Conceptional physics designBlind
in CAD Design
held by Octant Society
Contest Ended, Winner(s) have been selected.
Description:
This is a abstract design for a physics project about energy conversion using high charge density. The design is called longitudinal plasma vortex energy converter: a counter-rotating outer quartz cylinder with an internal counter-rotating epicyclic gear train with a downward facing rounded point nozzle connected to a low-pressure turbine and located where the sun gear is located. The system also contains a clockwise-rotating inner quartz cylinder with an internal clockwise-rotating epicyclic gear train with a upward facing pointed edge nozzle connected to a low-pressure turbine and located where the sun gear is located. The representation is designed to showcase a closed system in which the plasma is pushed upward by the clockwise-rotating turbine and pointed edge nozzle and then pushed downward on the sides by the counter-rotating turbine and rounded point nozzle of the outer cylinder (motion shown by green arrows). Attached please find a drawing that I want the designer to refine to the best of his/her talent.
Wants:
I will only accept those entries that closely match my attached design in detailed 2D and 3D with 360 view (if possible).
Don't Wants:
I don't want extensive additions or changes to my attached design. As talented designers, feel free to add small changes or additions to make the design better.
Ask for Sample:
This is the first step in the completion of a big project for a PhD program. The winning designer will be my go-to designer for the continuation of this project. I will need 1 quick rough draft.
Software:
- AutoCAD Mechanical
- Autodesk Structural Detailing
- Autodesk Fusion 360
Entries
Discussion
Raul, it is 50 ft high
Please tell me the height .
Regarding the turbine blades, do you have a preferred surface equation (in cylindrical coordinates) that you wish to implement?
It would help if you have anything, even if it was in raw differential form ...
It would help if you have anything, even if it was in raw differential form ...
2x200=400
3x200=600
it doesn't matter if it's "theoretical or real"
you may be able to get a guy that is 2x11=22
3x200=600
it doesn't matter if it's "theoretical or real"
you may be able to get a guy that is 2x11=22
hi sir, we dont know how it work itself even the working principle is not understandable so please attach some other attachments then only we could design a perfect design for you. thank you.
Adam
If this is 2 days work at 60 dollars a day; 2 x 60 equals 120, which is the total amount. This project is a rough draft of a theoretical idea. That is why I attached 2 pictures.
If this is 2 days work at 60 dollars a day; 2 x 60 equals 120, which is the total amount. This project is a rough draft of a theoretical idea. That is why I attached 2 pictures.
FYI
you're not getting many submissions because this is more work than your prize money accommodates.
this is 2 days of work minimum. at $60 a day, not many people are going to spend the time on it.
also, we are mechanical guys, not physics scientists and the scope of work is very vague.
thanks.
you're not getting many submissions because this is more work than your prize money accommodates.
this is 2 days of work minimum. at $60 a day, not many people are going to spend the time on it.
also, we are mechanical guys, not physics scientists and the scope of work is very vague.
thanks.
For those seeking a full picture, please see above.
Can u post a full picture coz the available picture is not complete
May I have the full picture? The outer side seems croped. I would make sure to deliver a better design.
Samadoni
The outer cylinder with its top turbine (pointing downwards) is connected to the outer epicyclic gear. The inner cylinder with its bottom turbine (pointing upwards) is connected to the inner epicyclic gear. Please refer to the attachment.
The outer cylinder with its top turbine (pointing downwards) is connected to the outer epicyclic gear. The inner cylinder with its bottom turbine (pointing upwards) is connected to the inner epicyclic gear. Please refer to the attachment.
Please explain which cylinder/turbine is connected to which component of epicyclic gear 1 & 2.
Perhaps a good designation would be:
Outer cylinder
inner cylinder
top turbine (pointing downwards)
bottom turbine (pointing upwards)
sun 1 or 2
planet 1 or 2
ring 1 or 2
Perhaps a good designation would be:
Outer cylinder
inner cylinder
top turbine (pointing downwards)
bottom turbine (pointing upwards)
sun 1 or 2
planet 1 or 2
ring 1 or 2
MasterDrafterDan
Refrain from the unnecessary comments. According to the proposed theory, the plasma gas is subjected to an extremely high vacuum: Torr - 1x10(-12) / Pa - 1x10(-10) / Atm - 9.86x10(-16) Concerning the bearing, I would like strong/heavy-duty tapered roller bearings that can support large radial and large thrust loads. Considering that they are usually mounted in pairs facing opposite directions so that they can handle thrust in both directions; I figured that they would be best for the counter rotating cylinders.
Refrain from the unnecessary comments. According to the proposed theory, the plasma gas is subjected to an extremely high vacuum: Torr - 1x10(-12) / Pa - 1x10(-10) / Atm - 9.86x10(-16) Concerning the bearing, I would like strong/heavy-duty tapered roller bearings that can support large radial and large thrust loads. Considering that they are usually mounted in pairs facing opposite directions so that they can handle thrust in both directions; I figured that they would be best for the counter rotating cylinders.
Raj
The design is experimentally scalable. However for sake of time, please make it 10ft long. Each cylinder is 2 inches thick.
The design is experimentally scalable. However for sake of time, please make it 10ft long. Each cylinder is 2 inches thick.
Energy in plus loss = less than you started with, Einstein. This can be built no problem but need to know pressure of plasma gas? bearing type wanted, etc etc
Sir, What is the total height? And What is the wall thickness to be considered?
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