Title of article :
Efficient computation of volume fractions for multi-material cell complexes in a grid by slicing
Author/Authors :
Sen، نويسنده , , Dibakar and Srikanth، نويسنده , , T.K.، نويسنده ,
Issue Information :
روزنامه با شماره پیاپی سال 2008
Pages :
29
From page :
754
To page :
782
Abstract :
The paper presents a novel slicing based method for computation of volume fractions in multi-material solids given as a B-rep whose faces are triangulated and shared by either one or two materials. Such objects occur naturally in geoscience applications and the said computation is necessary for property estimation problems and iterative forward modeling. Each facet in the model is cut by the planes delineating the given grid structure or grid cells. The method, instead of classifying the points or cells with respect to the solid, exploits the convexity of triangles and the simple axis-oriented disposition of the cutting surfaces to construct a novel intermediate space enumeration representation called slice-representation, from which both the cell containment test and the volume-fraction computation are done easily. Cartesian and cylindrical grids with uniform and non-uniform spacings have been dealt with in this paper. After slicing, each triangle contributes polygonal facets, with potential elliptical edges, to the grid cells through which it passes. The volume fractions of different materials in a grid cell that is in interaction with the material interfaces are obtained by accumulating the volume contributions computed from each facet in the grid cell. The method is fast, accurate, robust and memory efficient. Examples illustrating the method and performance are included in the paper.
Keywords :
slicing , volume fraction , Forward modeling , voxelization , Non-manifold solids
Journal title :
Computers & Geosciences
Serial Year :
2008
Journal title :
Computers & Geosciences
Record number :
2287352
Link To Document :
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