If you had centred the rotor above either piston rather than the pivot, you would have a more powerful pump and would have avoided the wobble in the right piston. Otherwise, this is my favourite wind-powered water pump on YouTube.
I have wondered if twin lifting pumps would be more efficient than a single pump-- allowing lighter winds-- I gather that is what is happening here?. I like this one-- just a wee bit more engineering and the system would turn to catch prevailing winds.
Hi, I don't know anything abaut the original project but I think it is not not complex.
So you can make your own wheel blade and weld to the main shaft, after that weld a tambour to the oder terminal of shaft.The tambour is converting circular power to linear power like push and pull.
and then a buttle of connected water pump (I thing that seen like bicycle pump,,) can usefull.
He is useing a combonation sucktion and pressure pump. The piston sucks the water into the cylinder on the up strock then pushes the water out on the down strock.
On the sucktion side you are limeted to 32 feet. However; place the pump at the water level and the hight you can pump water is limeted ONLY, to the stringth of the pump and the force applied to it.
You first must know how much water you whant, how high you wish to raise it, what is the average wind speed, to figure how large to build the fan. Water weighs 15 pounds per square inch per 32 feet high (243 qubic inches is 1 gallon). Wind power is one pound per square foot per 15 miles per hour.
If you had centred the rotor above either piston rather than the pivot, you would have a more powerful pump and would have avoided the wobble in the right piston. Otherwise, this is my favourite wind-powered water pump on YouTube.
MurderDrunkie 5 months ago in playlist water pump
This is so a good simple knowledge. the rotot which does not follow the wind direction could be improved. This inspires me much
MrMrSujuu 1 year ago
Hwa dh ele bdwr 3alih
dongwan9090 1 year ago
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111WLee 1 year ago
hiiiiiii tis is nice......
can you send the information and detail of this project for final year project
iqtidear 1 year ago
excellent piece of work...
abdullah914 1 year ago
nyc work man! very good
qfanization 1 year ago
niiice :)
fantasmaofdoom 1 year ago
sweet. hehe
dillonrockband 1 year ago
I have wondered if twin lifting pumps would be more efficient than a single pump-- allowing lighter winds-- I gather that is what is happening here?. I like this one-- just a wee bit more engineering and the system would turn to catch prevailing winds.
catguta 1 year ago
show o seu video da energia eolica
hgladyston21 1 year ago
nice. and i love the double pump action.
MUDDy
muddymuddymuddmann 2 years ago
can you send me this water pump details & his fandamental theory for project use me please........
jatinlimbachiya 2 years ago
Just look closely @ the video...It's pretty straight foreword.
DominickBlack 2 years ago
can you send me the project report? as i would like to do this project. I am doing my final year mechanical engineering in Chennai, India.
varunsjce 2 years ago
@varunsjce
Hi, I don't know anything abaut the original project but I think it is not not complex.
So you can make your own wheel blade and weld to the main shaft, after that weld a tambour to the oder terminal of shaft.The tambour is converting circular power to linear power like push and pull.
and then a buttle of connected water pump (I thing that seen like bicycle pump,,) can usefull.
That's it!
Isn't it?
Am I too optimistic?? :))
oveterinaryTR 2 years ago
can you send me the pump specification and the amount of discharge of output from each pump. i am interested in doing this project
varunsjce 3 years ago
please can u send me the project report? i m a mechanical engineering student at toronto,canada. we need to submit and build this kind of project.
nipunpatel201 3 years ago
Can you tell me which type of water pump did you use and from what depth it can pump water? Thanks
noamdodo 4 years ago
He is useing a combonation sucktion and pressure pump. The piston sucks the water into the cylinder on the up strock then pushes the water out on the down strock.
On the sucktion side you are limeted to 32 feet. However; place the pump at the water level and the hight you can pump water is limeted ONLY, to the stringth of the pump and the force applied to it.
RHEAD100 3 years ago
You first must know how much water you whant, how high you wish to raise it, what is the average wind speed, to figure how large to build the fan. Water weighs 15 pounds per square inch per 32 feet high (243 qubic inches is 1 gallon). Wind power is one pound per square foot per 15 miles per hour.
I hope this helps.
RHEAD100 3 years ago
tebrik ederim... guzel calisma ..
RAMCHOram 4 years ago
pravo gencler tebrik ediyorum yalnız daha geliştirmenizi ileriye götürmenizi beklerim bunlar bilinen uygulamalar bu başlangıcınız olsun ........!
serdar003 4 years ago