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Steam chamber expanding processes and bottom water invading characteristics during steam flooding in heavy oil reservoirs

机译:蒸汽室扩大工艺和底水侵入在重油储层蒸汽洪水中的探讨特性

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It is very important to quantitatively analyze steam chamber expanding and bottom water invading during steam flooding. Firstly, a novel method was established to identify the moment of water invading based on the energy conservation law. Then, a series of experiments were carried out to research the effect of steam flooding through 3D physical simulation and oil-component analysis. The results showed that water invading was recognized through the inflection point of tangent slope of temperature vs. time. Steam mainly migrated in upper layer and hot water moved downwards into bottom layer. The four stages of steam flooding were corresponding to the growth processes of steam chamber, such as expanding, advancing, channeling and overriding. The ultimate oil recovery factor was only 36.00%. The shape of water coning deformed from a triangle to a trapezoid. Finally, the dimensionless volume of water coning was about 32.29%. During steam flooding, the content of oil components gradually changed due to the effect of distillation. The content of light hydrocarbon was higher at the front of steam chamber. However, heavy components mainly occupied the swept zone of steam flooding. The results are important in exploitation practice aiming at heavy oil reservoirs with bottom water. (c) 2021 Elsevier Ltd. All rights reserved.
机译:非常重要的是在蒸汽泛洪期间定量分析蒸汽室膨胀和底部水侵入。首先,建立了一种新的方法,以确定基于节能法的浇水瞬间。然后,进行了一系列实验,以研究通过3D物理仿真和油组分分析研究蒸汽洪水的影响。结果表明,通过温度与时间的切线坡度的拐点识别出水侵略。蒸汽主要迁移在上层,热水向下移动到底层。蒸汽洪水的四个阶段对应于蒸汽室的生长过程,例如膨胀,推进,引导和覆盖。最终的石油回收率仅为36.00%。从三角形变形的水的形状从三角形变形到梯形。最后,水束的无量纲体积约为32.29%。在蒸汽洪水期间,由于蒸馏的效果,油分的含量逐渐变化。蒸汽室前面的光烃的含量较高。然而,重型成分主要占据蒸汽洪水的扫地区。结果在旨在瞄准底水的重油储层的开发实践中很重要。 (c)2021 elestvier有限公司保留所有权利。

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