утечкам.


Нарушения, сопровождаемые утечками, являются наиболее опасными как с точки зрения безопасности, так и с точки зрения эффективности производства.

Поэтому контролю утечек отдается наиболее высокий приоритет.




  1. Детектирование Утечек

  2. Дефектоскопия Труб

  3. Контроль Заколонного Цемента