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利用混合法构建三维数字岩心(英文)
引用本文:刘学锋,孙建孟,王海涛.利用混合法构建三维数字岩心(英文)[J].应用地球物理,2009,6(2):105-112.
作者姓名:刘学锋  孙建孟  王海涛
作者单位:College of Geo-resource and Information,China University of Petroleum,Dongying 257061,China  
基金项目:国家自然科学基金,CNPC Research Project 
摘    要:在弹性波有三维数字岩心描述了岩石的微观孔隙结构。X射线CT扫描是获取三维数字岩心最准确和直接的方法,但实验成本高。本文结合沉积过程模拟和模拟退火算法,提出了重建三维数字岩心的混合法,基于岩石二维图像重建三维数字岩心。利用岩石颗粒沉积算法构建初始数字岩心,作为模拟退火算法的初始状态。运用模拟退火算法调整岩石颗粒和孔隙的相对位置,使三维数字岩心与岩心二维图像具有相似的自相关函数,从而建立三维数字岩心。与传统模拟退火算法相比,该方法计算时间明显减小。运用局部孔隙度理论定量比较了重建数字岩心和岩心X射线微CT图像,两种数字岩心具有相似的均质性和孔隙连通性。利用有限元方法和格子玻尔兹曼方法分别模拟了重建三维数字岩心的地层因素和渗透率,数值模拟结果与实验结果相符。相比传统模拟退火算法,混合法重建数字岩心的传导特性更接近真实岩心的传导特性。

关 键 词:混合方法  内核  格子玻尔兹曼方法  模拟退火  三维数字化  岩石建造  CT扫描  二维图像
收稿时间:13 March 2007

Reconstruction of 3-D digital cores using a hybrid method
Xuefeng Liu,Jianmeng Sun,Haitao Wang.Reconstruction of 3-D digital cores using a hybrid method[J].Applied Geophysics,2009,6(2):105-112.
Authors:Xuefeng Liu  Jianmeng Sun  Haitao Wang
Institution:College of Geo-resource and Information, China University of Petroleum, Dongying 257061, China
Abstract:A 3-D digital core describes the pore space microstructure of rocks. An X-ray micro CT scan is the most accurate and direct but costly method to obtain a 3-D digital core. In this study, we propose a hybrid method which combines sedimentation simulation and simulated annealing (SA) method to generate 3-D digital cores based on 2-D images of rocks. The method starts with the sedimentation simulation to build a 3-D digital core, which is the initial configuration for the SA method. We update the initial digital core using the SA method to match the auto-correlation function of the 2-D rock image and eventually build the final 3-D digital core. Compared with the typical SA method, the hybrid method has significantly reduced the computation time. Local porosity theory is applied to quantitatively compare the reconstructed 3-D digital cores with the X-ray micro CT 3-D images. The results indicate that the 3-D digital cores reconstructed by the hybrid method have homogeneity and geometric connectivity similar to those of the X-ray micro CT image. The formation factors and permeabilities of the reconstructed 3-D digital cores are estimated using the finite element method (FEM) and lattice Boltzmann method (LBM), respectively. The simulated results are in good agreement with the experimental measurements. Comparison of the simulation results suggests that the digital cores reconstructed by the hybrid method more closely reflect the true transport properties than the typical SA method alone.
Keywords:3-D digital core  simulated annealing method  sedimentation simulation
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