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Conquer the hypersonic frontier: Mastering the extreme physics of high-speed flight

Explore hypersonic design with advanced simulation

20 mai 2025 à 15:00 temps universel coordonné

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Simulation of hypersonic vehicle airflow showing mach number distribution.

As aerospace engineers, you know the unique challenges of hypersonic flight all too well. Extreme heat, complex aerodynamics and structural integrity issues pose daunting obstacles to reliable simulation and design optimization.

In this webinar, discover how an integrated multiphysics approach can help you overcome these challenges and push the boundaries of hypersonic engineering.

You'll learn:

  • Advanced simulation techniques for modeling hypersonic regimes, including thermochemical effects and plasma interactions
  • Accurate simulation of reactive flows and combustion to enhance performance prediction
  • Integrated approaches accounting for real-gas equations of state, molecular dissociation and ionization
  • Adaptive mesh modeling (AMR) to precisely capture shocks, wakes, vortices and other critical flow structures
  • Real-world use cases demonstrating how these solutions enable reliable, realistic hypersonic simulation

Unlock the full potential of your hypersonic projects and soar past the limitations of traditional modeling. Reserve your spot today and join us as we conquer the hypersonic frontier.

À propos de l'intervenant

Siemens Digital Industries Software

Jeremy Hanke

Principal Solution Consultant

Jeremy Hanke is a principal solutions Consultant at Siemens Digital Industries Software, specializing in aerospace engineering simulations. He began his career at NASA Langley Research Center in 2007, focusing on wind tunnel testing and uncertainty quantification for space launch systems. In 2012, he joined CD-adapco (now Siemens), providing technical expertise in applications ranging from hypersonic aerodynamics to corrosion simulation using Simcenter tools. Jeremy is a Senior Member of AIAA and has published numerous AIAA papers on high-lift aircraft simulations, adaptive mesh refinement, and other CFD topics. He holds a B.S. in Aerospace Engineering from the University of Minnesota and an M.S. from the University of Michigan. Jeremy enjoys baseball, football, board games, Star Wars, fishing, gardening, and spending time with his wife and three children.