An Prediction Model of Steam Front of Horizontal Steam Flooding for Thin Heavy Oil Reservoirs
Прогностическая модель фронта пара при горизонтальном паровом заводнении тонких пластов тяжёлой нефти
2018-12-08
SCID: 54.1/k4vwmg3a
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energy and mass conservationhorizontal steam floodingmethod of characteristicssteam frontthin heavy oil reservoirs
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Abstract (AI)
Abstract Steam channeling is an important factor affecting the steam flooding, for thin heavy oil reservoirs, the steam overriding in the vertical direction is not as severe as the thick heavy oil reservoir, and often can form a regular shape of the steam front which can directly reflect the extent of steam overriding. it also can determine the steam swept volume, steam breakthrough time. Therefore, the study of steam front is of great significance. In this paper, a series of works are conducted to study the characteristics of steam front of horizontal steam flooding. Firstly, the equation of steam front and the equation of motion are established. Then, coupled with energy conservation equation and mass conservation equation, a comprehensive model is established. The model is solved with method of characteristics and the predicted results are compared against field data and previous models. The results show that: (a). The new model is applicable to predict different shapes of the steam front according to the production conditions. (b). The comparison between experimental results and model results showed that this new model can predict the steam front well. (c). The comparison of steam front among different shapes indicated that linear-shape was the best, followed by the concave-shape, and the convex-shape was the worst, usually causing severe steam overriding and the severity will increase over time, the development effect can be improved by forming a proper shape of steam front.
Key Findings
1
A comprehensive predictive model of the steam front for horizontal steam flooding in thin heavy oil reservoirs was developed by coupling steam front and motion equations with energy and mass conservation.
2
Among steam-front shapes, linear-shape gives the best development effect, concave-shape is intermediate, and convex-shape is worst, causing increasing steam overriding over time; proper shaping improves development.
3
Comparisons with experimental results show the new model accurately predicts the steam front.
4
The model can predict different steam-front shapes according to production conditions.
5
The model is solved using the method of characteristics and its predictions were validated against field data and previous models.
Research Object
Steam front of horizontal steam flooding in thin heavy oil reservoirs
Research Subject
Prediction model and characteristics of the steam front (shape, propagation, steam overriding, swept volume, breakthrough time) based on coupled mass and energy conservation and equations of motion solved by method of characteristics
Publication Details
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2018-12-08
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