Quantitative prediction of steam channeling based on steam override in horizontal wells cyclic steam stimulation: Mathematical modeling and experimental validation
Количественное прогнозирование парового каналирования на основе парового оверхайда при циклической прогревке горизонтальных скважин: математическое моделирование и экспериментальная валидация
2025-12-24
SCID: 54.1/j7wr8zg7
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3D physical simulationcyclic steam stimulationfoam injectionheated region quantizationhorizontal wellssteam channelingsteam channeling timesteam front positionsteam override
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Abstract (AI)
Cyclic steam stimulation (CSS) is a common method for heavy oil reservoir, but the current research on steam channeling in horizontal wells is limited. This study proposes a novel mathematical model based on steam override to predict steam channeling during the CSS process in horizontal wells, focusing on the quantization of the heated region, steam front edge position, and steam channeling time. The model was validated through a 3D physical simulation experiment. The experimental results were broadly consistent with the theoretical predictions. The study finds that steam channel is an upward-curved wedge shape, making it difficult to mobilize the bottom reservoir. The steam channeling time was predicted to be 10.10 minutes, with an 11.16% error compared to the experimental value of 8.97 minutes. Furthermore, the introduction of foam increased the oil steam ratio from 1.52 to 1.92. Reducing appropriately the steam injection rate, increasing well spacing, and decreasing steam temperature, together with periodic foam injection, can delay steam channeling. In conclusion, the model offers practical insights for steam channel prediction, which can improve the effectiveness of steam injection strategies in heavy oil reservoirs.
Key Findings
1
3D physical simulation experiments broadly validated the model; experimental observations were consistent with theoretical predictions.
2
A novel mathematical model based on steam override predicts heated region, steam front edge position, and steam channeling time during CSS in horizontal wells.
3
Delaying steam channeling can be achieved by appropriately reducing steam injection rate, increasing well spacing, decreasing steam temperature, and periodic foam injection.
4
Introducing foam increased the oil-steam ratio from 1.52 to 1.92.
5
Steam channel forms an upward-curved wedge shape, which makes mobilization of the bottom reservoir difficult.
6
The model predicted steam channeling time of 10.10 minutes, an 11.16% error relative to the experimental value of 8.97 minutes.
Research Object
Steam channeling during cyclic steam stimulation in horizontal wells in heavy oil reservoirs
Research Subject
Quantitative prediction and characterization (heated region quantization, steam front edge position, steam channeling time) of steam override-driven steam channeling using a mathematical model validated by 3D physical experiments, and mitigation effects of operational parameters and foam
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2025-12-24
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