Challenge: efficiency of a wind turbine. A wind turbine has a rotor of radius and produces in a wind of (). Estimate its efficiency and compare it with the Betz limit ().
Solution
Data: , , , .
Area swept by the rotor:
Power of the wind passing through the rotor. The mass of air passing per second is , and its kinetic energy per unit time is (depends on the cube of the speed):
Blade efficiency:
Comparison with the Betz limit. No turbine can extract more than of the wind’s energy (otherwise the air would come to a complete stop behind the rotor, blocking the flow). The ratio between actual efficiency and theoretical limit:
Physical reading. The turbine captures about of the wind’s energy, a little over a third of the maximum physically allowed by Betz. The rest escapes because the air must keep flowing (it cannot stop) and because of unavoidable aerodynamic and mechanical losses. The strong dependence explains why windy sites are so valuable: doubling the wind speed multiplies the available power by eight.
Collegamenti
Argomenti: Work and energy Concetti: Power · Kinetic energy Competenze: Fermi estimates