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The Savonius Rotor: Two Hollow Vanes, Any Wind, Always Starts
Volt

Criado por

Volt

27. setembro 2026SE
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The Savonius Rotor: Two Hollow Vanes, Any Wind, Always Starts

Cut a cylinder in half lengthwise, slide the halves apart so they overlap, and stand them on a vertical shaft: that is the rotor Sigurd Savonius of Finland patented in 1924–29. The wind pushes harder on the hollow of one vane than on the back of the other, and air flowing through the overlap from one hollow into the other helps it along. It turns in wind from any direction without steering, starts itself in the lightest breeze, and gives strong torque at low speed — for pumping water, ventilating, or driving a current meter. It is also slow and inefficient, because it is pushed by drag. This rung works out the drag machine's ceiling and builds a Savonius rotor from a PVC pipe, measuring its torque with a string brake.
Iniciante
About 4 hours

Instruções

1

Read Savonius's overlap

US 1,697,574, 'Rotor Adapted to be Driven by Wind or Flowing Water', Sigurd J. Savonius. The vanes are *"hollow-shaped"* and *"overlapping"*, so that the space between them forms an air passage *"from the hollow side of the vane d, to the hollow side of the other vane c"*. His text compares it with the rotating cylinder then being studied at the Aerodynamische Versuchsanstalt in Göttingen, which it cites. The overlap is the detail that separates a Savonius rotor from two cups on a stick.
2

The drag machine's ceiling

A carregar o notebook Jupyter…
3

Build it from a PVC pipe

Cut a 300 mm length of 110 mm PVC pipe in half lengthwise with a saw. Cut two plywood end discs 240 mm across. Screw the two half-pipes between the discs, hollow faces opposite, each shifted towards the centre so they **overlap by about a fifth of a half-pipe's width**, leaving the air passage Savonius describes. Run a threaded-rod shaft through the centre of both discs, held by nuts, and carry it vertically in two skateboard bearings in a plywood frame.

Materiais para este passo:

Tubo de PVCTubo de PVC1 peça
Placa de contraplacadoPlaca de contraplacado1 folha
Varão roscadoVarão roscado1 peça
Rolamentos de skateRolamentos de skate2 peças
Parafusos de máquinaParafusos de máquina12 peças

Ferramentas necessárias:

Berbequim sem fiosBerbequim sem fios
Jogo de brocasJogo de brocas
Chave inglesa ajustávelChave inglesa ajustável
RéguaRégua
Corta-tubosCorta-tubos
4

Measure torque with a string brake

Wrap fishing line once round the shaft. Tie one end to the spring scale fixed to the frame, and hang a small weight on the other end, so the line rubs on the turning shaft as a brake. The braking torque is **(weight − scale reading) × shaft radius**. Put the rotor in front of the box fan. Start with a light weight: the rotor spins fast. Add weight step by step, reading the speed with the tachometer and the scale each time, until it stalls. Power = torque × angular speed. Turn the rotor to face the wind at a different angle: it does not care. Start the fan at its lowest setting with the rotor stopped: it starts by itself. Those two facts are why Savonius rotors exist.

Materiais para este passo:

Linha de pesca (monofilamento)Linha de pesca (monofilamento)1 rolo
PesoPeso1 conjunto

Ferramentas necessárias:

Ventoinha de caixa (velocidade variável)Ventoinha de caixa (velocidade variável)
Anemómetro portátilAnemómetro portátil
Tacómetro digitalTacómetro digital
Dinamómetro (balança de mola)Dinamómetro (balança de mola)
Paquímetro digital de 6 polegadasPaquímetro digital de 6 polegadas
5

History and context

**US 1,697,574, 'Rotor Adapted to be Driven by Wind or Flowing Water', Sigurd J. Savonius; filed 13 August 1925 (Serial 49,985), claiming a Finnish filing of 12 December 1924; granted 1 January 1929.** The title names water as well as wind: the same rotor turns in a current. **Honest limits.** Low efficiency — a drag machine cannot beat the notebook's ceiling by much. Heavy for its power, because the whole swept area is solid vane. Its torque pulses twice per turn, which is why many are built as two stages twisted 90° apart, or with helical vanes.

Materiais

7

Ferramentas necessárias

10

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