Numerical simulation of Class 3 hydrate reservoirs exploiting using horizontal well by depressurization and thermal co-stimulation

2014 ◽  
Vol 77 ◽  
pp. 298-305 ◽  
Author(s):  
Shengwen Yang ◽  
Xuemei Lang ◽  
Yanhong Wang ◽  
Yonggang Wen ◽  
Shuanshi Fan
Energy ◽  
2021 ◽  
pp. 122932
Author(s):  
Lin Dong ◽  
Yizhao Wan ◽  
Yanlong Li ◽  
Hualin Liao ◽  
Changling Liu ◽  
...  

Author(s):  
Yingzhong Yuan ◽  
Wende Yan ◽  
Fengbo Chen ◽  
Jiqiang Li ◽  
Qianhua Xiao ◽  
...  

AbstractComplex fracture systems including natural fractures and hydraulic fractures exist in shale gas reservoir with fractured horizontal well development. The flow of shale gas is a multi-scale flow process from microscopic nanometer pores to macroscopic large fractures. Due to the complexity of seepage mechanism and fracture parameters, it is difficult to realize fine numerical simulation for fractured horizontal wells in shale gas reservoirs. Mechanisms of adsorption–desorption on the surface of shale pores, slippage and Knudsen diffusion in the nanometer pores, Darcy and non-Darcy seepage in the matrix block and fractures are considered comprehensively in this paper. Through fine description of the complex fracture systems after horizontal well fracturing in shale gas reservoir, the problems of conventional corner point grids which are inflexible, directional, difficult to geometrically discretize arbitrarily oriented fractures are overcome. Discrete fracture network model based on unstructured perpendicular bisection grids is built in the numerical simulation. The results indicate that the discrete fracture network model can accurately describe fracture parameters including length, azimuth and density, and that the influences of fracture parameters on development effect of fractured horizontal well can be finely simulated. Cumulative production rate of shale gas is positively related to fracture half-length, fracture segments and fracture conductivity. When total fracture length is constant, fracturing effect is better if single fracture half-length or penetration ratio is relatively large and fracturing segments are moderate. Research results provide theoretical support for optimal design of fractured horizontal well in shale gas reservoir.


2014 ◽  
Vol 670-671 ◽  
pp. 728-731
Author(s):  
Su Ling Wang ◽  
Ying Zhang ◽  
Guo Feng Zhao ◽  
Si Qi Wang ◽  
Shan Ren Zhang

Horizontal well hydraulic fracture construction technology has already become the main development means of low permeability reservoir, and the crack initiation pressure is a key factor in fracture construction. Taking ABAQUS as the platform, combined with rock mechanics, elastic mechanics, fracture mechanics, damage mechanics and fluid-solid coupling theory, to establish horizontal well mechanical model, crack initiation law of horizontal well under different conditions were obtained by using finite element method. According to the horizontal well fracture tested data in Daqing peripheral oil fields, the crack initiation pressure and numerical simulation results are in good agreement, it shows that the numerical simulation method is reasonable, then analyze influence factor of crack initiation pressure on the basis.


2014 ◽  
Vol 508 ◽  
pp. 169-172
Author(s):  
Hong Wei Liu

The technology of horizontal well emerges in 1970s-1980s, mainly from the standard length of the horizontal well, the reasonable level in the reservoir, trajectory optimization of the level to ensure the level and get the best production results. Numerical simulation is the most effective and accurate way to optimize the parameters of horizontal well, to understand the geology in this article, based on the use of reservoir simulation methods, looking for the benefit of regional development of horizontal well, and the Optimization methods to determine the length of the horizontal wells and production parameters, design two-level horizontal well in TZ422 oilfield of Tower, and achieved good results.


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