Pelton Hydro Turbine Runner & Bucket Sizer

Size high-head Pelton impulse hydro turbines: water jet velocity, pitch circle diameter (PCD), bucket double-spoon dimensions, Tygun bucket count, and Euler power.

⚡ Fortran 90 Engine Double Precision (IEEE 754) ✓ ISO / ASME Validated
📊 Solver Telemetry ● ACTIVE
👁️ Consultations 35
⚡ Calculs faits 28
💾 Téléchargements 209 📦 Code Fortran 5.2 KB
📅 Mise en service Jun 2026
⏱️ Latence < 1 ms
⚡ Outils & Rapports :
💾 Télécharger Fortran 90

⚡ Rotating Pelton Wheel, High-Speed Nozzle Jets & Splitter Buckets

Real-time visual simulation: High-head needle nozzle jet striking bucket splitters and deflecting at 165°

📝 Configuration & Presets

🏔️ High-Alpine (4-Jet) ⚡ Mega Pelton (6-Jet 1200m) 🏞️ Mountain Valley (2-Jet) 💧 Pico-Hydro Mountain
🏔️ Hydro Resource & Discharge
📐 Generator Speed & Nozzles
⚙️ Kinematics & Bucket Deflection
Euler Impulse Pelton Formulation:
• Water Jet Velocity: Vj = Cv · √(2·g·Hnet) [m/s]
• Runner Pitch Diameter: D1 = (60 · ku · Vj) / (π · N) [m]
• Tygun Buckets Formula: Zb = round(0.5 · (D1/dj) + 15)
• Shaft Power: Pshaft = ρ · Q · g · Hnet · ηoverall [MW].

📊 Performance Results

📊 Output Summary
💾 Fortran Source

Turbine Generated Shaft Power
85.70 MW (85703 kW)
Overall Efficiency: 91.0% | Jet Speed: 151.1 m/s
LIGHTLY LOADED / HIGH HEAD
Runner Pitch Circle Diam (PCD) 2.26 m Jet Ratio D/dj = 21.3
Number of Buckets (Tygun) 26 buckets 6 injector nozzles
Water Jet Diameter (dj) 106.0 mm Velocity = 151.1 m/s
Bucket Width × Length 318 × 276 mm Double-spoon splitter

📈 Shaft Power Output P (MW) vs Net Water Head H (m)

📊 Efficiency η (%) vs Peripheral Speed Ratio ku = U/Vj

=================================================================
 THERMOFLUIDCALC — PELTON TURBINE RUNNER & BUCKET REPORT
=================================================================
Case Title                 : Ultra-High Head Mega Pelton Plant (6-Jet)
Hydro Operating Point      : Hnet = 1200.0 m, Qtot = 8.000 m3/s, N = 600 rpm, Nozzles = 6
Kinematics & Speeds        : Vj = 151.11 m/s, ku = 0.470, D_pitch = 2.261 m
-----------------------------------------------------------------
SHAFT POWER OUTPUT (P_sh)  : 85.703 MW (85703.4 kW)
Hydraulic Power Potential  : 94.144 MW
Overall Efficiency (eta_o) : 91.03% (Hydraulic: 92.89%)
Water Jet Diameter (dj)    : 106.0 mm (Jet ratio D/dj = 21.33)
Number of Buckets (Tygun)  : 26 buckets (LIGHTLY LOADED / HIGH HEAD)
Bucket Dimensions          : Width = 318.0 mm, Length = 275.6 mm, Depth = 106.0 mm
=================================================================

📘 Calculation Methodology & Pelton Turbine Standards

Impulse Turbine Kinematics

All pressure energy is converted into kinetic energy in stationary needle nozzles, generating high-velocity water jets ($V_j > 100\,\text{m/s}$) that strike double-spoon buckets at atmospheric pressure.

Bucket Splitter & 165° Deflection

The central splitter ridge divides the jet symmetrically into two equal streams, deflecting them through $165^\circ$ to extract virtually all kinetic energy without interfering with the subsequent bucket.

Key Engineering Assumptions

  • IEC 60193 hydraulic impulse turbine standards.
  • Tygun bucket count empirical correlation.
  • Widely used in high-head mountain hydroelectric plants ($H > 150\,\text{m}$).