🧪 Falling Film Absorber (Nusselt & Higbie)
Model vertical wetted-wall falling film tube absorbers, evaluating Nusselt laminar film thickness, surface velocity, Higbie penetration kL, and contact time.
⚡ Fortran 90 Engine
Double Precision (IEEE 754)
✓ ISO / ASME Validated
📊 Solver Telemetry
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📦 Code Fortran
6.4 KB
📅 Mise en service
Jun 2026
⏱️ Latence
< 1 ms
🧪 Vertical Wetted-Wall Tube Falling Film Hydrodynamics & Gas Absorption
Real-time visual simulation of liquid falling film gravity drain, surface velocity & interfacial solute mass transfer📝 Configuration & Presets
Nusselt & Higbie Formulations:
• Perimeter Flow: Γ = (ṀL / Nt) / (π Dt) [kg/(m·s)]
• Film Thickness: δ = [ 3 μ Γ / (ρ² g) ]1/3 [mm]
• Surface Velocity: us = (ρ g δ²) / (2 μ) [m/s]
• Higbie Coefficient: kL = 2 · √( DAB / (π tc) ) [m/s]
• Perimeter Flow: Γ = (ṀL / Nt) / (π Dt) [kg/(m·s)]
• Film Thickness: δ = [ 3 μ Γ / (ρ² g) ]1/3 [mm]
• Surface Velocity: us = (ρ g δ²) / (2 μ) [m/s]
• Higbie Coefficient: kL = 2 · √( DAB / (π tc) ) [m/s]
📊 Falling Film Performance Results
📊 Output Summary
Nusselt Film Thickness (δ)
δ = 0.673 mm
Mass Transfer: kL = 0.09 m/h (2.54e-5 m/s)
Refilm = 663
Surface Film Velocity (us)
0.906 m/s
uavg = 0.604 m/s
Liquid Exposure Time (tc)
2.76 seconds
Higbie contact time
Total Interfacial Wetted Area
6.03 m²
24 tubes
Perimeter Wetting Rate (Γ)
0.4145 kg/(m·s)
Full Surface Wetting
📈 Film Thickness δ (mm) vs Total Liquid Flow (kg/h)
📉 Mass Transfer Coeff k_L (m/h) vs Tube Length (m)
================================================================= THERMOFLUIDCALC — FALLING FILM ABSORBER HYDRAULICS REPORT ================================================================= Case Title : CO2 Post-Combustion Carbon Capture Amine (MEA) Film Tube Bundle Dimensions : 24 tubes x 32.0 mm ID x 2.50 m length Total Interfacial Area : 6.03 m2 Liquid Flow Rate : 3600.0 kg/h (Per tube: 150.00 kg/h) Perimeter Loading (Gamma) : 0.4145 kg/(m.s) Film Reynolds Number : 663.1 (Laminar wavy) ----------------------------------------------------------------- NUSSELT FILM THICKNESS (d) : 0.6729 mm (6.73e-4 m) Surface Film Velocity (us) : 0.9058 m/s (Average u = 0.6039 m/s) Contact / Exposure Time : 2.760 seconds HIGBIE MASS TRANSFER (kL) : 0.091 m/h (2.541e-5 m/s) =================================================================
📘 Calculation Methodology & Falling Film Standards
Nusselt Laminar Gravity Film
Equating downward gravity body force with wall viscous shear yields the classical parabolic velocity profile across the falling film thickness $\delta$:
δ = [ 3 μ Γ / (ρ² g) ]1/3
Higbie Penetration Theory
For short contact times, solute diffusion penetrates only into the top liquid boundary layer, giving mass transfer coefficient scaling as $k_L \propto \sqrt{D_{AB} / t_c}$.
Key Engineering Assumptions
- Uniform liquid distribution around tube circumference.
- Wetting rate $\Gamma > 0.04\,\text{kg/(m}\cdot\text{s)}$ to prevent film dryout.
- Negligible interfacial shear stress from counter-current or co-current gas.