from    
to    
search  

 


活动预告|碳中和与能源智联(CNEST)前沿讲座第1期
”行业前沿讲堂”第2期——全过程咨询新实践:建设职能杠杆体系原理深度解读
Entanglement islands and cutoff branes from path-integral optimization
【图书馆系列讲座】个人文献管理软件EndNote的功能与使用
报告题目:
Simulation of Unconventional Resources: Shale Gas / Tight Oil Reservoirs
 报告人:
Prof. Kamy Sepehrnoori
Department of Petroleum and Geosystems Engineering 
The University of Texas at Austin
报告时间:
2014-10-29 10:00
报告地点:
化学工程系工物馆326会议室
主办单位:
化学工程系
  简介:
报告人简介:
Kamy Sepehrnoori is a professor in the Department of Petroleum and Geosystems Engineering at The University of Texas at Austin, where he holds the W. A. (Monty) Moncrief Centennial Chair in Petroleum Engineering. His research interest and teaching include computational methods, reservoir simulation, parallel computing, enhanced oil recovery modeling, naturally fractured reservoirs, modeling of asphaltene deposition in reservoirs and wellbores, and unconventional reservoir simulation. He is the director of the Reservoir Simulation Joint Industry Project and the Deputy Director of the Center for Petroleum and Geosystems Engineering. He holds a PhD degree from The University of Texas at Austin.
 
报告摘要:
The economic production of gas and oil from shale reservoirs requires effective stimulation of low-permeability rock through multi-stage hydraulic fracturing in combination with horizontal wells. The process of hydraulic fracturing often creates complex fracture networks, especially in some shale reservoirs with a high brittleness and a large amount of pre-existing natural fractures. However, accurate modeling and simulation of fluid flow from the complex fracture networks is challenging. Hence, we developed an embedded discrete fractuer model (EDFM) for several in-house reservoir simulators, which can handle the complexity and heterogeneity of a typical fractured shale reservoir. Gas desorption effect and geomechanics, i.e., stress-dependent fracture conductivity, are included. Also, we developed an efficient semi-analytical approach to simulate fluid production from shale reservoirs with the complex fracture networks. In addition, there are high cost and uncertainty due to many uncertain parameters. Therefore, quantifying uncertainty and optimization of fracturing design in an efficient and practical way is clearly desirable. For this challenging issue, we present an integratd simulation platform for unconventional reservoirs (ISPUR) by integrating numerical simulation, analytical solution, economic analysis, Design of Experiment (DOE) and Response Surface Methodology (RSM). Specifically, we first use DOE to perform a sensitivity study with purpose of quantifying rank of important factors and screening insignificant ones. Next, we use RSM to perform optimization to obtain the optimal fracturing design and to maximize net present value (NPV). This framework is effective and efficient for hydraulic fracturing design and production scheme optimization in shale reservoirs.
今日相关信息
清华海外名师讲堂第161讲: 未来能源及挑...
IASTU Physics Seminars (biweekly):Qua...
美国UTA石油和地学工程研究生招生宣讲会
 
同类别相关信息
基于选择性断裂惰性键的生物质资源化学
Phase Change-Induced Liquid Droplet...
学堂班系列讲座:“Optics and Photon...
Protein Mechanics: from Single Mole...
化工系膜中心学术论坛-MOF Chemistry:...
学术活动