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Benchmarking Cradle CFD Software for store separation trajectory prediction using the Eglin Test Model showcases its accuracy in simulating complex aero-dynamics. Additionally, its predictive capabilities in determining the onset of flutter and the Transonic Dip with the BSCW Wing highlight its robustness in capturing critical aerodynamic phenomena, aiding in aerospace design validation.View Thesis Presentation Read more
Thermo-Fluid Structure Interaction is the phenomenon of investigating the thermal effects during data exchange between fluid and structures. The structural conditions are coupled with the fluid boundary conditions which enable the production of an efficient thermal design of various electronics. To view Poster Click Here Read more
Presented my paper on Store Separation. View Slides Testing store separation is risky, costly, and traditionally time-consuming with methods like flight tests and Wind Tunnel Testing. Computational Fluid Dynamics (CFD) advancements have simplified this process by coupling Six Degrees of Freedom (Six DOF) and Navier Stokes (N-S) equations. Using CFD on pylon, wing, and store geometry allows the calculation of force and moments. This project validates store separation trajectory using Software Cradle with the Eglin Test Model, focusing on the ejector force profile. Employing Software Cradle’s scFLOW code for a transonic Mach number of 0.95, it solves Reynolds Averaged Navier Stokes (RANS) Equation coupled with the 6 Degree of Freedom Equation using the overset meshing technique, resulting in good agreement with store displacement. Read more
Inviting all battery enthusiasts and CFD engineers! Join us for an exciting webinar on Battery Thermal Runaway using Cradle CFD. Discover the secrets behind battery safety and performance with Hexagon’s software. Learn how Cradle CFD empowers accurate simulation and analysis of thermal behavior. To view the webinar recording, click here. Read more