PET formulas (Heat Overlay): Difference between revisions
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* <math>\phi_{t}</math> is the [[Sun_altitude_(Heat_Overlay)|sun altitude]] at time t; | * <math>\phi_{t}</math> is the [[Sun_altitude_(Heat_Overlay)|sun altitude]] at time t; | ||
* <math>B_{b,t}</math> is the [[Bowen_ratio_(Heat_Overlay)|bowen ratio]] at time t; | * <math>B_{b,t}</math> is the [[Bowen_ratio_(Heat_Overlay)|bowen ratio]] at time t; | ||
* <math>S_{vf}</math> is the calculated [[ | * <math>S_{vf}</math> is the calculated [[Sky_view_factor_calculation_model_(Heat_Overlay)|sky view factor]]. | ||
==PET Shade and Night formula== | ==PET Shade and Night formula== |
Revision as of 11:50, 20 September 2019
The physiological equivalent temperature PET is calculated for two possible options based on the situation:
- A cell is in the shade or it is night at time t: PETshade, night;
- A cell is in the sun during the day: PETsun;
PET Sun formula
The PET sun formula is as followed:
where,
- is the calculated atmospheric temperature at time t;
- is the hourly radiation at time t;
- is the calculated wind speed at 1.2 meters above ground time t;
- is the calculated wet-bulb temperature at time t;
- is the sun altitude at time t;
- is the bowen ratio at time t;
- is the calculated sky view factor.
PET Shade and Night formula
The PET shade and night formula is as followed:
where,
- is the calculated atmospheric temperature at time t;
- is the calculated wind speed at 1.2 meters above ground time t;
- is the calculated wet-bulb temperature at time t;
- is the calculated sky view factor;
- is the calculated diffusive radiation at time t;
- is the Stefan Boltzmann constant, which is .