VPD Calculator – Guide & Formulas
Calculate vapor pressure deficit (VPD) from temperature and humidity. Free online VPD calculator for greenhouse growing, indoor gardening, and plant science.
Calculate vapor pressure deficit (VPD) instantly from temperature and humidity. Optimize greenhouse and indoor growing conditions with accurate VPD readings in kilopascals.
Key Takeaway
Use the free VPD Calculator to calculate vapor pressure deficit (vpd) from temperature and humidity. free online vpd calculator for greenhouse growing, indoor gardening, and plant science. Get instant results with step-by-step explanations.
How to Use the VPD Calculator
- Enter the air temperature in °F or °C.
- Input the relative humidity as a percentage.
- Optionally enter leaf temperature for more accurate VPD.
- Review the calculated VPD in kPa and the recommended range for your growth stage.
The Formula
Variable Definitions
- VPD: Vapor Pressure Deficit — the difference between saturation and actual vapor pressure (kPa)
- es(Tleaf): Saturation vapor pressure at leaf temperature (kPa)
- ea: Actual vapor pressure = es(Tair) × (RH/100) (kPa)
- RH: Relative humidity as a percentage (e.g., 60 for 60%)
- T: Temperature in °C (convert °F: (°F - 32) × 5/9)
Calculating VPD for a Greenhouse at 72°F and 55% RH
Determine VPD for standard indoor growing conditions with leaf temp at 70°F.
- Step 1: Convert air temp: 72°F = 22.2°C. Leaf temp: 70°F = 21.1°C.
- Step 2: Saturation VP at leaf temp: 0.6108 × exp(17.27 × 21.1 / (21.1 + 237.3)) = 2.49 kPa.
- Step 3: Saturation VP at air temp: 0.6108 × exp(17.27 × 22.2 / (22.2 + 237.3)) = 2.66 kPa.
- Step 4: Actual VP: 2.66 × (55/100) = 1.46 kPa.
- Step 5: VPD = 2.49 - 1.46 = 1.03 kPa — ideal for vegetative growth (0.8–1.2 kPa).
Frequently Asked Questions
What is the ideal VPD for cannabis flowering?
During flowering, target a VPD of 1.2–1.6 kPa. This range promotes transpiration without excessive water loss. Lower VPD (0.8–1.0) during early flower, gradually increasing to 1.4–1.6 toward late flower and ripening.
How does VPD affect plant growth?
VPD drives transpiration, which pulls water and nutrients through the plant. Too low VPD (<0.4) causes slow transpiration, wet leaves, and mold risk. Too high VPD (>1.6) causes excessive water loss, wilting, and stomatal closure.
What is the difference between VPD and relative humidity?
Relative humidity measures how saturated the air is at a given temperature. VPD measures the actual drying power of the air — the deficit between current and saturated moisture. VPD is more useful for plant science because it accounts for temperature effects.
Should I use leaf temperature or air temperature for VPD?
For the most accurate VPD, use leaf temperature. Leaves are typically 2–5°F (1–3°C) cooler than air due to transpiration cooling. If you don't have a leaf thermometer, subtract 2°F from air temperature as a reasonable estimate.
What VPD is too high for seedlings?
Seedlings and clones need very low VPD (below 0.4 kPa) to prevent excessive water loss before roots establish. Use higher humidity (70–80%) and lower temperatures to maintain low VPD during the first 1–2 weeks.
How do I adjust VPD in my grow room?
Increase VPD by raising temperature or lowering humidity. Decrease VPD by lowering temperature or raising humidity. Dehumidifiers, humidifiers, exhaust fans, and AC are the primary tools for VPD management.
Does VPD change throughout the day?
Yes, VPD naturally increases during the day as temperatures rise and decreases at night as temperatures drop. Many growers target a VPD of 0.8–1.2 during the day and allow it to drop to 0.4–0.8 at night to reduce moisture stress during dark periods.
What is the Tetens equation used in this calculator?
The Tetens equation estimates saturation vapor pressure from temperature: es = 0.6108 × exp(17.27 × T / (T + 237.3)). It is widely used in meteorology and plant science for its accuracy between 0°C and 50°C.