icing#

class ansys.fluent.core.generated.solver.settings_261.icing(name=None, parent=None)#

Bases: Group

Allows to change icing model variables or settings.

Attributes

Attribute

Summary

fensapice_flow_bc_subtype

Sets the flow boundary condition subtype for icing simulations.

fensapice_drop_bccustom

Enables custom droplet boundary condition settings.

fensapice_drop_lwc

Defines the Liquid Water Content (LWC) of the droplets.

fensapice_drop_dtemp

Defines the temperature of the droplets.

fensapice_drop_ddiam

Defines the diameter of the droplets.

fensapice_drop_dv

Enables the droplet velocity to be set.

fensapice_drop_dx

Defines the x-component of the droplet velocity.

fensapice_drop_dy

Defines the y-component of the droplet velocity.

fensapice_drop_dz

Defines the z-component of the droplet velocity.

fensapice_dpm_surface_injection

Enables surface injection of droplets in the DPM model.

fensapice_dpm_inj_nstream

Defines the number of streams for droplet injection in the DPM model.

fensapice_dpm_rh_mode

Defines the mode for relative humidity in the DPM model.

fensapice_drop_icc

Defines the Ice Crystal Concentration (ICC) for the droplets.

fensapice_drop_ctemp

Defines the temperature of the ice crystals.

fensapice_drop_cmelt

Defines the melting coefficient for the ice crystals.

fensapice_drop_cdiam

Defines the diameter of the ice crystals.

fensapice_drop_cv

Enables the ice crystal velocity to be set.

fensapice_drop_cx

Defines the x-component of the ice crystal velocity.

fensapice_drop_cy

Defines the y-component of the ice crystal velocity.

fensapice_drop_cz

Defines the z-component of the ice crystal velocity.

fensapice_drop_vrh

Enables the use of the VRH model for ice crystal collisions.

fensapice_drop_vrh_1

Defines the VRH model parameter for ice crystal collisions.

fensapice_drop_vc

Defines the collision efficiency for ice crystals.

Included in:

Parent

Summary

inlet_vent_child

‘child_object_type’ of inlet_vent.

phase_7_child

‘child_object_type’ of phase.

intake_fan_child

‘child_object_type’ of intake_fan.

phase_8_child

‘child_object_type’ of phase.

mass_flow_inlet_child

‘child_object_type’ of mass_flow_inlet.

phase_11_child

‘child_object_type’ of phase.

mass_flow_outlet_child

‘child_object_type’ of mass_flow_outlet.

phase_12_child

‘child_object_type’ of phase.

pressure_far_field_child

‘child_object_type’ of pressure_far_field.

phase_19_child

‘child_object_type’ of phase.

pressure_inlet_child

‘child_object_type’ of pressure_inlet.

phase_20_child

‘child_object_type’ of phase.

velocity_inlet_child

‘child_object_type’ of velocity_inlet.

phase_26_child

‘child_object_type’ of phase.

inlet_vent_1_child

‘child_object_type’ of inlet_vent.

phase_31_child

‘child_object_type’ of phase.

intake_fan_1_child

‘child_object_type’ of intake_fan.

phase_32_child

‘child_object_type’ of phase.

mass_flow_inlet_1_child

‘child_object_type’ of mass_flow_inlet.

phase_35_child

‘child_object_type’ of phase.

mass_flow_outlet_1_child

‘child_object_type’ of mass_flow_outlet.

phase_36_child

‘child_object_type’ of phase.

pressure_far_field_1_child

‘child_object_type’ of pressure_far_field.

phase_43_child

‘child_object_type’ of phase.

pressure_inlet_1_child

‘child_object_type’ of pressure_inlet.

phase_44_child

‘child_object_type’ of phase.

velocity_inlet_1_child

‘child_object_type’ of velocity_inlet.

phase_50_child

‘child_object_type’ of phase.