Description of steam chamber shape in heavy oil recovery using 4D microgravity measurement technology
Описание формы паровой камеры при добыче тяжёлой нефти с использованием технологии 4D-микрогравиметрии
2013-06-01
SCID: 54.1/n8j7eh4b
Discuss with AI
4D microgravity measurementsteam assisted gravity drainagesteam chamber shapewavelet transformation
Figures from the paper
Abstract (AI)
4D microgravity measurement is used to study the underground medium, especially underground fluid variation state and process, using repeated measurements of gravity data at different periods. A model of microgravity variation calculation for the Guantao Formation in the Du 84 block of the Liaohe Oilfield was established according to the practical condition of the steam assisted gravity drainage (SAGD) of super heavy oil reservoir. The distribution of residual gravity that reflects the density change of the steam injection layer and heavy oil layer can be obtained using the target area 4D microgravity measured at different periods through wavelet transformation. With −20 μGal as the main anormaly, the variation of steam chamber shape in the steam assisted gravity drainage can be quantitatively described by analyzing the distribution of steam chamber, and drawing the steam chamber overlapping map of two observations. Numerical simulation and well temperature test verified the feasibility of the technology. The result from the technology can be used to adjust steam injection scheme timely according to the morphological changes in the steam chamber, for example, the Gh12 well has got good results, with oil production going up from 65.4 t/d in May 2010 to 82.8 t/d in May 2012 after adjustment of its injection scheme.
Key Findings
1
A 4D microgravity measurement model was established for the Guantao Formation in the Du 84 block to study SAGD in a super heavy oil reservoir.
2
Adjusting steam injection schemes based on the microgravity-derived steam chamber morphology improved production at Gh12 well from 65.4 t/d (May 2010) to 82.8 t/d (May 2012).
3
Numerical simulation and well temperature tests validated the feasibility of the 4D microgravity technique for monitoring steam chamber evolution.
4
Using −20 μGal as the main anomaly, the steam chamber shape and its temporal variation can be quantitatively described by analyzing gravity-derived steam chamber distributions and overlap maps between observations.
5
Wavelet transformation of repeated 4D microgravity data yields residual gravity distributions that reflect density changes in the steam injection and heavy oil layers.
Research Object
Steam chamber in a super heavy oil reservoir (Guantao Formation, Du 84 block, Liaohe Oilfield) during steam-assisted gravity drainage (SAGD)
Research Subject
Temporal-spatial shape and variation of the steam chamber inferred from 4D microgravity measurements (residual gravity distribution, −20 μGal anomaly, overlap maps) to describe steam chamber evolution and guide steam injection adjustments
Publication Details
Publication Date
2013-06-01
Journal
Publisher
ISSN
Open access PDF
Access Type
Author Information
Download PDF
Subscribe to digest