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datasetmeca:flow2dpastheadtedcylinder1

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2D flow around a heated square-cylinder - $Re_{h}= 50$, $Ra= 5\; 10^6$

A heated square-cylinder is placed in a channel flow

Author : Y. Fraigneau CNRS-LIMSI (yann.fraigneau@limsi.fr)
Date : June 2019
Simulation type : DNS (Sunfluidh code)
Location : /DATABASE_2DFLOW_AROUND_HEATED_SQUARECYLINDER_DNS
Status : Free access
Data size : ~ 3 Gb

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Simulation settings


2D sketch

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Referential : cartesian geometry

  1. axes :
    • x(i) : downstream direction
    • y(j) : normal direction
  2. origin : lower left corner of the computational domain
    • $x_0= 10h$
    • $y_0= -6h$

Reference scales

  • Density : mass density of the fluid ($\rho_0$)
  • Lengths : cylinder size ($h$) and $H_u= 10h$ the distance between the domain's top and the square-cylinder's top.
  • Velocity : velocity at inlet ($U_0$)
  • Dynamic viscosity : dynamic viscosity of the fluid ($\mu_0$)
  • thermal diffusivity : ($\kappa_0$)
  • Reynolds number : $Re_H= \frac{\rho_0.U_0.h}{\mu_0}= 50$
  • Rayleigh number : $Ra= \frac{\rho_0.\beta.g\Delta T.H_u^3}{\mu_0 \kappa_0}= 5\;10^6$

Non-dimensionalised data

  • velocity : $U^*=\frac{U}{U_0}$
  • density : $\rho^*= \rho/\rho_0= 1$
  • coordinates : $x*=\frac{x}{h}$, $y^*=\frac{y}{h}$
  • temperature : $T^*=\frac{T-T_c}{T_h-T_c}$ ($T_h$ and $T_w$ are respectively the temperature imposed at the cylender's walls and the temperature at the inlet and channel's walls)

Computational domain

  1. Domain scope
    1. computational domain size (channel flow)
      • Downstream direction(x) : $L_x^*= 50.0$ (upward part $L_u= -10$, downward part $L_d=40$)
      • Normal direction (y) : $L_y^*= 20.0$
    2. heated square cylinder
      • size: $h^*= 1$
      • temperature T_h^*= 1
  1. Boundary conditions
    • Inlet : imposed pressure uniform velocity ($U_0=1$)
    • Outlet : Orlansky type
    • Bottom and top conditions : walls at (T_c^*=0)
  2. Spatial resolution
    • mesh size : $512 \times 256 $ (131.072 cells)
    • About cell-size
      • $\Delta x*$ : from $0.03125$ to $0.723$ (downstream direction)
      • $\Delta y*$ : from $0.03125$ to $0.187$ (normal direction)

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Data features


  • Time series
    • from probes
      • Physical quantities : velocity components along x and y directions (u,v) and pressure (p)
      • 1 probe
      • Time step= $2 \,10^{-2}$ time unit
      • Time range : 400 to 600 time units
      • Location : Xi= 3.5 , Xj=0.0
      • File name (per physical quantity): x_ins_00000.d with x= u,v,p
    • about cylinder motion
      • center position as a function of time (ASCII file ibm_position01.dat)
      • cylinder velocity as a function of time (ASCII file ibm_velocity01.dat)
      • global force components applied to the cylinder (ASCII file ibm_force01.dat)
      • force contributions exerted on the moving cylinder (ASCII file ibm_force_contribution01.dat, the four last columns can be ignored)
  • 3D snapshots
    • Instantaneous fields : velocity components in x, y and z directions (U,V), the pressure (P) and the phase function related to the body motion (TRACE)
    • Recording rate : 0.4 time unit
    • Time range from from 200.0 to 600.0 time units
    • File name : res_xxxxx_yyyyyyy.d
      • MPI subdomain ID: 0
      • Time ID : from 3 to 502

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Database organisation


Data size : ~ 7 Gb
Main directory : /vol/DATABASE_MECA/DATABASE_2DFLOW_AROUND_OSCILLATING_CYLINDER_DNS
For more details about files, see the wiki doc of Sunfluidh

Intermediate directories (four cases of study)

  • $St= 0.95$ and $A= 0.2$ - directory : CAS_F0.95_A0.2
  • $St= 0.95$ and $A= 0.5$ - directory : CAS_F0.95_A0.5
  • $St= 1.20$ and $A= 0.2$ - directory : CAS_F1.2_A0.2
  • $St= 1.20$ and $A= 0.5$ - directory : CAS_F1.2_A0.5

Endpoint directories & files

                               
  /DATASETUP       : ASCII files
                     input data file for sunfluidh : input3d.dat
  
  /GRID            : ASCII files
                     input data file         : data_meshgen.d
                     grid files for sunfluidh: maillx.d, mailly.d, maillz.d
   
  /SNAPSHOTS       : snapshots binary files res_xxxxx_yyyyyyy.d
  
  /TIMESERIES      : ASCII files
                     u_ins_00000.d , v_ins_00000.d and p_ins_00000.d (timeseries of the velocity components and pressure from probe)
                     ibm_position01.dat, ibm_velocity01.dat (about cylinder motion)
                     ibm_force01.dat, ibm_force_contribution01.dat (about forces exerted on the cylinder)
                     
               

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datasetmeca/flow2dpastheadtedcylinder1.1639566797.txt.gz · Dernière modification : 2021/12/15 12:13 de yann

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