A dedicated paper for Pr Sébastien Candel EM2C laboratory, CentraleSupélec

IF 5.8 2区 工程技术 Q2 ENERGY & FUELS
Christophe Bailly , Daniel Durox , Matthew Juniper , Nicolas Noiray , Thierry Poinsot , Thierry Schuller , Denis Veynante
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引用次数: 0

Abstract

This dedicated paper presents an overview of six fields of research in combustion in which Pr Sébastien Candel has made remarkable contributions: cryogenic combustion and liquid rocket engine dynamics, turbulent combustion modeling, combustion noise, flame dynamics and combustion instability, flame describing functions in combustion instability analysis, combustion dynamics and instabilities in annular systems. The paper is designed to (1) provide a review of research in each of the six fields, which can be used by all members of our community and (2) show how Pr Candel’s work has oriented and shaped research in these fields over the last few decades.
一篇专门的论文,Pr ssambastien Candel EM2C实验室,centralesupaclele3
本文概述了ssambastien Candel博士在以下六个燃烧研究领域做出的杰出贡献:低温燃烧和液体火箭发动机动力学、湍流燃烧建模、燃烧噪声、火焰动力学和燃烧不稳定性、燃烧不稳定性分析中的火焰描述函数、燃烧动力学和环空系统的不稳定性。这篇论文的目的是:(1)对这六个领域的研究进行回顾,供我们社区的所有成员使用;(2)展示在过去的几十年里,坎德尔博士的工作是如何引导和塑造这些领域的研究的。
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来源期刊
Combustion and Flame
Combustion and Flame 工程技术-工程:化工
CiteScore
9.50
自引率
20.50%
发文量
631
审稿时长
3.8 months
期刊介绍: 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.
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