DocumentCode
3099902
Title
Porous Media Precise Reconstruction and Porosity Fluid Animated Simulation
Author
Song, Bo ; Dong, Lanfang ; Lu, Detang
Author_Institution
Vision Comput. & Visualization Lab., Univ. of Sci. & Technol. of China, Hefei, China
fYear
2011
fDate
12-15 Aug. 2011
Firstpage
877
Lastpage
884
Abstract
In this paper we discuss how to precisely reconstruct porous media 3D model and simulate the fluid flow in the porous media. Considering the characteristics of the porous media´s fault slice images, we present a contour extraction algorithm and based on the extracted contour we acquire the sandwich fault images. We modify the original MC algorithm with bounding box technology to accelerate the running speed, and the modified MC algorithm run faster when the pores are far away from each other. Current boundary treatment methods like boundary force method, ghost particle method and virtual boundary layer method, when dealing with complex boundaries, they will have to compute much on putting external particles. For resolving this problem, we propose a new method, and it handles the complex boundary very well. We use this new method to simulate the flow in porous media and analyse how the structure of porous media influence flow.
Keywords
computational fluid dynamics; computer animation; feature extraction; flow simulation; geophysics computing; porosity; porous materials; solid modelling; MC algorithm; boundary force method; boundary treatment method; bounding box technology; contour extraction; fault slice image; fluid flow; ghost particle method; porosity fluid animated simulation; porous media 3D model; porous media precise reconstruction; sandwich fault image; virtual boundary layer method; Computational modeling; Force; Image reconstruction; Media; Skeleton; Solid modeling; Solids; MC algorithm; bounding box; external particles; porous media; technology;
fLanguage
English
Publisher
ieee
Conference_Titel
Image and Graphics (ICIG), 2011 Sixth International Conference on
Conference_Location
Hefei, Anhui
Print_ISBN
978-1-4577-1560-0
Electronic_ISBN
978-0-7695-4541-7
Type
conf
DOI
10.1109/ICIG.2011.95
Filename
6005966
Link To Document