Why can t airplanes flap their wings like birds? 35

Updated on science 2024-06-18
16 answers
  1. Anonymous users2024-02-12

    Because the wings are very heavy.

    Wings usually have straight wings, swept wings, delta wings, etc. The front and rear of the wing are basically straight and the front and rear edges are swept backward and are called swept wings, and the plane shape of the wing is triangular.

    The former is suitable for low-speed aircraft, and the latter two are suitable for high-speed aircraft. Recently, advanced aircraft have also adopted planar shapes such as edge strip wings and forward-swept wings.

    Introduction to wings.

    There is an aileron on the trailing edge of the left and right wings, and the pilot uses the ailerons to perform roll maneuvers. That is, when the pilot presses the lever to the left, the ailerons on the left wing deflect upwards and the lift of the left wing decreases; The ailerons on the right wing deviate downward, the lift of the right wing increases, and the aircraft rolls to the left under the effect of the difference in lift between the two wings.

    In order to reduce the take-off ground speed and landing ground speed, and shorten the take-off and landing run, the trailing edge of the left and right wings is also equipped with flaps.

    The flaps are usually in the retracted position and are lowered during take-off and landing.

  2. Anonymous users2024-02-11

    Motor planes must not be biological, with neurosensory tissue and musculature. Airplanes are high-speed machines, and the external characteristics of course want to fly in an absolutely stable state, and if you flapp your wings like a bird, it will increase the energy consumption and unsafe factors of flying. Hope my answer helps you, thanks!

  3. Anonymous users2024-02-10

    Airplanes can't flap their wings like birds and then fly because no material has been invented or discovered to have such a function.

    And generally this kind of inciting wings are load-bearing, and the effect is relatively poor.

    In this case, the mass of the heavy weight is relatively small, and its stability is also relatively poor, and the technology needs to be improved.

  4. Anonymous users2024-02-09

    The key to why a bird flapps its wings is that it has no speed when it starts flying, unlike an airplane. He only took off when he first ran to a certain speed on the runway. At the same time, there is no material that can enter into such back-and-forth agitation.

  5. Anonymous users2024-02-08

    The principle of aircraft flight is to rely on the pressure difference between the air pressure difference between the wings of the aircraft at high speed to support the weight of the aircraft, and then rely on the traction of the engine in the flight direction to fly; It's like a bird fluttering, creating a difference in air pressure between the top and bottom of its wings.

  6. Anonymous users2024-02-07

    Because if you use wings as a driving force, you know how many times the wings are stirred? Besides, if it is powered by incitement, the wings will not be strong, so use other ones as power.

  7. Anonymous users2024-02-06

    Because the airplane relies on the power output of the engine, if you flap its wings like a bird, then the heavy wing needs a large and heavy moving mechanism.

  8. Anonymous users2024-02-05

    The reason why airplanes do not spread their wings and fly like birds is that when flying, airplanes generally generate lift from the fixed wings of the fuselage, and rely on the power of the engine to maintain balance, so they will not incite flight like birds.

  9. Anonymous users2024-02-04

    Because airplanes have engines, birds don't have engines, only wings.

  10. Anonymous users2024-02-03

    Because the airplane has no life, it can't flap its wings on its own.

  11. Anonymous users2024-02-02

    Airplanes are the driving force of shock! If mechanical power is used, the wings are instigated to fly, there is no stability of the fuselage! It will reduce the safety of the aircraft!

  12. Anonymous users2024-02-01

    People sit in the plane and toss and turn, and the flapping wing flight dynamics are extremely complex. The concept of ornithopters does exist, they are a kind of birds and insects, by flapping their wings up and down to fly in the air, is a bionic machine developed by birds with the highest degree of proximity, but ornithopters are still in the conceptual stage, from.

  13. Anonymous users2024-01-31

    Wings usually have straight wings, swept wings, delta wings, etc. The front and rear of the wing are kept basically straight and the front and rear edges are swept backward called the swept wing, and the plane shape of the wing is called the delta wing, the former one is suitable for low-speed aircraft, and the latter two are suitable for high-speed aircraft. Recently, advanced aircraft have also adopted planar shapes such as edge strip wings and forward-swept wings.

  14. Anonymous users2024-01-30

    People sit in the plane and toss and turn, and the flapping wing flight dynamics are extremely complex.

    The concept of ornithopters does exist, they are a kind of birds, insects, by flapping their wings up and down to fly in the air, is a bionic machine with the highest degree of proximity to the development of birds, but the ornithopter is still in the conceptual stage, from ancient times to the present has never really created a practical and reliable ornithopter, because it is too complicated.

    Principles of flight of airplanes:

    The cross-section of the wing of an aircraft is generally rounded and blunt at the front and sharp at the rear, with an arched upper surface and a flat lower surface. When equal mass air passes through both the upper and lower surfaces of the wing, different flow velocities are formed above and below the wing. The velocity of air passing through the upper surface of the wing is high and the pressure is small; The flow velocity is less when passing through the lower surface.

    The pressure is strong, so the aircraft will have an upward resultant force, that is, an upward lift, due to the existence of lift, so that the aircraft can leave the ground and fly in the air. The faster the aircraft flies and the larger the wing area, the greater the lift generated.

  15. Anonymous users2024-01-29

    People sit in the plane and toss and turn, and the flapping wing flight dynamics are extremely complex.

  16. Anonymous users2024-01-28

    Because if you want to fly, you need to fly with thrusters, and you have to fly like a bird

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