Gaseous Detonation Physics and Its Universal Framework Theory

個数:1
紙書籍版価格
¥39,913
  • 電子書籍
  • ポイントキャンペーン

Gaseous Detonation Physics and Its Universal Framework Theory

  • 著者名:Jiang, Zonglin/Teng, Honghui
  • 価格 ¥30,357 (本体¥27,598)
  • Springer(2022/12/16発売)
  • 春分の日の三連休!Kinoppy 電子書籍・電子洋書 全点ポイント30倍キャンペーン(~3/22)
  • ポイント 8,250pt (実際に付与されるポイントはご注文内容確認画面でご確認下さい)
  • 言語:ENG
  • ISBN:9789811970016
  • eISBN:9789811970023

ファイル: /

Description

This book highlights the theories and research progress in gaseous detonation research, and proposes a universal framework theory that overcomes the current research limitations. Gaseous detonation is an extremely fast type of combustion that propagates at supersonic speed in premixed combustible gas. Being self-sustaining and self-organizing with the unique nature of pressure gaining, gaseous detonation and its gas dynamics has been an interdisciplinary frontier for decades. The research of detonation enjoyed its early success from the development of the CJ theory and ZND modeling, but phenomenon is far from being understood quantitatively, and the development of theories to predict the three-dimensional cellular structure remains a formidable task, being essentially a problem in high-speed compressible reacting flow. This theory proposed by the authors’ research group breaks down the limitation of the one-dimensional steady flow hypothesis of the early theories, successfully correlating the propagation and initiation processes of gaseous detonation, and realizing the unified expression of the three-dimensional structure of cell detonation. The book and the proposed open framework is of high value for researchers in conventional applications such as coal mine explosions and chemical plant accidents, and state-of-the-art research fields such as supernova explosion, new aerospace propulsion engines, and detonation-driven hypersonic testing facilities. It is also a driving force for future research of detonation.

Table of Contents

Introduction.- Mathematical equations and computational methods.- Classical theories of gaseous detonations and dynamic parameters.- Cellular detonation features and experimental observations.- Universal framework theory for initiation and propagation of regular gaseous detonation.- Structures and stationary rules of oblique detonations.- Engineering applications of gaseous detonation phenomena.


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