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Combustion and Flame

Resumen/Descripción – provisto por la editorial en inglés
The mission of the journal is to publish high quality work from experimental, theoretical, and computational investigations on the fundamentals of combustion phenomena and closely allied matters. While submissions in all pertinent areas are welcomed, past and recent focus of the journal has been on:Development and validation of reaction kinetics, reduction of reaction mechanisms and modeling of combustion systems, including: Conventional, alternative and surrogate fuels; Pollutants; Particulate and aerosol formation and abatement; Heterogeneous processes.


Experimental, theoretical, and computational studies of laminar and turbulent combustion phenomena, including: Premixed and non-premixed flames; Ignition and extinction phenomena; Flame propagation; Flame structure; Instabilities and swirl; Flame spread; Multi-phase reactants.


Advances in diagnostic and computational methods in combustion, including: Measurement and simulation of scalar and vector properties; Novel techniques; State-of-the art applications.


Fundamental investigations of combustion technologies and systems, including: Internal combustion engines; Gas turbines; Small- and large-scale stationary combustion and power generation; Catalytic combustion; Combustion synthesis; Combustion under extreme conditions; New concepts.

Note: Manuscripts on combustion technologies and systems need to include research approaches and results that address fundamental combustion problems of relevance to a specific application. Manuscripts of clearly applied nature that include device-specific results will be rejected without review.

Palabras clave – provistas por la editorial

No disponibles.

Disponibilidad
Institución detectada Período Navegá Descargá Solicitá
No detectada desde mar. 1957 / hasta dic. 2023 ScienceDirect

Información

Tipo de recurso:

revistas

ISSN impreso

0010-2180

ISSN electrónico

1556-2921

Editor responsable

Elsevier

País de edición

Países Bajos

Fecha de publicación

Cobertura temática

Tabla de contenidos

A big data framework to validate thermodynamic data for chemical species

Philipp Buerger; Jethro AkroydORCID; Jacob W. Martin; Markus KraftORCID

Palabras clave: Fuel Technology; General Physics and Astronomy; Energy Engineering and Power Technology; General Chemistry; General Chemical Engineering.

Pp. 584-591