深层页岩气流的孔尺度模拟,考虑基于孔网模型的双位兰格穆尔吸附模型
Chaoyang Zhao1,2, Yongfei Yang1,2, Hai Sun1,2
1State Key Laboratory of Deep Oil and Gas, China University of Petroleum (East China), Qingdao 266580, P.R. China.
Langmuir : the ACS journal of surfaces and colloids
|October 15, 2024
概括
本研究使用孔隙网络模型在高温和高压条件下模拟了深层页岩气流动的动态. 它通过整合吸附,滑动流和Knudsen扩散来提高精度,以更好地了解能源资源.
科学领域:
- 石油地质科学 石油地质科学
- 能源工程 能源工程
- 计算流体动力学的流体动力学.
背景情况:
- 深层页岩气储备 (>3500米) 对全球能源至关重要,但面临模拟挑战.
- 现有的孔隙网络模型不足以应对深层页岩气中的高温和高压条件.
研究的目的:
- 在纳米限制下模拟深层页岩气的微尺度流动力学.
- 为了准确地建模深层页岩水库中的气体流动行为.
主要方法:
- 利用一个孔网络模型,结合吸附,滑动流,Knudsen扩散和散体流.
- 采用双位点的朗迈尔吸附模型,优化适用于高温和高压条件.
- 研究了甲流动力学,专注于有效的扩散系数和透性.
主要成果:
- 双站点的兰格穆尔模型准确计算了深层页岩的吸附相位气体导电性.
- 模拟显示了在不同水和度,温度和压力下甲流动的特性.
- 对深层页岩气的有效扩散系数和透性进行了分析.
结论:
- 修改后的孔网模型提供了更准确的表现深层页岩气流动力学.
- 这项研究提高了对挑战深水库环境中的气体运输机制的理解.
- 这些发现对于优化页岩气勘探和生产战略至关重要.
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