drop problem: the splash of a liquid drop none infile: file to read initial values from none outfile: file to write final values 8.0 xlength: domain size in x-direction 6.0 ylength: domain size in y-direction 40 imax: number of interior cells in x-direction 30 jmax: number of interior cells in y-direction 10.0 t_end: final time 0.01 delt: time stepsize 0.2 tau: safety factor for time stepsize control 1000.0 del_trace: time step for writing particles for particle tracing 1000.0 del_inj: time step for injecting particles 0.5 del_streak:time step for writing particles of streaklines 1.0 del_vec: time step for writing velocity and pressure values none file to write velocity and pressure values none file to write particle positions for particle tracing none file to write particle positions of streaklines 0 N: number of particlelines 0.0 pos1x: coordinates of the final points 0.0 pos1y: of the line on which 0.0 pos2x: particles for particle tracing 0.0 pos2y: and streaklines are injected 500 itermax: maximal number of pressure iterations in one time step 0.001 eps : stopping tolerance for pressure iteration 1.7 omg : relaxation parameter for SOR iteration 0.5 gamma: upwind differencing factor 2 p_bound: flag for treatment of the pressure boundary conditions 1 = modify the equation at the boundary (book p. 37) 2 = copy pressure values near the boundary (book p. 39) 40 Re: Reynolds number 1.0 Pr: Prandtl number 0.0 beta: coefficient of volume expansion 0.0 GX: -1.0 GY: volume forces, e.g. gravity 0.0 UI: 0.0 VI: initial values 0.0 TI: 1 wW: flags for boundary conditions 1 wO: 1 = slip 3 = inflow/outflow 3 wN: 2 = no-slip 4 = periodic 1 wS: