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An Interface for Specifying Rigid-Body Motions for CFD Applications
Author(s) -
Scott M. Murman,
William Chan,
Michael J. Aftosmis,
Robert Meakin
Publication year - 2003
Publication title -
41st aerospace sciences meeting and exhibit
Language(s) - English
Resource type - Conference proceedings
DOI - 10.2514/6.2003-1237
Subject(s) - computational fluid dynamics , interface (matter) , computer science , rigid body , marine engineering , aerospace engineering , engineering , classical mechanics , physics , parallel computing , bubble , maximum bubble pressure method
An interface for specifying rigid-body motions for CFD applications is presented. This interface provides a means of describing a component hierarchy in a geometric configuration, as well as the motion (prescribed or six-degree-of-freedom) associated with any component. The interface consists of a general set of datatypes, along with rules for their interaction, and is designed to be flexible in order to evolve as future needs dictate. The specification is currently implemented with an XML file format which is portable across platforms and applications. The motion specification is capable of describing general rigid body motions, and eliminates the need to write and compile new code within the application software for each dynamic configuration, allowing client software to automate dynamic simulations. The interface is integrated with a GUI tool which allows rigid body motions to be prescribed and verified interactively, promoting access to non-expert users. Illustrative examples, as well as the raw XML source of the file specifications, are included.

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