Euler Technology Assessment Program for Preliminary Aircraft Design Employing Splitflow Code With Cartesian Unstructured Grid Method

Euler Technology Assessment Program for Preliminary Aircraft Design Employing Splitflow Code With Cartesian Unstructured Grid Method

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Publisher's Synopsis

This report documents results from the Euler Technology Assessment program. The objective was to evaluate the efficacy of Euler computational fluid dynamics (CFD) codes for use in preliminary aircraft design. Both the accuracy of the predictions and the rapidity of calculations were to be assessed. This portion of the study was conducted by Lockheed Fort Worth Company, using a recently developed in-house Cartesian-grid code called SPLITFLOW. The Cartesian grid technique offers several advantages for this study, including ease of volume grid generation and reduced number of cells compared to other grid schemes. SPLITFLOW also includes grid adaptation of the volume grid during the solution convergence to resolve high-gradient flow regions. This proved beneficial in resolving the large vortical structures in the flow for several configurations examined in the present study. The SPLITFLOW code predictions of the configuration forces and moments are shown to be adequate for preliminary design analysis, including predictions of sideslip effects and the effects of geometry variations at low and high angles of attack. The time required to generate the results from initial surface definition is on the order of several hours, including grid generation, which is compatible with the needs of the design environment. Finley, Dennis B. Unspecified Center...

Book information

ISBN: 9781730944215
Publisher: Independently Published
Imprint: Independently Published
Pub date:
Language: English
Number of pages: 102
Weight: 259g
Height: 280mm
Width: 216mm
Spine width: 5mm