个人信息
教师姓名:许常悦
教师英文名称:Xu Changyue
教师拼音名称:xcy
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所在单位:航空学院人机与环境工程系
职务:系主任
学历:中国科学技术大学
办公地点:明故宫校区C12-517
性别:男
联系方式:微信号:zkdxcy,QQ:88255448
学位:工学博士学位
职称:副教授
主要任职:江苏省航空航天学会空降空投委员会委员、江苏省制冷学会教育工作委员会副主任委员、中国民航局航空医学组十四五专家组成员
毕业院校:中国科学技术大学
硕士生导师
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所属院系: 航空学院
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学科:航空宇航科学与技术
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论文成果
Novel characteristics of wavy cylinder in supersonic turbulent flow
发布时间:2018-11-13 点击次数:
所属单位:航空学院
发表刊物:EUROPEAN JOURNAL OF MECHANICS B-FLUIDS
关键字:Supersonic flow Quasi-steady flow Scale-adaptive simulation Wavy cylinder Circular cylinder
摘要:Supersonic flow past a wavy cylinder has been investigated numerically using scale-adaptive simulation technique. The free-stream Reynolds number and Mach number for this supersonic flow are chosen as 2x 10(5) and 1.7, respectively. For the sake of comparison and discussion, a corresponding circular cylinder for the same computational parameters also has been calculated. Unlike the subsonic operating condition, drag reduction and fluctuating lift suppression of wavy cylinder in supersonic flow are less dramatic. Results indicate that wavy surface as a flow control technique is invalid for supersonic flow over a circular cylinder. This is because the existence of bow shock-wave and no large-scale vortex shedding in the flow field of circular cylinder. Further, two different flow states have been found in the near wake of wavy cylinder. One is a quasi-steady flow state behind the nodal position with converged wake, and the other is an unsteady flow state behind the saddle position with obvious vortex street. Based on the analyses of flow patterns, pressure power spectral densities, and proper orthogonal decomposition of pressure fields, some novel characteristics of wavy cylinder in supersonic flow are systematically investigated. (C) 2017 Elsevier Masson SAS. All rights reserved.
ISSN号:0997-7546
是否译文:否
发表时间:2018-01-01
合写作者:倪竹青
第一作者:许常悦
通讯作者:许常悦