Difference between revisions of "Chemical energy transmission"

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(added link to the advantages of chemical energy transport over electrical)
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{{wikitodo|add crossed out electrical power lines as illustrative image}} <br>
 
{{wikitodo|add crossed out electrical power lines as illustrative image}} <br>
 
The idea here is to [[energy transmission|transmit energy]] by [[capsule transport]] of chemical [[energy storage cell]]
 
The idea here is to [[energy transmission|transmit energy]] by [[capsule transport]] of chemical [[energy storage cell]]
through special chemical energy transmission cables.
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through special chemical energy transmission cables.  
 
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Transport inside the cables happens at potentially high speeds in solid state inside a sheath of  
 
Transport inside the cables happens at potentially high speeds in solid state inside a sheath of  
 
[[stratified shear bearings]] ([[superluricating]]) that acts as a ultra low friction rail system.
 
[[stratified shear bearings]] ([[superluricating]]) that acts as a ultra low friction rail system.
 
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The cables are tightly packed with [[energy storage cell|energy storage capsules]].  
The cables are tightly packed with [[energy storage cell|energy storage capsules]].
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There is no air in the small voids that are left. Instead there is a very good vacuum.
 
There is no air in the small voids that are left. Instead there is a very good vacuum.
  
Similar transport systems to this one include:
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'''Similar transport systems to this one include:'''
 
* [[Mechanical energy transmission cables]]
 
* [[Mechanical energy transmission cables]]
 
* [[Global microcomponent redistribution system]]
 
* [[Global microcomponent redistribution system]]

Revision as of 23:39, 25 May 2021

This article is a stub. It needs to be expanded.

(wiki-TODO: add crossed out electrical power lines as illustrative image)
The idea here is to transmit energy by capsule transport of chemical energy storage cell through special chemical energy transmission cables. Transport inside the cables happens at potentially high speeds in solid state inside a sheath of stratified shear bearings (superluricating) that acts as a ultra low friction rail system. The cables are tightly packed with energy storage capsules. There is no air in the small voids that are left. Instead there is a very good vacuum.

Similar transport systems to this one include:

For higher safety this could be combined with entropical energy transmission. This way a ripping cable won't lead to fires and maybe even explosions but instead freeze over.

Chemical energy transmission like this has several advantages over (not superconducting) electrivcal energy transport.
See: Reasons for APM#The end of electrical energy transport?! (wiki-TODO: copy the advantage bullet points over)
Thus chemical energy transmission like this could eventually some day replace most of the high power electrical energy transmission of today (2021)

Related

Transport:


Storage:


Conversion: