๐ŸŒช๏ธ Wind Turbine BEM & Betz Limit Sizer

Calculate wind turbine aerodynamics with Blade Element Momentum (BEM) theory: power coefficient Cp, Betz limit, tip-speed ratio lambda, thrust load, and AEP.

โšก Fortran 90 Engine Double Precision (IEEE 754) โœ“ ISO / ASME Validated
Wind Turbine BEM & Betz Limit Sizer Turbomachinery
๐Ÿ“Š Solver Telemetry โ— ACTIVE
๐Ÿ‘๏ธ Views 41
โšก Solves 31
๐Ÿ’พ Downloads 481 ๐Ÿ“ฆ Fortran Code 5.2 KB
๐Ÿ“… Released Jun 2026
โฑ๏ธ Latency < 1 ms
โšก TOOLS & REPORTS:
๐Ÿ’พ Download Fortran 90

๐ŸŒช๏ธ 3-Blade HAWT Rotor, Tower & Streamline Wake Deflection

Real-time visual simulation: Free-stream wind deceleration through disk, induction factor a, and wake expansion

๐Ÿ“ Configuration & Presets

๐ŸŒŠ NREL 5MW Offshore โšก Giant 8MW Deepwater ๐Ÿž๏ธ Commercial 3MW Onshore ๐Ÿก 50kW Community Turbine
๐ŸŒฌ๏ธ Wind Resource & Atmospheric State
๐Ÿ“ Rotor Geometry & Kinematics
BEM Theory & Betz Formulation:
โ€ข Tip Speed Ratio: ฮป = (ฯ€ ยท D ยท N / 60) / Vโˆž
โ€ข Betz Theoretical Limit: Cp,max = 16/27 โ‰ˆ 59.26%
โ€ข Aero Power: Paero = ยฝ ยท ฯ ยท A ยท Vโˆžยณ ยท Cp(ฮป, ฮฒ) [MW]
โ€ข Rotor Thrust: T = ยฝ ยท ฯ ยท A ยท Vโˆžยฒ ยท CT [kN].

๐Ÿ“Š Performance Results

๐Ÿ“Š Output Summary
๐Ÿ’พ Fortran Source

Turbine Electrical Rated Power
7.97 MW (7971 kW)
Power Coeff Cp: 0.379 (Betz Limit: 59.3%) | TSR ฮป: 7.51
STALL / OFF-DESIGN OPERATION
Annual Energy Yield (AEP) 37.46 GWh/yr Weibull c = 9.5 m/s
Rotor Aerodynamic Thrust 706.7 kN Thrust Coeff CT = 0.379
Blade Tip Speed (Utip) 90.2 m/s 324.6 km/h
Rotor Swept Area 21124 mยฒ Diameter = 164 m

๐Ÿ“ˆ Electrical Power P (MW) vs Wind Speed Vโˆž (m/s)

๐Ÿ“Š Aerodynamic Coeff Cp vs Tip Speed Ratio ฮป

=================================================================
 THERMOFLUIDCALC โ€” WIND TURBINE BEM & BETZ REPORT
=================================================================
Case Title                 : Modern 8MW Offshore Deepwater Turbine
Wind Resource              : V = 12.0 m/s, rho = 1.225 kg/m3, Weibull c = 9.5 m/s
Rotor Geometry             : D = 164.0 m (Area = 21124 m2), N = 10.5 rpm, Pitch = 0.0 deg
-----------------------------------------------------------------
ELECTRICAL POWER (P_elec)  : 7.971 MW (7971.2 kW)
Aerodynamic Power (P_aero) : 8.480 MW (Cp = 0.379 / Betz = 0.593)
Tip Speed Ratio (TSR ฮป)    : 7.51 (Tip Speed: 90.2 m/s)
Rotor Total Thrust Load    : 706.7 kN (Ct = 0.379)
Estimated Annual Yield AEP : 37.46 GWh/year
Operating Regime Status    : STALL / OFF-DESIGN OPERATION
=================================================================

๐Ÿ“˜ Calculation Methodology & Wind Aerodynamics Standards

Blade Element Momentum (BEM) Theory

BEM couples 1D momentum conservation across the rotor streamtube with 2D sectional airfoil lift and drag properties, resolving axial and angular flow induction factors $a$ and $a'$.

Betz Limit & Glauert Correction

Albert Betz proved that no wind turbine can capture more than 59.26% of kinetic energy. The Glauert correction handles high thrust states ($a > 0.33$) where momentum theory breaks down due to turbulent wake vortex mixing.

Key Engineering Assumptions

  • IEC 61400-1 wind turbine design standards.
  • Rayleigh/Weibull annual wind speed distribution.
  • Widely used for onshore and offshore wind farm power rating and fatigue thrust analysis.