首页> 外文会议>SPE Europec featured at EAGE Conference and Exhibition >Development of a Parallel Simulator Utilizing Multiple Interacting Continua and Embedded Discrete Fracture Models in Fractured Unconventional Reservoirs
【24h】

Development of a Parallel Simulator Utilizing Multiple Interacting Continua and Embedded Discrete Fracture Models in Fractured Unconventional Reservoirs

机译:利用多种互动的连续储层利用多种互动连续体和嵌入离散断裂模型的平行模拟器的开发

获取原文

摘要

Unconventional petroleum reservoirs, such as shale gas and tight oil reservoirs, have changed the entire energy equation in the world. An accurate and efficient reservoir simulator is essential for the development and management of these reservoirs and the optimization of their production schedules. However, the gas storage and transport mechanisms in ultra-tight matrix, including gas adsorption/desorption, non-Darcy flow, and surface diffusion, are different from those in conventional petroleum reservoirs. In addition, hydraulic fracturing techniques are often required to achieve their economical production, which leads to existence of complex fracture networks in the unconventional reservoirs. These features of unconventional reservoirs make their accurate numerical simulations a big challenge. In this paper, we develop a simulator for fractured unconventional reservoirs, which takes the specific gas storage and transport mechanisms into consideration, employs a multiple interacting continua (MINC) model to handle well connected natural fractures, utilizes an embedded discrete fracture model to simulate large-scale disconnected hydraulic fractures, and uses a coupled model to efficiently describe multi-scale fractures with irregular geometries. To reduce the computational time, parallel computing techniques are also employed, with which large-scale reservoir simulation cases can be finished in practical time. From the numerical experiments, we can see that reasonable physical phenomena is captured and accurate predictions are performed by this simulator.
机译:非传统的石油储层,如页岩气和狭小的石油储存器,已经改变了世界上的整个能量方程。准确高效的水库模拟器对于这些水库的开发和管理以及其生产计划的优化至关重要。然而,超紧矩阵中的气体储存和传送机制,包括气体吸附/解吸,非达西流动和表面扩散,与传统的石油储存器中的储气流动和表面扩散不同。此外,通常需要液压压裂技术来实现其经济生产,从而导致在非传统水库中存在复杂的骨折网络。非传统水库的这些特征使其准确的数值模拟成为一个大挑战。在本文中,我们开发了一种用于骨折的非传统储层的模拟器,它考虑了特定的气体存储和运输机制,采用多个相互作用的连续体(MINC)模型来处理良好的连接自然骨折,利用嵌入的离散裂缝模型来模拟大-Scale断开的液压骨折,并使用耦合模型,以有效地描述具有不规则几何形状的多尺度骨折。为了减少计算时间,还采用并行计算技术,其中可以在实际时间完成大规模的储层模拟案例。根据数值实验,我们可以看到捕获合理的物理现象,并且通过该模拟器执行准确的预测。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号