TARANG.libp.fields.vect_field#

Attributes#

Classes#

Module Contents#

TARANG.libp.fields.vect_field.comm#
TARANG.libp.fields.vect_field.rank#
TARANG.libp.fields.vect_field.nprocs#
class TARANG.libp.fields.vect_field.VectorField#
Vkx = []#
Vky = []#
Vkz = []#
Vx = []#
Vy = []#
Vz = []#
force_Vx = []#
force_Vy = []#
force_Vz = []#
nlinx = []#
nliny = []#
nlinz = []#
ek = []#
Tk = []#
ek_table = []#
Tk_table = []#
total_energy = []#
total_dissipation = []#
standard_dissipation = []#
divergence = []#
total_injection = []#
ur = []#
Vkx_modes_t = []#
Vky_modes_t = []#
Vkz_modes_t = []#
Vkx_mode = []#
Vkz_mode = []#
Vky_mode = []#
set_arrays()#
init_cond(Vkx, Vky, Vkz, univ)#
init_cond_real(Vx, Vy, Vz, univ)#
update2D_Vkz(kx, kz)#
update3D_Vkz(kx, ky, kz)#
compute_divergence()#
compute_total_energy()#
compute_total_injection()#
compute_dissipation()#
compute_dissipation_alter(power)#
compute_ekTk(univ)#
dot_prod_nlin_VF(W=PlainVectorField())#
fill_shell(inner_radius, outer_radius, W=PlainVectorField())#
U_to_Ucopy(univ)#
Ucopy_to_U(univ)#
B_to_Bcopy(univ)#
Bcopy_to_B(univ)#