What is the Most Efficient Propeller Design for a Peddel-Powered Water Craft?

In summary, an industrial design student is urgently seeking feedback on a project involving designing and constructing a peddel-powered watercraft. There will be a race to complete the craft, and it needs to be fast. Suggestions for improving the craft's speed and efficiency are appreciated.
  • #1
nickindustrial
8
0
hey guys,

urgently need your help, I am an industrial design student and at present we have a project that involves designing and constructing a peddel powered water craft. there will be a race upon completion of the craft therefore it needs to be reasonably fast.

If you have any recommendations or suggestions please feel free to respond. The ideal feed back i would like to receive is regarding the most appropriate propellar to use, including draft and angles etc, and whether there is a more efficent solution out, as this craft will be manually operated in a similar manner to a bicycle.

appreciate it guys

cheers
 
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  • #2
No magic formulas here, but some things to think about:

You might want to start by estimating the max speed your boat is likely to have (which depends mainly on its length). Google for "Froude number".

Then consider how much power your pedallers can generate using something that works like a bicycle for a sustained period of time (Google for power output of athletes for example).

Choose a sensible pedalling speed (and possibly a gear system to convert that to propellor RPM).

Then design a prop that works your chosen input flow velocity and does the right amount of work.

Then have fun working out what went wrong with the design calculations when you test it (that's where the REAL engineering starts!)

Of course if it's a very short race you may be more concerned about acceleration from a standing start than about top speed.

You might want to consider paddle wheels rather than propellors. They could be easier to design (conservation of momentum!) and construct.
 
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  • #3
Check out Nature volume 424, there's an article (which is also on the cover page) concerning delta shaped paddles.
 
  • #4
I would also recommend that you spend some time to look at the items that are readily available. It would be a big plus (and usually a lot easier on you) to be able to use items already manufactured and easily obtainable. You should also be able to get a lot of engineering data about those products if you ask the right people.
 
  • #5
If you're involved in the competition I've seen on TV before, these are not surface vessels you're talking about. I've always hoped someone would try applying the principles of supercavitation to one of these races. Not that a human-powered craft could truly supercavitate, but if the driver's exhaled air could be trapped in long bubbles that cover much of the side of the craft, contact with the water could be greatly reduced.
 
  • #6
Thanks a lot for the help guys, at present we are looking into the concept of flippers and possibly try and branch off into a less conventional approach, just to see what happens. gratefull for all the recomendations they help alot. its just a minor competion that we are in, just in new zealand.

thanks again guys and feel free to keep ideas coming

will keep u guys posted with our success...or lack of
 

Related to What is the Most Efficient Propeller Design for a Peddel-Powered Water Craft?

What is propeller hydrodynamics?

Propeller hydrodynamics is the study of the movement and behavior of propellers in water. It involves analyzing the forces and flow patterns generated by propellers and how they affect the motion of ships, submarines, and other aquatic vehicles.

How does a propeller work?

A propeller works by rotating and creating a difference in pressure between its front and back surfaces. This pressure difference results in a force that propels the object forward, similar to how a wing lifts an airplane. The angle of the propeller blades and the speed at which they rotate also play a crucial role in its functioning.

What factors affect the performance of a propeller?

The performance of a propeller is affected by various factors, including its shape, size, number of blades, angle of attack, and rotational speed. The characteristics of the surrounding fluid, such as density and viscosity, also play a significant role in determining the propeller's performance.

How do scientists study propeller hydrodynamics?

Scientists use a combination of theoretical models, computational simulations, and experimental techniques to study propeller hydrodynamics. This involves analyzing the fluid flow around propellers and measuring the forces and moments acting on them in different conditions.

What are the applications of propeller hydrodynamics?

Propeller hydrodynamics has numerous applications in naval architecture, marine engineering, and oceanography. It is used to design and optimize propellers for ships, submarines, and other marine vehicles. It also helps in understanding the behavior of propellers in different conditions, such as waves and currents, and their impact on the performance of these vehicles.

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