Abstract
AbstractThe induced stress field caused by hydraulic fracturing plays a key role in controlling the formation characteristics of fractures and is the essential prerequisite for optimal design of fracturing parameters. In order to determine the disturbance range of induced stress field on fracture morphology, the multiple factors analysis and optimization are an important inspect. Setting the induced stress control range (ISCR) as the evaluation objective, it can be defined as the combined response of the peak value of induced stress difference and stress steering distance, taking them as double evaluation indexes. Six uncertain fracture parameters with a reasonable range are used to fit the response of evaluation indexes. Through the finite element numerical simulation method, the induced stress field around the fractures can be calculated and the evaluation indexes are described quantitatively. Applying the multi-factor orthogonal test method, combined the matrix analysis model with the fuzzy comprehensive evaluation model, these fracture parameters are evaluated and optimized. The results show that the influence factors on the ISCR in the descending order are determined as follows: fracture height, fracture net pressure, Poisson’s ratio, maximum and minimum horizontal stress ratio, fracture spacing and its number. According to the multi-factors sensitivity analysis results, the selected levels of different factors are optimized and the combination of parameters optimization is screened out. It provides a theoretical basis to control the reservoir stress field for the optimization of the field fracturing treatment.
Funder
National Natural Science Foundation of China
Northeast Petroleum University Innovation Foundation for Postgraduate
Publisher
Springer Science and Business Media LLC
Subject
General Energy,Geotechnical Engineering and Engineering Geology
Reference23 articles.
1. East L, Soliman MY, Augustine J (2011) Methods for enhancing far-field complexity in fracturing operations. SPE Prod Oper 26(3):291–303
2. Fang JJ, Guan RF, Ma JQ et al (2013) Optimization of fabrication parameters to prepare tea catechin-loaded liposomes by fuzzy orthogonality. Key Eng Mater 531–532:458–464
3. Fang HS, Tian J, Wang S et al (2014) Numerical optimization of czochralski sapphire single crystal growth using orthogonal design method. Cryst Res Technol 49(5):323–330
4. Fisher MK, Heinze JR, Harris CD et al (2004) Optimizing horizontal completion techniques in the Barnett shale using microseismic fracture mapping. In: SPE annual technical conference and exhibition. https://doi.org/10.2118/90051-MS
5. Guo JC, Yin J, Zhao ZH (2014) Feasibility of formation of complex fractures under cracks interference in shale reservoir fracturing. Chin J Rock Mech Eng 33(8):1589–1596
Cited by
8 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