Intro    Savonius Wind Turbine

Alternative energy is a must in the future and all of us would like to challange the idea that we can not change and be efficeint.

so i am taking that chllange to create my own style of Savonius wind generator.

in this Instructable i will include the steps that will achieve my Faroun Savonius Wind Mill.

the size over all will be approx 6 feet high and 2.5 feet wide
split into 3 main steps and each main step will split into mini steps.

Note:: that the sound that you hear in the movie is the leaf blower that is producing air to turn the wind turbine.

3 main steps are:

-Turbine assembly =TA
*blades
*discs
*shaft
*bearings
*assembly howto

-Cage assembly =CA
*top, bottom and sides frame
*wind deflection
*mount on a fixed roof or tower

-generator and battery assembly =GBA
*generator
*Rectifiers and battery connection
*testing

sure things may change a bit along the way but you will be the first to know.

bellow is the semi-final product for Faroun Savonius
so lets start.



Savonius Wind Turbine
Savonius(vawt,savonius,verticalindturbine,ametek)



step 1   Turbine Assembly / Blades

here we will disscuss the blade:
material,Size,shape.

in my Project i decided to use Aluminum for Material but u can use steel, Puck Board, or even a simple 5gal pale cut into 2 or 45gal drum cut into 2, so many options you have for the blades.

the size for my blade is 12.5 width, 6.25 depth, .125"thick, 20" circumference and 18" high.

i did not cut or roll the blades i bought them that way, yes i am lazy..lol... i was going to do it with 5gal pale cut into 2 but i figured i want to spend a bit of money just to see the max i can get.

so i have 9 blades, 3 in each section. each blade takes a third of the disc area. so each 3 blades sandwiched between 2 discs (discs are my step2).


image702

image702

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image6991

Vector illustration
step 2  Turbine Assembly / Discs
the disc is very simple.

mine are made of Aluminum and you can use steel wood plexglass and all kinds of options, it all depends on what metarial are the blades so you can match to disc.

the size is 24" in dia. and .25" thick with 1 inch hole in the centre for the shaft (step3 will talk about shaft).

we need 4 discs nice and round with not to much "wabole" in them.
magnet-disc

magnet-disc

top-disc

top-disc

image689

image689

step 3  Turbine Assembly / Shaft And Bearings

i am using 1" steel shaft 80" high mounted bettween 2 ballbearings and attched to the blades with 2 pluming flange.

for a shaft you can use other than solid steel, you can use plumung pipe, that you find any where, wood also but the the best choice and so on...

i hope so far i am clear with my instructions.

bearing

bearing

falange01

falange01

falange02

falange02

image438

image438

step 4  Turbine Assembly / Howto Put Together

well this one goes like this:

i welded the blades insted of using angle brakets to hold them to disc, but you can use weld,steel brackets, wood brackets or grouve and glue them to disc and so on...

so after mounting the blades to discs into 3 sections and each section has 3 blades offset on top of each other by 60 degree, i then inserted the shaft into the center and adjusted for my setup distance, 4" away from bottom and the rest of the room left on top fpr my generator(later step).

after the shaft is in the desired spot i then used the pluming flange to fix the shaft to the blades.

I then placed the Bearings at the end of each end and voila it is assembled.

you noticed that it is in the cage (we will talk about the cage in aNOTHER STEP)

i dont think i miised anything.



image447

image447

blades-weld01

blades-weld01

full-turbine02

full-turbine02

full-turbine03

full-turbine03

step 5  Cage Assembly / Frame

the frame is a box made of 2"x4"

bottom base is holding the bottom of shaft.
the top is holding the top of the shaft also in the future
it will hold the coils(in a later step)

the walls are assambled in a way that half of the turbine is showing
to mount the wind deflection(in next step).

the cage is simple, the trick is to keep it square and croocked.




image460

image460

bottom-disc-belt

bottom-disc-belt

full-turbine00

full-turbine00

top-brase

top-brase

step 6  Cage Assembly / Wind Deflection

the wind deflection idea has been arround for ever but i did not see it with the Savonius so i dicided to be diffrent and combine my Faroun Savonius with the deflection method.

i simply biult the cage and then covered half the turbine where the blades are comming backwards, the reson to cover them is to eleminate the drage that the back of the blade create, also i am in the middle of adjusting the deflection method to be more productive in tunneling the wind twards the desiered area.

take a look at the rendering that i have created.






wind-direction-angle-board

wind-direction-angle-board

winddirection-curved

winddirection-curved

top-view-layers-1-2-3

top-view-layers-1-2-3

full-turbine04

full-turbine04

full-turbine05

full-turbine05

deflection01

deflection01

full-turbine00

full-turbine00

full-turbine01

full-turbine01

full-turbine03

full-turbine03

step 7  3 Phase Coil Winding 20awg 50 winds

this step will show the 12 coils and 16 mags alternator testing

i decided to lay the coils, all 3 Phases conected and rectified produced 20volts dc at 60RPM 5mph wind

-12 coils
-16 N42mags 2 discs
-50winds per coil .125 thick very thin
-3 phase STAR configuration
-rectifed to dc using 2 bridge rectifires
-.2" gap in bettween the magnets an dthe coils.
-spining at 60RPM 5mph wind(using floor)
-produced 20volts DC

you are going to relize that my coils are very thin, but in order for me to get the mags close together i had to thin the coils to improove the flux passing through the coils,

the mags are only .5" far from each other and between them the sitt the coils.
you will see in the movie that i am getting 50 watts at 100 rpm again i had to rev it up to get the power cause i have no wind where i have it, any way with all my calculation., i am confidet to say it can get 200watt at 20mph wind.
note:maybe my calculation are a bit low but my expectaions are also low.

i am going to go back and use a treadmill dc motor because it did give me more power. I hope next step i will show the dc motor and who it works.

and place it outside in the real world. (outside will be in the next steps)
star-config
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one-phase-bridge-connection
br-connect-to-bridge-rectifier
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12coils-16mags-star
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fnfig-22
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step 8  PM DC Motor Generator  Steup

in this step i was looking to show the diffrent ways to harnees the winds energy using pm dc motor,

i simplified 2 ways as you will see in the photos and the movie.

one way is to use a V belt with 5 to 1 pullies.

the other way is to get timming belt and a wooden disk 3/4" and place portion of the belt arround the cirunfrence glued on, place it on the turbine and the smaller pully that you can get at the junk yad too mount it to the dc motor, you will see in the pics and movie what i meam.

i liked the timming belt better it was less drag and qiuter.

they both produced about 12.25 volts at 80 rmp witch is i am assuming 10mph wind. i know i know soon i will be taking the beast outside, finally sring is here and the snow is gone i hope for few month...lol..

regards

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