Abstract
AbstractAs one of the largest discovered gas fields in China, Kela 2 gas field has proven geological reserves of more than 200 billion cubic meters, with a maximum annual gas production of approximately 12 billion cubic meters. After 18 years development, Kela 2 gas field is now in the middle-late development period. At present, the gas field has experienced many development challenges, among which early water flooding and inhomogeneous water invasion are the main reasons for the production decline in Kela 2 gas field. Based on the abundant geological and performance data, a fine 3D geological modeling is built to accurately describe the structure, matrix properties and fracture in Kela 2 gas field, and then analyzes the characteristics and causes of water invasion. The research shows that faults, fractures, high permeability zone and interlayer are the main controlling factors of water invasion in Kela 2 gas field. And the water invasion can be divided into three patterns, (a) Vertical channeling-lateral invasion, (b) Edge water lateral invasion, (c) Bottom water coning. On the basis of water invasion study, development countermeasures are put forward to provide support for long-term stable production and efficient development of Kela 2 gas field.
Reference28 articles.
1. The Virtual Element Method for Discrete Fracture Network Simulations;Benedetto;Computer Methods in Applied Mechanics and Engineering,2014
2. A New 3D Fault Model of the Bouillante Geothermal Province Combining Onshore and Offshore Structural Knowledge (French West Indies);Calcagno;Tectonophysics,2012
3. Constraints Upon Fault Zone Properties by Combined Structural Analysis of Virtual Outcrop Models and Discrete Fracture Network Modelling;Ceccato;Journal of Structural Geology,2021
4. Influence of In-Situ Stress on Water Production in Kela-2 Gas Field,Tarim Basin;Chen;Xinjiang Petroleum Geology,2016
5. Contrastive Study on Geological Characteristics of Cretaceous Bashijiqike Formation in Keshen2 and Kela2 Gas Fields in Kuqa Depression;Chu;Geoscience,2014
Cited by
1 articles.
订阅此论文施引文献
订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献