[HTML][HTML] Recent advances in combustion science related to hydrogen safety

JX Wen, ES Hecht, R Mevel - Progress in Energy and Combustion Science, 2025 - Elsevier
Hydrogen is a key pillar in the global Net Zero strategy. Rapid scaling up of hydrogen
production, transport, distribution and utilization is expected. This entails that hydrogen …

In Silico Design of Detonation-Free High-Performance Dual-Thrust Solid and Hybrid Propellant Rockets Through the Application of the Chapman–Jouguet Condition

D Panchal, V Dekkala, SS Bogi, Y Raj… - … FORUM AND ASCEND …, 2024 - arc.aiaa.org
The advancement of detonation-free dual-thrust rockets represents a significant leap forward
in rocket propulsion technology offering considerable improvements over conventional …

Exploring the chemical kinetic effects on the direct detonation initiation in H2-O2-Ar mixtures

Y Liu, Y Chen, Q Xie, X Su, Z Ren… - Combustion Theory and …, 2024 - Taylor & Francis
Chemical kinetics plays an important role in the direct detonation initiation (DDI) of various
combustible mixtures. However, its impact on detonation dynamics has rarely been studied …

Unraveling Microbubble Nucleation and Sanal Flow Choking in Dual-thrust Hybrid Rockets: The Sonic Mach Equation Determines DDT Threshold

D Panchal, D Vinay, R Sharma, S Singh… - AIAA SCITECH 2025 …, 2025 - arc.aiaa.org
This paper presents a comprehensive analysis of the Sanal flow choking phenomenon, as
introduced by Kumar et al.(Physics of Fluids, 2022; AIAA 2023-1102, AIAA 2023-4416) …

Optimizing High-Performance Dual-Thrust Hybrid Rocket Systems in Vacuum: Mitigating Sanal Flow Choking by Spraying High Heat Capacity Nano-Granules

D Panchal, A Rai, Y Raj, BK Agarwal… - AIAA SCITECH 2025 …, 2025 - arc.aiaa.org
The recent study by VRS Kumar et al.(Physics of Fluids, 2022) represents a significant step
forward in optimizing dual-thrust hybrid rocket systems for vacuum conditions. The research …