Working ICs with ramses
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@ -71,7 +71,7 @@ def run_generation(input_borg, a_borg, a_ic, cosmo, supersample=1, do_lpt2=True)
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# Compute LPT scaling coefficient
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D1 = cgrowth.D(a_ic)
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D1_0 = D1/cgrowth.D(a_borg)
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velmul = cgrowth.compute_velmul(a_ic)*D1_0
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velmul = cgrowth.compute_velmul(a_ic)
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D2 = -3./7 * D1_0**2
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@ -87,6 +87,8 @@ def run_generation(input_borg, a_borg, a_ic, cosmo, supersample=1, do_lpt2=True)
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# Generate vel
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vel.append((psi*velmul).astype(np.float32))
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print("velmul=%lg" % (cosmo['h']*velmul))
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density = np.fft.irfftn(density_hat*D1_0)*(N/L)**3
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return posx,vel,density,N,L,a_ic
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@ -97,7 +99,7 @@ def write_icfiles(*generated_ic, **cosmo):
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ct.simpleWriteGadget("borg.gad", posx, velocities=vel, boxsize=L, Hubble=cosmo['h'], Omega_M=cosmo['omega_M_0'], time=a_ic)
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for i,c in enumerate(['x','y','z']):
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ct.writeGrafic("ic_velc%s" % c, vel[i].reshape((N,N,N)), L, a_ic, **cosmo)
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ct.writeGrafic("ic_velc%s" % c, vel[i].reshape((N,N,N)).transpose(), L, a_ic, **cosmo)
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ct.writeGrafic("ic_deltab", density, L, a_ic, **cosmo)
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ct.writeWhitePhase("white.dat", density)
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@ -8,23 +8,9 @@ cosmo['omega_k_0'] = 0
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cosmo['omega_B_0']=0.049
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cosmo['SIGMA8']=0.8344
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TestCase=True
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zstart=10
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zstart=200
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astart=1/(1.+zstart)
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if TestCase:
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pos,_,density,N,L,_ = bic.run_generation("initial_condition_borg.dat", 0.001, astart, cosmo, supersample=1, do_lpt2=True)
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dcic = ct.cicParticles(pos, L, N)
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dcic /= np.average(np.average(np.average(dcic, axis=0), axis=0), axis=0)
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dcic -= 1
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dcic_hat = np.fft.rfftn(dcic)*(L/N)**3
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Pcic, bcic = bic.bin_power(np.abs(dcic_hat)**2/L**3, L, bins=50)
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borg_evolved = ct.read_borg_vol("final_density_1380.dat")
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snapid=1
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if __name__=="__main__":
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if not TestCase:
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bic.write_icfiles(*bic.run_generation("initial_condition_borg.dat", 0.001, astart, cosmo, do_lpt2=True), **cosmo)
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bic.write_icfiles(*bic.run_generation("initial_condition_borg.dat", 0.001, astart, cosmo, do_lpt2=False), **cosmo)
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34
python_sample/icgen/test_ic_from_borg.py
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34
python_sample/icgen/test_ic_from_borg.py
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@ -0,0 +1,34 @@
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import numpy as np
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import cosmotool as ct
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import borgicgen as bic
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cosmo={'omega_M_0':0.3175, 'h':0.6711}
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cosmo['omega_lambda_0']=1-cosmo['omega_M_0']
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cosmo['omega_k_0'] = 0
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cosmo['omega_B_0']=0.049
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cosmo['SIGMA8']=0.8344
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snap_id=11
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s = ct.loadRamsesAll("/nethome/lavaux/remote2/borgsim/", snap_id, doublePrecision=True)
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astart=s.getTime()
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pos,_,density,N,L,_ = bic.run_generation("initial_condition_borg.dat", 0.001, astart, cosmo, supersample=1, do_lpt2=True)
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dcic = ct.cicParticles(pos, L, N)
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dcic /= np.average(np.average(np.average(dcic, axis=0), axis=0), axis=0)
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dcic -= 1
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dsim = ct.cicParticles(s.getPositions(), L, N)
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dsim /= np.average(np.average(np.average(dsim, axis=0), axis=0), axis=0)
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dsim -= 1
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dcic_hat = np.fft.rfftn(dcic)*(L/N)**3
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dsim_hat = np.fft.rfftn(dsim)*(L/N)**3
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Pcic, bcic = bic.bin_power(np.abs(dcic_hat)**2/L**3, L, bins=50)
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Psim, bsim = bic.bin_power(np.abs(dsim_hat)**2/L**3, L, bins=50)
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borg_evolved = ct.read_borg_vol("final_density_1380.dat")
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