:orphan: .. _pre_processing_turbulent_wall_functions_1: turbulent_wall_functions ======================== .. autoclass:: ansys.cfx.core.generated.pre_processing.settings_261.turbulent_wall_functions_1.turbulent_wall_functions :show-inheritance: .. rubric:: Attributes ============================================================================================= =========================================================================== Attribute Summary ============================================================================================= =========================================================================== :ref:`enabled ` Enable the TURBULENT WALL FUNCTIONS object. :ref:`option ` The 'Turbulent Wall Functions' option. :ref:`high_speed_model ` 'High Speed Model' parameter. :ref:`wall_function_transfer_coefficient ` Wall Function Transfer Coefficient. :ref:`kappa_coefficient ` Turbulent wall function log-law coefficient Kappa. :ref:`c_coefficient ` Turbulent wall function log-law coefficient C. :ref:`near_wall_distance_factor ` Omega models=2.0; other models=0.5 (scaling factor for near wall distance). :ref:`energy_calibration_coefficient ` Temperature log-law coefficient CTROUGH1 for rough walls. :ref:`minimum_yplus ` Scalable wall function (log-law) minimum y+ value. :ref:`blended_near_wall_treatment ` Blending of viscous and turbulent approaches to compute wall stresses. :ref:`shear_velocity_scaling_model ` Sets the shear velocity scaling model. ============================================================================================= =========================================================================== .. rubric:: Included in: ======================================================================= =============================================================================== Parent Summary ======================================================================= =============================================================================== :ref:`turbulent_heat_transfer ` Singleton holding model interactions among Turbulence and Heat Transfer Models. ======================================================================= ===============================================================================