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How Do Wind Turbines Work?

Learn the basics of how wind turbines operate to produce clean power from an abundant, renewable resource—the wind.


Summary:    Wind flow patterns and speeds vary greatly across the United States and are modified by bodies of water, vegetation, and differences in terrain. Humans use this wind flow, or motion energy, for many purposes: sailing, flying a kite, and even generating electricity. The difference in air pressure across the two sides of the blade creates both lift and drag.


The Power of Wind: How Wind Turbines Work

The Power of Wind: How Wind Turbines Work

Have you ever stopped to marvel at the majestic beauty of wind turbines spinning gracefully in the wind? These towering structures are not only a sight to behold but also a powerful source of renewable energy known as wind power. In this article, we will explore the fascinating world of wind energy and uncover the inner workings of wind turbines.

What is Wind Energy?

Wind energy is a sustainable and clean form of energy that harnesses the power of the wind to generate electricity. It is a rapidly growing industry that is helping to reduce our reliance on fossil fuels and combat climate change.

How Do Wind Turbines Work?

Wind turbines work on a simple principle: they capture the kinetic energy of the wind and convert it into mechanical power. When the wind blows, it causes the blades of the turbine to rotate. The rotor is connected to a generator, which produces electricity from this rotational motion.

The Advantages and Disadvantages of Wind Energy

One of the main advantages of wind energy is that it is a renewable resource that produces no greenhouse gas emissions. Additionally, wind farms can be built both onshore and offshore, providing flexibility in their placement. However, one of the disadvantages of wind energy is its intermittency, as wind speeds are not constant.

Types of Wind Turbines

There are two main types of wind turbines: horizontal-axis turbines, which have blades that spin around a horizontal axis like a propeller, and vertical-axis turbines, which have blades that spin around a vertical axis. Each type has its own advantages and applications.

EWE Windkraft: Pioneering Wind Energy

EWE is a leading company in the field of wind energy, dedicated to developing innovative solutions for sustainable power generation. Their commitment to renewable energy is paving the way for a cleaner and greener future.


Youtube Video


Video description: Windkraft - Die Energie des 21. Jahrhunderts


Learn the basics of how wind turbines operate to produce clean power from an abundant, renewable resource—the wind.
Image description: Learn the basics of how wind turbines operate to produce clean power from an abundant, renewable resource—the wind.


Social Media Tags:    

  • #Wind
  • #events
  • #rotor
  • #flow
  • #Irregularities
  • #turbine
  • #energy
  • #electricity
  • #blade
  • #mechanical
  • #rotation
  • #generator
  • #earth
  • #force
  • #power


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We can answer the following questions in this text:

  • Welche Energie benötigt ein Windrad? - Die Leistung von Windrädern hängt von vielen Faktoren ab, darunter der Windgeschwindigkeit und der Größe des Rotors. In Deutschland kann ein durchschnittliches Windrad mit einer Leistung von 6 MW jährlich ca. 10 Gigawattstunden Strom und kann etwa 3.500 Haushalte ganzjährig mit Elektrizität versorgen.

  • Wie viel Energie hat der Wind? - Bei einer Windgeschwindigkeit von 8 Metern pro Sekunde haben wir z.B. ein Leistungspotential (Energie pro Sekunde) von 314 Watt pro Quadratmeter windexponierter Fläche, wenn der Wind senkrecht auf diese Rotorfläche trifft. Bei 16 m/s erhalten wir das Achtfache, das wären dann 2509 W/qm.

  • Wie teuer ist es ein Windrad zu bauen? - Abhängig vom Standort betragen die Kosten pro installiertem Megawatt Leistung rund 2,5 bis 4 Millionen Euro. Bei einem 400-MW-Projekt wie beispielsweise Borkum Riffgrund West sprechen wir also von einem Investitionsvolumen von über einer Milliarde Euro.

  • Haben Windräder einen Motor zum Antrieb? - Alle modernen Windenergieanlagen werden durch aktive Systeme mit Azimutantrieben automatisch nachgeführt. Die Windrichtungsnachführung wird durch hydraulische Motoren oder Elektromotoren gewährleistet.


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