Supercritical CO2 Brazed Plate Exchanger (BPHE)

Size Supercritical CO2 (sCO2) Brazed Plate Heat Exchangers (BPHE): pseudo-critical temperature (Tpc), Jackson & Hall chevron Nusselt model, compactness density, and gas cooler duty.

⚡ Fortran 90 Engine Double Precision (IEEE 754) ✓ ISO / ASME Validated
📊 Solver Telemetry ● ACTIVE
👁️ Consultations 42
⚡ Calculs faits 36
💾 Téléchargements 241 📦 Code Fortran 4.1 KB
📅 Mise en service Jun 2026
⏱️ Latence < 1 ms
⚡ Outils & Rapports :
💾 Télécharger Fortran 90

⚡ Supercritical CO2 High-Pressure Chevron Corrugated Channels

Real-time visual simulation: sCO2 gas cooler channel (red to orange) and counterflow water (blue to cyan)

📝 Configuration & Presets

🔥 Transcritical CO2 Heat Pump ⚡ sCO2 Brayton Recuperator 🛒 R744 Supermarket Gas Cooler 🏭 sCO2 Waste Heat Recovery
⚡ Supercritical CO2 Stream
💧 Coolant Water Stream
📐 Brazed Chevron Plate Geometry
Supercritical CO2 BPHE Formulation:
• Pseudo-Critical Temp: Tpc = 31.04 + 0.35 · (P − 73.8) [°C]
• Supercritical Chevron Nusselt: Nu = 0.30 · Re0.68 · Pr0.40 · sin(β)0.30
• Thermal Compactness: βvol > 1000 m²/m³ (Ultra-compact footprint)
• Heat Duty: Q̇ = ṁsCO2 · (hin − hout) [kW].

📊 Performance Results

📊 Output Summary
💾 Fortran Source

Gas Cooler Thermal Duty (Q̇)
567.3 kW (0.567 MW)
Pseudo-Critical Tpc: 36.7 °C | Pressure: 90 bar
TRANS-PSEUDOCRITICAL COOLING
sCO2 Outlet Temperature 40.3 °C Inlet = 110 °C
Coolant Water Outlet Temp 53.9 °C Inlet = 20 °C
sCO2 Heat Transfer Coeff (h) 3962 W/(m²·K) Overall U = 2177 W/(m²·K)
Area Compactness Density 407 m²/m³ 60 chevron plates

📈 Heat Duty Q̇ (kW) vs Operating Pressure P (bar)

📊 sCO2 Heat Coeff hs [W/(m²·K)] vs Plates Count Np

=================================================================
 THERMOFLUIDCALC — SUPERCRITICAL CO2 BPHE SIZING REPORT
=================================================================
Case Title                 : Transcritical CO2 Heat Pump Gas Cooler BPHE
Supercritical CO2 Stream   : P = 90.0 bar, T_in = 110.0 C, m = 2.50 kg/s (Tpc = 36.71 C)
Coolant Water Stream       : T_cool_in = 20.0 C, m_cool = 4.00 kg/s
BPHE Plate Geometry        : Np = 60 plates, W = 0.25 m, L = 0.60 m, Chevron = 60 deg
-----------------------------------------------------------------
SUPERCRITICAL REGIME       : TRANS-PSEUDOCRITICAL COOLING
GAS COOLER THERMAL DUTY (Q): 567.30 kW (0.567 MW)
sCO2 Heat Coeff (h_sco2)   : 3961.5 W/(m2.K)
Overall Heat Transfer (U)  : 2177.5 W/(m2.K)
sCO2 Outlet Temperature    : 40.30 deg C
Coolant Water Outlet Temp  : 53.90 deg C
sCO2 Pressure Drop         : 3.98 kPa
Area Compactness Density   : 407 m2/m3
=================================================================

📘 Calculation Methodology & Supercritical CO2 Standards

Pseudo-Critical Property Variations

Near the pseudo-critical line ($T_{pc}$), $CO_2$ undergoes dramatic non-linear spikes in specific heat ($c_p$) and shifts in density, providing exceptionally high heat exchange rates without boiling/pinch limitations.

High-Pressure Brazed Plate Compactness

Chevron corrugated vacuum-brazed stainless steel plates provide compactness exceeding $1000\,\text{m}^2/\text{m}^3$ while withstanding pressures beyond $100 - 150\,\text{bar}$.

Key Engineering Assumptions

  • Modified Jackson & Hall supercritical Nusselt correlation for chevron BPHEs.
  • Counter-current gas cooling without condensation phase change.
  • Used in transcritical $CO_2$ heat pumps, R744 supermarket refrigeration, and $sCO_2$ Brayton power cycles.