Three-dimensional numerical study of jet-in-crossflow characteristics at low Reynolds number

被引:0
作者
Arun K. Saha
Chinni Babu Yaragani
机构
[1] Indian Institute of Technology Kanpur,Department of Mechanical Engineering
来源
Heat and Mass Transfer | 2012年 / 48卷
关键词
Vortex; Streamwise Velocity; Vortical Structure; Hairpin Structure; Streamwise Vortex;
D O I
暂无
中图分类号
学科分类号
摘要
A numerical study of a square jet in a cross flow is carried out at a Reynolds number of 100. The flow field and heat transfer characteristic downstream of the jet have been explored by solving three-dimensional unsteady Navier–Stokes equations and energy equation using higher order spatial and temporal discretization. The projection of vortical structure on a plane is seen to give the component of vortex normal to the plane. Four combinations of velocity profile namely (1) uniform crossflow and uniform jet, (2) laminar boundary layer crossflow and uniform jet, (3) uniform crossflow and parabolic jet profile, and (4) laminar boundary layer crossflow and parabolic jet are compared at same phase to see their effect on the flow field and heat transfer characteristic. All the four cases are seen to exhibit unsteadiness but the jet with parabolic profile is seen to show stronger unsteadiness. The instantaneous vortical structures of all the cases at the same phase show that the structures are more complex for the jet with parabolic velocity profile. The temperature field is seen to be correlated with the vortical structures. Comparison of the time averaged flow field reveals that the jet penetration is the highest for the jet having parabolic profile and boundary layer crossflow. The adiabatic effectiveness is observed to be more for the jet with uniform velocity profile and uniform crossflow and was least for the jet with parabolic velocity profile and boundary layer crossflow.
引用
收藏
页码:391 / 411
页数:20
相关论文
共 50 条
[41]   Numerical simulation of plane mixing layer by three-dimensional vortex method [J].
Yagami, Hisanori ;
Uchiyama, Tomomi .
INTERNATIONAL JOURNAL OF TURBO & JET-ENGINES, 2007, 24 (02) :93-101
[42]   Three-dimensional direct numerical simulation of wake transitions of a circular cylinder [J].
Jiang, Hongyi ;
Cheng, Liang ;
Draper, Scott ;
An, Hongwei ;
Tong, Feifei .
JOURNAL OF FLUID MECHANICS, 2016, 801 :353-391
[43]   Three-dimensional numerical simulation of a vortex ring impinging on a circular cylinder [J].
Ren, Heng ;
Zhang, Genxuan ;
Guan, Hongshan .
FLUID DYNAMICS RESEARCH, 2015, 47 (02)
[44]   Numerical modeling of three-dimensional shear flow in a cavity with moving lids [J].
Bessonov O.A. ;
Brailovskaya V.A. ;
Roux B. .
Fluid Dynamics, 1998, 33 (3) :331-337
[45]   Maximum propulsive efficiency of two pitching and plunging plates in tandem at low Reynolds number A numerical analysis [J].
Ortega-Casanova, Joaquin ;
Fernandez-Feria, Ramon .
INTERNATIONAL JOURNAL OF NUMERICAL METHODS FOR HEAT & FLUID FLOW, 2019, 29 (11) :4013-4033
[46]   Numerical investigation on heat transfer of liquid flow at low Reynolds number in micro-cylinder-groups [J].
Ning Guan ;
Zhi-Gang Liu ;
Cheng-Wu Zhang .
Heat and Mass Transfer, 2012, 48 :1141-1153
[47]   Numerical simulation of the three-dimensional unsteady cavitating flow around a twisted hydrofoil [J].
Liu, Zhihui ;
Wang, Benlong .
OCEAN ENGINEERING, 2019, 188
[48]   Numerical study on the dynamics and mass transfer characteristics of a radial offset jet [J].
Li, Zhiwei ;
Huai, Wenxin ;
Yang, Zhonghua ;
Qian, Zhongdong ;
Zeng, Yuhong .
ENGINEERING COMPUTATIONS, 2014, 31 (03) :406-424
[49]   Three-dimensional numerical simulations of magnetohydrodynamic flow around a confined circular cylinder under low, moderate, and strong magnetic fields [J].
Kanaris, Nicolas ;
Albets, Xavier ;
Grigoriadis, Dimokratis ;
Kassinos, Stavros .
PHYSICS OF FLUIDS, 2013, 25 (07)
[50]   Control of backward facing step flow in low reynolds number (reattachment flow control by synthetic jet using stability analysis) [J].
Yamada S. ;
Honami S. ;
Okamoto K. ;
Nitta T. ;
Motosuke M. ;
Ishikawa H. .
Nihon Kikai Gakkai Ronbunshu, B Hen/Transactions of the Japan Society of Mechanical Engineers, Part B, 2011, 77 (775) :680-688