#include <NvFlow.h>
Data Fields | |
| float | buoyancyPerTemp |
| Buoyant force per unit temperature. | |
| float | burnPerTemp |
| Burn amount per unit temperature above ignitionTemp. | |
| float | coolingRate |
| Cooling rate, exponential. | |
| float | divergencePerBurn |
| Expansion per unit burn. | |
| NvFlowGridMaterialPerComponent | fuel |
| Fuel component parameters. | |
| float | fuelPerBurn |
| Fuel consumed per unit burn. | |
| float | ignitionTemp |
| Minimum temperature for combustion. | |
| NvFlowGridMaterialPerComponent | smoke |
| Smoke component parameters. | |
| float | smokePerBurn |
| Smoke increase per unit burn. | |
| NvFlowGridMaterialPerComponent | temperature |
| Temperature component parameters. | |
| float | tempPerBurn |
| Temperature increase per unit burn. | |
| NvFlowGridMaterialPerComponent | velocity |
| Velocity component parameters. | |
| float | vorticityConstantMask |
| Works as other masks, provides fixed offset. | |
| float | vorticityFuelMask |
| 0.f disabled; 1.0f higher fuel, higher strength; -1.0f for inverse | |
| float | vorticitySmokeMask |
| 0.f disabled; 1.0f higher smoke, higher strength; -1.0f for inverse | |
| float | vorticityStrength |
| Higher values increase rotation, reduce laminar flow. | |
| float | vorticityTemperatureMask |
| 0.f disabled; 1.0f higher temperatures, higher strength; -1.0f for inverse | |
| float | vorticityVelocityMask |
| 0.f disabled; 1.0f higher velocities, higher strength; -1.0f for inverse | |
Buoyant force per unit temperature.
Burn amount per unit temperature above ignitionTemp.
Cooling rate, exponential.
Expansion per unit burn.
Fuel component parameters.
Fuel consumed per unit burn.
Minimum temperature for combustion.
Smoke component parameters.
Smoke increase per unit burn.
Temperature component parameters.
Temperature increase per unit burn.
Velocity component parameters.
Works as other masks, provides fixed offset.
0.f disabled; 1.0f higher fuel, higher strength; -1.0f for inverse
0.f disabled; 1.0f higher smoke, higher strength; -1.0f for inverse
Higher values increase rotation, reduce laminar flow.
0.f disabled; 1.0f higher temperatures, higher strength; -1.0f for inverse
0.f disabled; 1.0f higher velocities, higher strength; -1.0f for inverse