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October 2, 20250 citationsOpen Access

Computational Aerothermal Framework and Analysis of Stetson Mach 6 Blunt Cone

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ARArturo RodriguezPKPiyush KumarCDCesar Diaz-Caraveo

Key Points

  • The study highlights the significant role of aerodynamic heating on hypersonic vehicle performance, emphasizing predictive accuracy.
  • Numerical results demonstrate how discrete roughness elements affect surface heating and fluid dynamics at Mach 6 conditions.
  • A one-way coupling method integrates CFD simulations with heat conduction analysis to explore heat transfer characteristics.
  • Incorporating non-equilibrium thermochemical effects is crucial for improving accuracy in high-speed flight applications.

Abstract

Accurately predicting aerothermal behavior is paramount for the effective design of hypersonic vehicles, as aerodynamic heating plays a pivotal role in influencing performance metrics and structural integrity. This study introduces a computational aerothermal framework and analyzes a blunt cone subjected to Mach 6 conditions, drawing inspiration from Stetson foundational experimental work published in 1983. While the findings offer significant insights into the phenomena at play, the study highlights an urgent necessity for integrating chemical kinetics to comprehensively capture non-equilibrium effects, thereby enhancing the predictive accuracy of computational fluid dynamics (CFD) simulations. This research implements a one-way coupling method between CFD simulations and heat conduction analysis, facilitating a thorough investigation of surface heat transfer characteristics. The numerical results elucidate discrete roughness elements' impact on surface heating and fluid dynamics within high-speed airflow. Furthermore, the investigation underscores the critical importance of accounting for non-equilibrium thermochemical effects in aerothermal modeling to bolster the accuracy of high-enthalpy flow simulations. By refining predictive computational tools and deepening understanding of hypersonic aerothermal mechanisms, this research lays a robust groundwork for future experimental and computational endeavors, significantly contributing to advancing high-speed flight applications.

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Cite This Study

Rodriguez et al. (2025) studied this question.

synapsesocial.com/papers/68de5da283cbc991d0a206b7https://doi.org/10.48550/arxiv.2507.09368
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Also Consider

Synapse has enriched 5 closely related papers on similar clinical questions. Consider them for comparative context:

  1. 1Study of Multi-Physics Effects on Dynamic Characteristics of Blunt Cones2025
  2. 2Analysis of the aerothermal performance of modern commercial high-pressure turbine rotors using different levels of fidelity2024 · 3 citations
  3. 3A Rapid Prediction Tool for Aerodynamic Heating in High-Speed Aircraft Design2025
  4. 4Hypersonic Impact Method for Aerodynamics and Convective Heating (HI-Mach) with Sensitivities2026 · 1 citations
  5. 5Coupled Heat Transfer Analysis of Hypersonic Wide-Speed-Range Cruise Aircraft2026