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“Project North American Eagle” Challenging the Land-Speed Record Using EnSight Software for Aerodynamic Design Darren Grove Aerodynamics Engineer Aerodynamics.

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Presentation on theme: "“Project North American Eagle” Challenging the Land-Speed Record Using EnSight Software for Aerodynamic Design Darren Grove Aerodynamics Engineer Aerodynamics."— Presentation transcript:

1 “Project North American Eagle” Challenging the Land-Speed Record Using EnSight Software for Aerodynamic Design Darren Grove Aerodynamics Engineer Aerodynamics Engineer 11/09/2011 CEI Users Conference 2011 - Tokyo Japan

2  Conflict of Interest Statement. Although I am employed by the Boeing company, this project is not sponsored, funded, nor associated with the Boeing Company. My work on this project is outside of Boeing on a consulting bases. 2 CEI Users Conference 2011 - Tokyo Japan 11/09/2011

3 10/23/2011 3 CEI Users Conference 2011 - Tokyo Japan 11/09/2011

4 CEI Users Conference 2011 - Tokyo Japan 4 48272496512231448 KM/H

5 11/09/2011 CEI Users Conference 2011 - Tokyo Japan 5 413 mph / 664 km/h Tom Green 622 mph / 1001 km/h Gary Gabelich 576 mph / 927 km/h Art Arfons 633 mph / 1019 km/h Richard Noble 600 mph / 964 km/h Craig Breedlove 739 mph / 1189 km/h Stan Barrett

6 10/23/2011 6 CEI Users Conference 2011 - Tokyo Japan 11/09/2011

7 10/23/2011  Advanced Technologies Revolutionary Breaking System High Speed Wheel Design Treated Aluminum Capable up to 15,000 RPM Parachute System Deployable up to 700mph CFD Digitize Mesh EnSight 7 CEI Users Conference 2011 - Tokyo Japan 11/09/2011

8 8 CEI Users Conference 2011 - Tokyo Japan Logistical Technical

9 9 10/23/2011 VINAS Users Conference 2011 - Tokyo Japan  A shock wave (also called shock front or simply "shock") is a type of propagating disturbance, characterized by an abrupt, nearly discontinuous change in the characteristics of the medium. Across a shock there is always an extremely rapid rise in pressure, temperature and density of the flow. This phenomena creates addition drag force on the vehicle known as “wave drag”.pressuretemperaturedensity Image source: Wikipedia - http://en.wikipedia.org/wiki/Shock_wave

10  Transonic shocks product large pressure gradients that can effect the vehicles performance, stability, and control. 10 11/09/2011 CEI Users Conference 2011 - Tokyo Japan Ground Plane Canard

11 11 11/09/2011 CEI Users Conference 2011 - Tokyo Japan

12 12 11/09/2011 CEI Users Conference 2011 - Tokyo Japan Plotter Calculator Query Dataset

13 13 10/23/2011 VINAS Users Conference 2011 - Tokyo Japan Lecture 7 - Meshing http://www.bakker.org © André Bakker (2002-2006)

14  Computer Setup Donated High-End LENOVO C20 Workstations Linked together via a 1GB network switch EnSight, Metacomp CFD ++, CEI EnSight installed 48GB RAM / workstation 2 - Processors (6 cores ) = 12 CPU’s available Windows 7 Professional 64 Bit OS  Limitation Max grid size ~ 12 million cells/workstation due to RAM memory limit, using CFD++ 14 11/09/2011 CEI Users Conference 2011 - Tokyo Japan

15 15 10/23/2011 VINAS Users Conference 2011 - Tokyo Japan Mass Flow-Thru Inlet Modeled Powered Exhaust Modeled Ground plane modeled – Inviscid surface tangency

16  700 mph (1126 km/h) case using Iso-surfaces and Mach function to extract features 16 11/09/2011 CEI Users Conference 2011 - Tokyo Japan

17 17 10/23/2011 VINAS Users Conference 2011 - Tokyo Japan Local pockets of sonic flow Magenta = iso-surfaces of separated flow Flat frontal area Large Drag Producer Flat frontal area Large Drag Producer

