NEWKIS STUDIO

Microclimate Physical Diagnostics System

www.newkis.com/newkis-studio
🌿 Target Crop Selection
📐 Greenhouse Dimensions (m)
📉 Crop Canopy Leaf Density
Damping Factor0.43
🌱 Seedling 🌿 Vegetative 🍅 Harvest
🌀 Fan Velocity Regulation
Rated Fan Exit Velocity6.50 m/s
Low Jet Standard Max Jet
Calculating...
Greenhouse Microclimate Simulation Cloud Chart
ENGINE: Fast Kinetic Twin | MODEL: Parametric Physics | ● ONLINE (AWS)
NEWKIS STUDIO™ Microclimate Physical Diagnostic Report
Crop Mode: 🍅 High-wire Crops (Tomato, Pepper, Cucumber)
High-humid dead zone: 0%
Recommended Velocity: 6.76 m/s
Airflow Optimization & Humidity Control
Effective Breeze Zone (>0.3 m/s)
High-Humid Dead Zone (<0.1 m/s)
Risk Evaluation Microclimate Dead Zone Risk: ● Optimal [Unlock Exact % in Report]
Energy Efficiency Fan Power & Duty-Point Status: ● Efficient [Unlock Target m/s in Report]
📊 Physical Diagnostics & Engineering Metrics
🛡️ Microclimate Dead Zone Suppression
Eliminates stagnant air pockets, promoting uniform humidity distribution and mitigating microclimate conditions favorable to fungal spore germination.
🌱 Canopy Transpiration Rate Control
Maintains air velocity within the optimal aerodynamic boundary layer (>0.3 m/s), encouraging steady transpiration and nutrient uptake.
⚡ Fan Aerodynamic Duty-Point Tuning
Prevents excessive fan throttling or over-speeding; operates at the ideal velocity (6.76 m/s) to optimize overall system airflow efficiency.
NEWKIS STUDIO™
[Technical Notice] Powered by NEWKIS STUDIO Fast Digital-Twin Simulation Kernel. All calculation values are physics-based estimations.
[Limitation of Liability] NEWKIS Studio holds no liability beyond service fee.