Can Pascal's Law Be Applied to Enhance Cycle Rickshaw Efficiency?

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In summary, the conversation discusses the possibility of using Pascal's law to provide greater force in a pedal powered vehicle. However, it is noted that this method may be complicated and inefficient, and the First Law of Thermodynamics should also be considered. While this approach may offer some leverage, it may not significantly reduce the effort needed to drive the vehicle at a practical speed.
  • #1
rohitjinnu16
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what if i use the pascals law for providing greater force,even by applying a small amount of force on the pedal.this larger force is used to drive the rear axle.shall i face any problems please suggest any difficulties even.
 
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  • #2
Um... What? How do you intended to apply Pascal's law to a pedal powered vehicle?

https://en.wikipedia.org/wiki/Pascal's_law

I suppose it is at least conceivable you would somehow use fluids in this fashion to construct the equivalent of some kind of gearing system. It would seem to be extremely complicated for a pedal powered vehicle.

Can you expand on what it is you are trying to do?
 
  • #3
DEvens said:
Um... What? How do you intended to apply Pascal's law to a pedal powered vehicle?

https://en.wikipedia.org/wiki/Pascal's_law

I suppose it is at least conceivable you would somehow use fluids in this fashion to construct the equivalent of some kind of gearing system. It would seem to be extremely complicated for a pedal powered vehicle.

Can you expand on what it is you are trying to do?
i am attaching 2 cylinders of different size (1 of smaller cross section than the other) with the 2 pistons facing out.so if we give drive to one piston using the slider crank mechanism(by pedalling) and obtain a rotary motion on the other side through the fluid.so driving the piston (smaller area of cross section) with little force we can generate a greater force on the other side using the pascals law.with this we can drive the rickshaw with a little effort.
 
  • #4
Um...

Well, pistons full of fluid tend to use a lot of energy just to push back and forth. They may give you some leverage, but they are not exactly the most efficient at transferring energy. So, you will find you have to work quite hard to get the output you want.

You need to be looking up the First Law of Thermodynamics and considering it carefully. Even if you do get some kind of leverage, you still have to put in the same amount of energy. There is no particular advantage to using fluids to accomplish leverage as opposed to gears. And I'm having a lot of trouble imagining how you would arrange the pistons anyway.
 
  • #5
rohitjinnu16 said:
so driving the piston (smaller area of cross section) with little force we can generate a greater force on the other side using the pascals law.with this we can drive the rickshaw with a little effort.
Just one problem: your rickshaw's speed will be snail's pace; passengers will get out and walk.
 

Related to Can Pascal's Law Be Applied to Enhance Cycle Rickshaw Efficiency?

1. How does a cycle rickshaw work?

A cycle rickshaw is a human-powered mode of transportation that consists of a bicycle attached to a two or three-wheeled passenger compartment. The cyclist pedals the bicycle to move the rickshaw forward, and the passengers sit in the compartment behind them.

2. What materials are commonly used to build a cycle rickshaw?

The most common materials used to build a cycle rickshaw include steel, aluminum, and bamboo. The frame is usually made of steel or aluminum for durability, while the passenger compartment and canopy are often made of bamboo for its lightweight and sustainable properties.

3. How much weight can a cycle rickshaw carry?

The weight capacity of a cycle rickshaw varies depending on the design and materials used. On average, a cycle rickshaw can carry up to 400-500 pounds, including the weight of the cyclist, passengers, and any additional cargo.

4. What are the benefits of using a cycle rickshaw?

Cycle rickshaws offer numerous benefits, including being a green and sustainable mode of transportation, reducing traffic congestion in urban areas, providing employment opportunities for cyclists, and being a cost-effective means of transportation for short distances.

5. How can a cycle rickshaw be improved for better performance?

There are several ways to improve the performance of a cycle rickshaw, such as using lighter materials, incorporating gears for easier pedaling, implementing a braking system, and improving the aerodynamics of the design. Regular maintenance and upgrades can also help maintain the rickshaw's performance over time.

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