18 10/23/2011 18 CEI Users Conference 2011 - Tokyo Japan 11/09/2011  The goal of the project is to make sure the car is safe and capable to meet our mission of breaking the current land speed record.  Many CFD conditions will need to be run and analyzed  PYTHON scripting is used to automate the post-processing analyses to obtain the Force and Moment data and produce Charts, Images, and Tables of useful information.  The goal of the project is to make sure the car is safe and capable to meet our mission of breaking the current land speed record.  Many CFD conditions will need to be run and analyzed  PYTHON scripting is used to automate the post-processing analyses to obtain the Force and Moment data and produce Charts, Images, and Tables of useful information. Forces, Moments, Images, Charts, Tables Solutions Python Scripts Home/.ensight92 Python scripts Home/.ensight92 Python scripts Solutions Folder execute post_csh script reads header.txt reads header.txt Creates “data” Folder Force & Moment Tables “post_images” Folder 3d plots, movies, images Solutions Folder execute post_csh script reads header.txt reads header.txt Creates “data” Folder Force & Moment Tables “post_images” Folder 3d plots, movies, images

19 19 11/09/2011 CEI Users Conference 2011 - Tokyo Japan Title Page 3-View

20 20 10/23/2011 VINAS Users Conference 2011 - Tokyo Japan

21 21 11/09/2011 CEI Users Conference 2011 - Tokyo Japan

22 Approximate Solution Run Times  For a 12 million cell grid, half body, about 16-20 hours/solution (one computer)  For a 24 million cell grid, full model, about 24 hours per solution (2 computers) 22 11/09/2011 CEI Users Conference 2011 - Tokyo Japan NAE – half model# Tets# Pyramids# Prisms# Total cells%  CellsTime (min) Before (Gridgen)22,460,446-- -12.4 After Recombination (PW)7,018,39665,1545,391,55812,475,10855.55.2

23 23 11/09/2011 CEI Users Conference 2011 - Tokyo Japan GP effect

24 9/14/2011 24 11/09/2011 Conceptual design Today’s Car CEI Users Conference 2011 - Tokyo Japan

25  CFD is being used to analyze and optimize the aerodynamics, Stability & Control of the North American Eagle.  CEI EnSight software was chosen for it’s excellent post-processing capability, tool sets, and robustness to analyze complex solutions.  The use of iso-surfaces and particle traces have been used to gain a better understanding the shocks and ground proximity effects.  PYTHON scripting language is being used to automate the post- processing of a large amount of CFD data, leading to a more efficient, productive, and repeatable processes. 25 11/09/2011 CEI Users Conference 2011 - Tokyo Japan

26 10/23/2011 26 CEI Users Conference 2011 - Tokyo Japan 11/09/2011

27 27 11/09/2011 CEI Users Conference 2011 - Tokyo Japan

28 Backup Slides 28 11/09/2011 CEI Users Conference 2011 - Tokyo Japan

29 29 11/09/2011 CEI Users Conference 2011 - Tokyo Japan Time Speed Initial rollout Throttle Up Max Thrust Throttle to Idle Airbrakes Parachute Manual Braking  AccelerationDeceleration

30 30 11/09/2011 CEI Users Conference 2011 - Tokyo Japan 1 2 3 4 7 8 9 10 0,0,0 Reference 0,0,0 is located directly below tip of pitot tube on ground plane and at centerline of car Body Location Port #X (in)Y (in)Z (in) 1 79 0.0 32.31 2 80.25 0.0 16.37 3 129 0.043.77 4 128.250.0 10.86 5 238 23.71 36.0 6 243 0.0 64.04 7 262 23.7736.0 8 286 0 62.37 9 286 20.0 48.0 10 288 23.6 24 11 332.5 5.0 36.0 12 332.5 42.69 36.0 13 346.5 42.74 36.0 14 388.5 41.0 36.0 15 497.2527.9348 16 52428.048 14 1516 6 5 11 1213 Z=36” Z ≈ 48”

31 11.00 mile Track MOBILE DAQ 1.00 m 2.50 m NTWK TWR 1 NTWK TWR 2 NTWK TWR 3 Ethernet Range Stand-off Distance 5.00 m 7.50 m 10.00 m WINDMILL CHARGE WINDMILL CHARGE BATTERIES GNSS REF Antenna Shadow North American Eagle Data Acquisition Range Layout

32 32 11/09/2011 CEI Users Conference 2011 - Tokyo Japan Extruded Anisotropic Tetrahedral Layers

33 33 11/09/2011 CEI Users Conference 2011 - Tokyo Japan  Multiple normal's help to refine cells around sharp corners. This helps capture flow field properties that otherwise might be missed when compared to single point normal's that can lead to large, more skewed cells.


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