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20152023
most citedCompositional inhomogeneities as a source of indirect combustion noise

80 citations · 141 across the 21 of their papers we have counts for

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Showing 2017 · physics.flu-dynShow all

7 papers · 2 filters

physics.flu-dyn2017★ 1 cited

Numerical analysis on mixing processes for transcritical real-fluid simulations

Peter C. Ma, Hao Wu, Daniel T. Banuti +1

The accurate and robust simulation of transcritical real-fluid flows is crucial for many engineering applications. Diffused interface methods are frequently employed and several nu…

physics.flu-dyn2017

Direct numerical simulations of turbulent channel flow under transcritical conditions

Peter C. Ma, Xiang I. A. Yang, Matthias Ihme

Turbulent flows under transcritical conditions are present in regenerative cooling systems of rocker engines and extraction processes in chemical engineering. The turbulent flows a…

physics.flu-dyn2017★ 1 cited

Application of Pareto-efficient combustion modeling framework to large eddy simulations of turbulent reacting flows

Hao Wu, Peter C. Ma, Thomas Jaravel +1

In the application of the combustion models based on low-dimensional manifolds (for instance flamelet models) to large-eddy simulation (LES) of reactive turbulent flows, the modeli…

physics.flu-dyn2017★ 80 cited

Compositional inhomogeneities as a source of indirect combustion noise

Luca Magri, Jeff O'Brien, Matthias Ihme

The generation of indirect combustion noise by compositional inhomogeneities is examined theoretically. For this, the compact nozzle theory of~\cite{MARBLE_CANDEL_JSV1977} is exten…

physics.flu-dyn2017★ 2 cited

Numerical methods to prevent pressure oscillations in transcritical flows

Peter C. Ma, Yu Lv, Matthias Ihme

The accurate and robust simulation of transcritical real-fluid effects is crucial for many engineering applications, such as fuel injection in internal combustion engines, rocket e…

physics.flu-dyn2017★ 3 cited

Modeling and Simulation of Diesel Injection at Transcritical Conditions

Peter C. Ma, Matthias Ihme, Luis Bravo

The need for improved engine efficiencies has motivated the development of high-pressure combustion systems, in which operating conditions achieve and exceed critical conditions. A…