?? drop.par
字號(hào):
drop problem: flow past an obstaclenone infile: file to read initial values fromnone outfile: file to write final values8.0 xlength: domain size in x-direction6.0 ylength: domain size in y-direction40 imax: number of interior cells in x-direction30 jmax: number of interior cells in y-direction10.0 t_end: final time0.01 delt: time stepsize0.2 tau: safety factor for time stepsize control1000.0 del_trace: time stepsize for writing particle positions for particle tracing1000.0 del_inj: time stepsize for injecting particles0.5 del_streak:time stepsize for writing particle positions of streaklines1.0 del_vec: time stepsize for writing velocity and pressure valuesdrop.out file to write velocity and pressure valuesnone file to write particle positions for particle tracingdrop.str file to write particle positions of streaklines0 N: number of particlelines0.0 pos1x: coordinates of the final points0.0 pos1y: of the line on which0.0 pos2x: particles for particle tracing0.0 pos2y: and streaklines are injected500 itermax: maximal number of pressure iterations in one time step0.001 eps : stopping tolerance for pressure iteration1.7 omg : relaxation parameter for SOR iteration0.5 gamma: upwind differencing factor 2 p_bound: flag for the treatment of the pressure boundary conditions 1 = modify the equation at the boundary (book p. 37) 2 = copy the pressure values near the boundary (book p. 39)40 Re: Reynolds number1.0 Pr: Prandtl number0.0 beta: coefficient of volume expansion0.0 GX: -1.0 GY: volume forces, e.g. gravity0.0 UI:0.0 VI: initial values0.0 TI:1 wW: flags for boundary conditions1 wO: 1 = slip 3 = inflow/outflow3 wN: 2 = no-slip 4 = periodic1 wS:
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