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Numerical Investigation on the Propagation Mechanism of Steady Cellular Detonations in Curved Channels

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【作者】 李健宁建国赵慧郝莉王成

【Author】 LI Jian;NING Jian-Guo;ZHAO Hui;HAO Li;WANG Cheng;State Key Laboratory of Explosion Science and Technology,Beijing Institute of Technology;Department of Mechanical Engineering,McGill University;School of Science,Beijing University of Civil Engineering and Architecture;

【机构】 State Key Laboratory of Explosion Science and Technology,Beijing Institute of TechnologyDepartment of Mechanical Engineering,McGill UniversitySchool of Science,Beijing University of Civil Engineering and Architecture

【摘要】 The propagation mechanism of steady cellular detonations in curved channels is investigated numerically with a detailed chemical reaction mechanism.The numerical results demonstrate that as the radius of the curvature decreases,detonation fails near the inner wall due to the strong expansion effect.As the radius of the curvature increases,the detonation front near the inner wall can sustain an underdriven detonation.In the case where detonation fails,a transverse detonation downstream forms and re-initiates the quenched detonation as it propagates toward the inner wall.Two kinds of propagation modes exist as the detonation is propagating in the curved channel.One is that the detonation fails first,and then a following transverse detonation initiates the quenched detonation and this process repeats itself.The other one is that without detonation failure and re-initiation,a steady detonation exists which consists of an underdriven detonation front near the inner wall subject to the diffraction and an overdriven detonation near the outer wall subject to the compression.

【Abstract】 The propagation mechanism of steady cellular detonations in curved channels is investigated numerically with a detailed chemical reaction mechanism.The numerical results demonstrate that as the radius of the curvature decreases,detonation fails near the inner wall due to the strong expansion effect.As the radius of the curvature increases,the detonation front near the inner wall can sustain an underdriven detonation.In the case where detonation fails,a transverse detonation downstream forms and re-initiates the quenched detonation as it propagates toward the inner wall.Two kinds of propagation modes exist as the detonation is propagating in the curved channel.One is that the detonation fails first,and then a following transverse detonation initiates the quenched detonation and this process repeats itself.The other one is that without detonation failure and re-initiation,a steady detonation exists which consists of an underdriven detonation front near the inner wall subject to the diffraction and an overdriven detonation near the outer wall subject to the compression.

【基金】 Supported by the National Natural Science Foundation of China under Grant Nos 11390363 and 11325209
  • 【文献出处】 Chinese Physics Letters ,中国物理快报(英文版) , 编辑部邮箱 ,2015年04期
  • 【分类号】O643.22
  • 【下载频次】37
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