🌪️ Industrial Cyclone Particle Separator Sizer (Leith-Licht)
Size industrial cyclone dust collectors: 50% cut-off particle diameter (d50), fractional grade collection efficiency curve, inlet velocity, and pressure drop across Stairmand, Swift, and Lapple geometries.
⚡ Fortran 90 Engine
Double Precision (IEEE 754)
✓ ISO / ASME Validated
📊 Solver Telemetry
● ACTIVE
👁️ Consultations
19
⚡ Calculs faits
14
💾 Téléchargements
163
📦 Code Fortran
4.5 KB
📅 Mise en service
Jun 2026
⏱️ Latence
< 1 ms
🌪️ Reverse-Flow Cyclone Double Vortex & Centrifugal Separation
Real-time visual simulation: Outer descending dust vortex, inner clean gas vortex core, and hopper collection📝 Configuration & Presets
Lapple & Leith-Licht Formulation:
• Cut-off Diameter: d₅₀ = √[ 9 μg b / (2 π Ne Vin (ρp − ρg)) ] [μm]
• Grade Collection Efficiency: η(dp) = 1 / [ 1 + (d₅₀/dp)² ]
• Pressure Drop: ΔPc = ½ ρg Vin² · NH [mbar]
• Recommended Inlet Velocity: Vin ≈ 15 − 22 m/s.
• Cut-off Diameter: d₅₀ = √[ 9 μg b / (2 π Ne Vin (ρp − ρg)) ] [μm]
• Grade Collection Efficiency: η(dp) = 1 / [ 1 + (d₅₀/dp)² ]
• Pressure Drop: ΔPc = ½ ρg Vin² · NH [mbar]
• Recommended Inlet Velocity: Vin ≈ 15 − 22 m/s.
📊 Separation Results
📊 Output Summary
Grade Collection Efficiency (at 6.5 μm)
62.66 %
Cut-off Diameter d50: 5.02 μm | Pressure Drop: 10.7 mbar
Vin = 18.5 m/s
Cut-off Diameter (d50)
5.02 μm
50% capture threshold
Cyclone Pressure Drop (ΔP)
10.7 mbar
1.07 kPa
Inlet Duct Gas Velocity
18.52 m/s
Target: 15 - 22 m/s
Overall Cyclone Height
2.40 m
4.0 × Dc
📈 Fractional Grade Efficiency η (%) vs Particle Size dp (μm)
📉 Cyclone Pressure Drop ΔP (mbar) vs Inlet Velocity Vin (m/s)
================================================================= THERMOFLUIDCALC — CYCLONE PARTICLE SEPARATOR REPORT ================================================================= Case Title : Food Spray Dryer Milk Powder Recovery Cyclone Geometry Standard : Stairmand High-Efficiency (a=0.5D, b=0.2D, De=0.5D, NH=6.4) Barrel Diameter (Dc) : 0.60 m (Inlet = 0.30 m × 0.12 m) Flow Conditions : Q = 2400.0 m3/h (0.67 m3/s), Temp = 90.0 C, Pressure = 1.02 bar Dust Characteristics : dp = 6.50 microns, Solid Density = 1300.0 kg/m3 ----------------------------------------------------------------- CUT-OFF DIAMETER (d50) : 5.018 microns GRADE COLLECTION EFFICIENCY: 62.66 % (at 6.5 um) CYCLONE PRESSURE DROP : 10.74 mbar (1.074 kPa) Inlet Duct Velocity (Vin) : 18.52 m/s =================================================================
📘 Calculation Methodology & Cyclone Dedusting Standards
Reverse-Flow Vortex Centrifugal Force
Tangential gas injection creates a powerful double vortex where centrifugal acceleration pushes solid particles outwards to the conical wall, falling into the bottom dust hopper.
Stairmand vs Swift Proportions
Standardized geometric proportions balance collection efficiency against pressure drop ($N_H = 6.4 - 9.2$ velocity heads), ensuring optimal fan electrical consumption.
Key Engineering Assumptions
- Lapple / Leith-Licht semi-empirical grade efficiency formulation.
- Ideal Stokes drag on micron-sized solid dust particles.
- Applicable to cement kilns, biomass boilers, woodworking shops, and spray dryers.