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input_dump
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input_dump
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0 Choose Starting options: 0=new, 1=restart, 2=new with CheckPointg, 3=restart with CheckPointing
3 Kernel: 1=gaussian, 2=quadratic; 3=cubic; 5=Wendland
1 Time-stepping algorithm: 1=predictor-corrector, 2=verlet, 3=symplectic, 4=Beeman
2 Density Filter: 0=none, 1=Shepard filter, 2=MLS
30 ndt_FilterPerform (if density filter is used) ?
0 Kernel correction 0=None, 1=Kernel correction, 2=Gradient kernel Correction
1 Viscosity treatment 1=artificial; 2=laminar; 3=laminar + SPS
0.1 Viscosity value( if visc.treatment=1 it's alpha, if not kinem. visc approx 1.e-6)
0 Vorticity printing ? (1=yes)
9.81 gravity
3 dimension
1 Equation of State: 1=Tait's equation, 2=Ideal Gas, 3= Morris
2 Maximum Depth (h_SWL) to calculate B
10 coefficient ( 10 , 40 ) ??
2 Boundary Conditions: 1=Repulsive Force; 2=Dalrymple; 3=Open
1 ndt_DBCPerform ? (1 means no correction)
3 Initial Fluid Particle Structure: 1= SC, 2= BCC 3 = hex
0 0 0 Box dimension LX0,LY0,LZ0?
8 2 5.5 Box dimension LX1,LY1,LZ1?
0.1 0.1 0.1 Spacing dx,dy,dz?
0.866025 h=coefficient*sqrt(dx*dx+dy*dy+dz*dz): coefficient ???
0 0 0 Periodic Lateral boundaries in X, Y, & Z-Directions ? (1=yes)
1 Fill box area?
0 Correct pressure at boundaries ?? (1=y)
0 8 XMin, Xmax ??
0 2 YMin, Ymax ??
0 2 ZMin, Zmax ??
0 0 0 initial velocity
1 Fill cylindar?
1.5 1 3.35 cylindar center (cylindar length is set to be 3)
0.25 cylindar radius
3
0 0 0 initial velocity
0.5 0.01 Input the max time and print interval
0. initial time of outputting general data
0.0005 1.0 -1.0 For detailed recording during RUN: out_detail, start, end
0.00005 1 input dt ??, variable dt ??
0.2 CFL number (0.1-0.5)
0 Use of Riemann Solver: 0=None, 1=Conservative (Vila), 2=NonConservative (Parshikov)