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A trail towards integration of EFD (Experimental Fluid Dynamics) and CFD (Computational Fluid Dynamics), that is. the development of a system called Digital/Analog Hybrid Wind Tunnel, is introduced. The aim of the system is to improve efficiency, accuracy, and reliability of aerodynamic characteristics evaluation in aerospace vehicle developments through mutual support between EFD and CFD. The function of the system consists of optimization of test planning utilizing pretest CFD calculations, an accurate correction of the wind tunnel wall and support interaction effects through CFD, CFD data refinement based on EFD data, the most probable aerodynamic characteristics estimation based on both EFD and CFD data, database including EFD and CFD data at an identical condition, and so forth. Key technical challenges in the system development, such as an automatic grid generation and high-speed solver development for CFD, a highly efficient data reduction technique for image measurement data. and techniques integrating EFD and CFD. are addressed.

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Abstract
1. INTRODUCTION
2. TECHNICAL ISSUES IN EFD AND CFD
3. SYSTEM CONCEPT OF DIGITAL/ANALOG HYBRID WIND TUNNEL
4. KEY CHALLENGES IN DEVELOPMENT OF HYBRID WIND TUNNEL
5. CONCLUDING REMARKS
ACKNOWLEDGMENTS
REFERENCES

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