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Program EAGLE User's Manual. Volume 3. Grid Generation Code

Joe E. Thompson, Boyd Gatlin

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Abstract

Abstract : This report provides both a user's manual and a detailed description for a general three-dimensional grid generation code for the construction of composite grids in arbitrary regions. The code can operate either as an algebraic generation system or as an elliptic generation system. Provision is made for orthogonality at boundaries and complete continuity at block interfaces. The code can operate in two or three dimensions, or on a curved surface. The input is structured to be user-oriented, and arbitrary block configurations can be treated.

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Abstract : This report provides both a user's manual and a detailed description for a general three-dimensional grid generation code for the construction of composite grids in arbitrary regions. The code can operate either as an algebraic generation system or as an elliptic generation system. Provision is made for orthogonality at boundaries and complete continuity at block interfaces. The code can operate in two or three dimensions, or on a curved surface. The input is structured to be user-oriented, and arbitrary block configurations can be treated.

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Available abstract

Abstract : This report provides both a user's manual and a detailed description for a general three-dimensional grid generation code for the construction of composite grids in arbitrary regions. The code can operate either as an algebraic generation system or as an elliptic generation system. Provision is made for orthogonality at boundaries and complete continuity at block interfaces. The code can operate in two or three dimensions, or on a curved surface. The input is structured to be user-oriented, and arbitrary block configurations can be treated.

Key concepts: Orthogonality, Grid, Computer science, Block (permutation group theory), Code (set theory), Mesh generation, Programming language, Code generation

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