Is Expansion the Most Efficient Method for Creating a Mechanical Vacuum?

In summary, the easiest way to create a mechanical vacuum is through expansion, but it may require a significant amount of physical energy. Other mechanical options, such as a hand vacuum pump or a venturi pump, may offer more efficient alternatives. Factors such as size, weight, and power source should be considered when deciding on the best option for creating a vacuum.
  • #1
manp
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I want to create a mechanical vacuum (semi not necessarily complete), I've heard the easiest way to create one is by expansion (basically expanded a pump). But is this also the easiest way physically, as in takes the least amount of energy? Or is there any other 'mechanical' way possible for this (excluding the use of external electricity or chemicals). Any pointers would be appreciated.
 
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  • #2
If you have a building with four floors, or a hill, you could make a barometer with water.
Set up a tube, with a 10 metre height difference between the ends. Place a valve at each end.
Close the bottom valve, then fill the tube with water from above.
Close the upper valve, and place the bottom of the tube in a bucket, (water trap).
Open the bottom valve and allow the water level in the tube to fall.
You now have a partial vacuum in the tube.
The tube will contain only a small amount of water vapour.
 
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  • #3
Use a glass bottle with a cork or other air tight seal.
Open the bottle and heat it up.
The cork the bottle and let it cool down.
 
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  • #4
Thanks both. But I need this object/device to be constantly changing from an atmospheric pressure to vacuum to atmospheric pressure and so on back and forth, without any external aide except movements such as pull/push, turn. Basically a pump device would work like as syringe or something, but when using it takes up a lot of energy creating this pull action. Could anything aide to make this movement take up less physical energy, some sort of design?
 
  • #5
What scale or volume are you considering?
What partial pressure do you need?
You must apply some external energy to overcome the thermal losses in the system.
Where does that energy come from?
 
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  • #6
Cheers. I'm not an engineer or anything so have tried to answer to the best of my abilities:

What scale or volume are you considering? Very small, not like a hill or anything lol. I have a 100ml syringe so was hoping to work around it

What partial pressure do you need? Medium vacuum should be sufficient about 25 to 1×10−3

You must apply some external energy to overcome the thermal losses in the system.
Where does that energy come from? I'm not 100% sure what you mean here?
 
  • #7
How quickly do you need to go back and forth from vacuum to normal pressure?

I doubt that the syringe is going to draw 0.025 Atmospheres.
 
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  • #8
.Scott said:
How quickly do you need to go back and forth from vacuum to normal pressure?

I doubt that the syringe is going to draw 0.025 Atmospheres.

After every 2 seconds.
 
  • #9
There are some limitations here that decide the geometry of the system.
When at atmospheric pressure, what is the volume, a, you need.
When there is a partial vacuum, what proportion, p, of one atmosphere do you require. 0.025?

If a syringe started with one atmosphere at the a = 1 ml mark and you wanted p = 0.1 atmospheres, then you would need to draw the syringe out to a/p = 10 ml mark.

It is clear that the length of the syringe is determined by the partial vacuum you require and the atmospheric volume. Any additional experimental volume that is external, but connected to the syringe, is part of the volume a.

So, what volumes and pressures do you really need?
 
  • #10
oh ok. Thanks, so according to this I would need want the 100 ml syringe to start at 70ml and then draw suction. So 30ml draw would be expansion of the 70ml atmospheric pressure already there.
 
  • #11
manp said:
I want to create a mechanical vacuum (semi not necessarily complete), I've heard the easiest way to create one is by expansion (basically expanded a pump). But is this also the easiest way physically, as in takes the least amount of energy?
Absent a complicated energy recovery scheme, yes, a reciprocating pump comes close to the theoretical maximum efficiency possible.
 
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  • #12
manp said:
I want to create a mechanical vacuum (semi not necessarily complete), I've heard the easiest way to create one is by expansion (basically expanded a pump). But is this also the easiest way physically, as in takes the least amount of energy? Or is there any other 'mechanical' way possible for this (excluding the use of external electricity or chemicals). Any pointers would be appreciated.

Would a hand vacuum pump like this work for you? I've use these in the past to pull a modest vacuum...

https://www.amazon.com/dp/B003B3WC3Q/?tag=pfamazon01-20
51oNTxsuzmL._SL500_AA300_.jpg
 
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  • #13
Why does it have to be efficient? Is it because it has to be portable and battery operated. Or is it because you are going to be powering it yourself. Are we dealing with a weight limitation? Are we dealing with a size limitation?

If you are operating it near running water, have you considered a venturi pump?
 
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  • #14
Thanks all, I think I am going to try the hand pump Berkeman suggested, hopefully itl work.
 

1. What is a vacuum by expansion?

A vacuum by expansion is a process of creating a low-pressure environment by expanding a gas or liquid. This results in a decrease in density and pressure, leaving behind a space with very few or no particles.

2. How is a vacuum by expansion created?

A vacuum by expansion can be created by using a vacuum pump to remove air or other gases from a sealed container. The pump creates a pressure difference between the inside and outside of the container, causing the gas to expand and leave behind a low-pressure environment.

3. What are the applications of creating a vacuum by expansion?

Creating a vacuum by expansion has many practical applications, including in industrial processes such as vacuum distillation and freeze-drying. It is also used in scientific experiments, such as in particle accelerators, and in everyday products like light bulbs and vacuum cleaners.

4. What are the advantages of using a vacuum by expansion?

The main advantage of using a vacuum by expansion is that it allows for the creation of a low-pressure environment without the need for expensive or complex equipment. It also has the ability to remove impurities and unwanted gases, making it useful in various industries.

5. Are there any safety precautions to consider when creating a vacuum by expansion?

Yes, there are some safety precautions to consider when creating a vacuum by expansion. It is important to use proper protective equipment, such as goggles and gloves, as some gases can be hazardous. It is also crucial to follow proper procedures to prevent the risk of implosion or explosion of the container.

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