🌀 Agitated Stirred Vessel Mixing & Impeller Power

Calculate agitated stirred tank reactor mixing: shaft power (kW / HP), Power number (Np), impeller Reynolds number, primary pumping rate, 95% blend time, and gassed power reduction.

⚡ Fortran 90 Engine Double Precision (IEEE 754) ✓ ISO / ASME Validated
📊 Solver Telemetry ● ACTIVE
👁️ Consultations 42
⚡ Calculs faits 36
💾 Téléchargements 158 📦 Code Fortran 4.5 KB
📅 Mise en service Jun 2026
⏱️ Latence < 1 ms
⚡ Outils & Rapports :
💾 Télécharger Fortran 90

🌀 Stirred Tank Reactor Hydrodynamics & Impeller Vortex

Real-time visual simulation: Rotating impeller, wall baffles, and circulation mixing streamlines

📝 Configuration & Presets

⚡ Rushton Gas Dispersion (180 rpm) 🧪 Fermenter Pitched Blade (120 rpm) 🍯 High-Viscosity Anchor (8.5 Pa·s) 💧 Water Flash Mixing Propeller
⚙️ Impeller Type & Baffles
📐 Geometry (Impeller & Vessel)
🧪 Fluid Properties & Aeration
0.0 for ungassed liquids
Rushton & Nagata Mixing Formulation:
• Impeller Reynolds Number: Rei = ρ · N · D² / μ
• Shaft Power: P = Np · ρ · N³ · D⁵ [Watts]
• Pumping Flow Rate: Qp = Nq · N · D³ [m³/s]
• 95% Blend Time: θ95 = 5.4 / (N · Np1/3) · (T/D)².

📊 Mixing Performance Results

📊 Output Summary
💾 Fortran Source

Impeller Shaft Power Demand
0.06 kW (0.08 HP)
Power Number Np: 0.350 | Rei: 375000
θ95 = 20.4 s
95% Homogenization Time 20.4 s 0.34 minutes
Primary Pumping Rate (Qp) 202.5 m³/h 56.2 L/s
Impeller Tip Speed 3.93 m/s Shear intensity index
Flow Regime in Vessel TURBULENT Re = 375000

📈 Shaft Power P (kW) vs Impeller Speed N (rpm)

📉 Blend Time θ_95 (s) vs Impeller Speed N (rpm)

=================================================================
 THERMOFLUIDCALC — AGITATED VESSEL MIXING & POWER REPORT
=================================================================
Case Title                 : Water Treatment Flash Mixing Propeller
Impeller Geometry          : Marine Propeller 3-Blade (Axial Low-Viscosity Blending)
Vessel & Speed             : Speed N = 250.0 rpm (4.17 rev/s), D = 0.30 m, Tank T = 1.00 m, Depth H = 1.00 m
Fluid & Aeration           : Density = 1000.0 kg/m3, Viscosity = 0.0010 Pa.s, Gassing = 0.00 vvm
-----------------------------------------------------------------
IMPELLER SHAFT POWER       : 0.062 kW (0.08 HP)
Power Number (Np)          : 0.3500
Impeller Reynolds (Re_i)   : 375000.0 (Fully Turbulent regime)
Primary Pumping Rate (Qp)  : 202.50 m3/h (56.25 L/s)
95%% Homogenization Time   : 20.4 seconds (0.34 minutes)
Impeller Tip Speed         : 3.93 m/s (Shear Index)
=================================================================

📘 Calculation Methodology & Industrial Mixing Standards

Power Number $N_p$ & Flow Number $N_q$

Governed by dimensionless numbers $N_p = P / (\rho N^3 D^5)$ and $N_q = Q_p / (N D^3)$. Wall baffles prevent central air vortexing and maximize power draw for rapid blending.

Aeration Gassing Reduction Factor

In aerated fermenters and bioreactors, rising gas cavities behind impeller blades reduce effective fluid density and drag, lowering power demand by up to $50\%$.

Key Engineering Assumptions

  • Standard cylindrical flat-bottom or dished-bottom stirred tank geometry.
  • Michel & Miller gassed power correlation for gas-liquid dispersions.
  • Applicable to chemical reactors, biopharma bioreactors, and polymer mixing.