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20222025
most citedOn the pressure gain of stable flow systems with variable cross-section area

1 citations · 2 across the 3 of their papers we have counts for

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physics.flu-dyn2025

On the role of back-propagating pressure suppression in enhancing the pressure-gain performance of quasi-2D rotating detonation engines

Tonghui Wang, Guoqing Zhang, Haocheng Wen

The total pressure gain (PG) characteristics of the quasi-2D rotating detonation engine (RDE) are numerically investigated in this study, based on an abstract check valve model and…

physics.flu-dyn2025

JANC: A cost-effective, differentiable compressible reacting flow solver featured with JAX-based adaptive mesh refinement

Haocheng Wen, Faxuan Luo, Sheng Xu +1

The compressible reacting flow numerical solver is an essential tool in the study of combustion, energy disciplines, as well as in the design of industrial power and propulsion dev…

physics.flu-dyn2024

Physics-informed Shadowgraph Network: An End-to-end Density Field Reconstruction Method

Xutun Wang, Yuchen Zhang, Zidong Li +2

This study presents a novel approach for quantificationally reconstructing density fields from shadowgraph images using physics-informed neural networks

physics.flu-dyn20221 cited

On the pressure gain of stable flow systems with variable cross-section area

Haocheng Wen, Bing Wang

For the clarification of total pressure gain performance of rotating detonation propulsion systems, the extended Hugoniot curve is proposed and discussed for the stable flow system…

physics.flu-dyn20221 cited

Numerical Study on Droplet Evaporation and Propagation Stability in Normal-temperature Two-phase Rotating Detonation System

Haocheng Wen, Wenqi Fan, Sheng Xu +1

A numerical study is carried out on the droplet-laden two-phase rotating detonation wave (RDW) of kerosene/oxygen-enriched air at normal temperature. Two types of combustors withou…