在临时插塞和断裂过程中对自然断裂的固相插塞的关键不稳定条件的分析
Jianping Zhou1, Gaojie Fan1, Guohan Li1
1PetroChina Tarim Oilfield Company, Korla 841000, China.
ACS omega
|August 26, 2024
概括
固体堵塞技术稳定了深层页岩水库中的自然断裂,防止流体损失和建筑风险,如沙子堵塞. 这项研究模拟了堵塞区域的稳定性,这对于优化液压压裂效率至关重要.
科学领域:
- 石油工程是石油工程中的一个.
- 地质力学 地质力学
- 储水库工程 储水库工程
背景情况:
- 水力压裂对于非常规的石油和天然气,特别是深层页岩,至关重要.
- 页岩水库中的自然断裂会导致断裂液的流失,减少主要断裂的宽度,并冒着沙子堵塞的风险.
- 有效的固体堵塞自然断裂对于优化断裂设计和刺激至关重要.
研究的目的:
- 引入固体堵塞技术,用于深页岩中自然断层的过控制.
- 建立一个稳定性预测模型,用于自然断裂内的固体堵塞区域.
- 分析堵塞区的不稳定条件并确定关键参数.
主要方法:
- 开发一种稳定性预测模型,用于自然断裂中的固体堵塞区域.
- 基于模拟结果,分析了堵塞区的不稳定性.
- 研究堵塞区透性和不稳定模式 (扩张与剪切滑动) 之间的关系.
主要成果:
- 插电区的不稳定性与透性有关,确定了一个关键值.
- 在临界透度以上,膨胀不稳定性发生;在此值以下或在此值时,剪切滑动不稳定性是可能的.
- 剪切滑动的不稳定性强度取决于堵塞区域的长度,摩擦角度 (粒子和表面) 和孔隙性.
结论:
- 该研究为优化深层页岩水库中压裂施工参数提供了理论基础.
- 了解堵塞区的稳定性是提高裂变流体效率和降低风险的关键.
- 堵塞颗粒和孔隙的摩擦角度是影响剪切不稳定性强度的主要因素.
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