Germany/TiVA: Difference between revisions

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== Mechanics ==
=Content moved to [http://wiki.opensourceecology.de/wiki/TiVA Open Source Ecology Germany].=


=== Forces ===
==Introduction==
Part of the modular [[Germany/Wind_Turbine|wind turbine]] system is a downscaled VAWT called [[TiVA]] with tiny dimensions. With these inexpensive, small prototypes we can have a fast prototyping and research pace. Any successful design approaches may then be scaled up and used at larger turbines.
:<m>F_{pole} = \frac{1}{2} \times \rho \times C_d \times A_{wind} \times v_{wind}^2</m>
 
<m>\rho</m> Density of air = about 1.2 Kg/m³ <br />
<m>C_d</m> Coefficient of drag = 1.0 (cylinder Re > 100)<br />
<m>A_{wind}</m> Area of turbine<br />
<m>v_{wind}</m> Wind speed in m/s


[[File:20120410LXM213251_etemu.com_airfoil.jpg|400px|thumb|right|alt=photo of a piece of spruce|A board of spruce ready to be worked on with a planer.]]
[[Category: Wind energy]]
[[File:20120410LXM213259_etemu.com_airfoil.jpg|400px|thumb|right|alt=photo of a piece of spruce|After the first few steps of planing the edges.]]
[[File:20120410LXM215603_etemu.com_airfoil.jpg|400px|thumb|right|alt=Work in progress photo of a wooden NACA airfoil made with a table saw and a planer out of spruce|Work in progress photo of a wooden NACA airfoil made with a table saw and a planer. The wood (spruce) used here is of rather low quality and split up at the trailing edge.]]


=== Rotors  ===
<references />
Compared to drag-only type rotors (Savonius), the lift-only type rotors (Darrieus) haven proven to be generally less suitable for low wind environments. However, the maximum speed of drag-only type rotors is always lower than a comparable lift-only type rotor, because a lift-only type rotor can rotate faster than the wind speed at the tips but with less torque. A drag-only type rotor can develop more torque, even at early stages in low wind conditions, but that would require a very specific and resource-intensive generator to accommodate for the very low rotational speed. A typical low end for a direct driven axial flux permanent magnet alternator with many poles is about 150 revolutions per minute. Everything under 150 rpm means huge additional resource investments into rare earth magnets and loads of copper (windings).
For the very small [[TiVA]], the main focus will be on two types, both of them mounted either on a H (with arms) or V (with a base mount) shaped rotor:
# A lift-only type wing profile. The wings are formed by one (''NACA'') profiled element or segments of pipes, e.g. made of DN100-PE-tubes (standard sewer piping in Germany)
# The Van Canstein wing form and further derivatives based on it, with less parts if possible.
 
=== C-Type Rotor ===
The "Van Canstein" wing form is a special type of H-rotor with a combined lift-and-drag-wing.
=== H-Type Rotor ===
 
* may be the simplest design, very simple wing forms are possible.
Complex Darrieus rotor: wings in helix-form, spiraled, lift-type
Simpler H-rotor: wings straight. May even be without any profile. Lift-type or Drag-type or lift-drag-type -> C-rotor
====C-type vs simple H-type====
con C-type, pro H-type:
* C-type requires two parts to form a wing -> more material
* wing tip has to be bent into an aerodynamic shape -> more complexity, especially at the mounting points
* upper wind speed limit is lower
pro C-type, con H-type:
* C-type requires lower wind speed, creates higher torque at lower wind speeds
* usable bandwidth of wind speed is higher
 
=== NACA0018 profiled straight wing fabrication process ===
 
One idea is to make a wing out of two symmetrical pieces. One half of the profile could be milled out of wooden sheet material or planed out of a pre-cut board by hand. Half of a profile can be hold down and clamped because one side will still be flat. The two halves are then glued together.
 
The pictures at the right show a simple profile made out of thin boards. They are cut out of a sheet with a table saw and then planed by hand.

Latest revision as of 11:06, 4 December 2012

Content moved to Open Source Ecology Germany.

Introduction

Part of the modular wind turbine system is a downscaled VAWT called TiVA with tiny dimensions. With these inexpensive, small prototypes we can have a fast prototyping and research pace. Any successful design approaches may then be scaled up and used at larger turbines.