🧪 Reflux Partial Condenser Sizer (Dephlegmator)

Size vertical reflux partial condensers and dephlegmators: Hewitt & Wallis flooding limit velocity, Silver-Bell-Ghaly heat transfer, and overhead vapor enrichment.

⚡ Fortran 90 Engine Double Precision (IEEE 754) ✓ ISO / ASME Validated
📊 Solver Telemetry ● ACTIVE
👁️ Consultations 25
⚡ Calculs faits 20
💾 Téléchargements 251 📦 Code Fortran 4.1 KB
📅 Mise en service Jun 2026
⏱️ Latence < 1 ms
⚡ Outils & Rapports :
💾 Télécharger Fortran 90

⚡ Counter-Current Vapor Ascent & Falling Liquid Reflux

Real-time visual simulation: Upward rising binary vapor, falling condensate reflux, and overhead purified vapor

📝 Configuration & Presets

🌾 Bioethanol Column Top 🧪 Methanol Stripper Reflux 🛢️ Aromatics Benzene-Toluene 💊 Pharma Acetone Recovery
🧪 Binary Vapor Mixture from Column
📐 Vertical Tube Bundle Geometry
Hewitt & Wallis Flooding Model:
• Flooding Velocity Limit: Vflood = 0.85 · √[g·Di·(ρL−ρv)/ρv] · [1 + (ρvL)1/4·(ṁL/ṁv)1/2]-2
• Flooding Margin: (Vactual / Vflood) · 100% < 80% (Safe operation)
• Silver-Bell-Ghaly Condensation: 1/U = 1/hcond + Z/hgas + tw/kw + 1/hcool.

📊 Performance Results

📊 Output Summary
💾 Fortran Source

Enriched Overhead Vapor Purity
88.4 mol% (Enriched)
Inlet: 80.0% | Duty: 586.5 kW
SAFE COUNTER-CURRENT FLOW
Flooding Limit Approach 47.0% V = 4.28 m/s / Vfl = 9.11 m/s
Reflux Condensate Return 1540 kg/h 70% reflux split
Overhead Distillate Vapor Flow 660 kg/h Purified top product
Overall U-Value (Silver-Bell) 405 W/(m²·K) 110 vertical tubes

📈 Flooding % vs Number of Vertical Tubes Nt

📊 Overhead Purity ytop (mol%) vs Reflux Fraction

=================================================================
 THERMOFLUIDCALC — REFLUX CONDENSER (DEPHLEGMATOR) REPORT
=================================================================
Case Title                 : Methanol Solvent Column Reflux Partial Condenser
Binary Mixture             : Methanol-Water (Chemical Solvent Stripper)
Vapor Feed Conditions      : mvap = 2200.0 kg/h, Tv = 72.0 C, yin = 80.0 mol%
Condenser Geometry         : Nt = 110 tubes, Di = 35.0 mm, L = 3.50 m
-----------------------------------------------------------------
VAPOR VELOCITY / FLOOD LIM : 4.28 m/s / 9.11 m/s
FLOODING APPROACH MARGIN   : 47.0% (SAFE COUNTER-CURRENT FLOW)
OVERHEAD VAPOR PURITY      : 88.40 mol% (Enriched from 80.0%)
Reflux Condensate Flow     : 1540.0 kg/h
Overhead Distillate Flow   : 660.0 kg/h
THERMAL CONDENSER DUTY (Q) : 586.54 kW
Overall Heat Transfer (U)  : 405.0 W/(m2.K)
=================================================================

📘 Calculation Methodology & Dephlegmator Standards

Internal Distillation Action

In a reflux partial condenser (dephlegmator), the counter-current contact between upward rising vapor and descending condensate film provides additional theoretical distillation stages, significantly enriching the overhead vapor.

Hewitt & Wallis Flooding Limit

High upward vapor velocities can bridge the tube diameter and prevent liquid reflux from descending, causing column liquid entrainment and pressure surge.

Key Engineering Assumptions

  • Silver-Bell-Ghaly multicomponent partial condensation resistance model.
  • Rayleigh fractionation equilibrium enrichment.
  • Widely used in bioethanol distillation, solvent recovery, and petrochemical fractionators.