Difference between revisions of "Energy conversion"
From apm
m |
m (→Related: added link to Global scale energy management) |
||
Line 40: | Line 40: | ||
== Related == | == Related == | ||
+ | * [[Global scale energy management]] | ||
* wikipedia: [http://en.wikipedia.org/wiki/Transducer transducer], actuators, ... | * wikipedia: [http://en.wikipedia.org/wiki/Transducer transducer], actuators, ... | ||
* [[energy transmission]] | * [[energy transmission]] |
Revision as of 07:32, 1 October 2015
Atomically precise technology for energy conversion can:
- solve the enegry storage problem making renewable energy storable and fossile or nuclear fission baseload power plants unnecessary
- circumvent burning processes that unnecessarily devaluates energy
[Todo: add infographic]
Different power converters have heterogeneity residing on different size scales.
Contents
Nanoscale: molecular power converters
AP technology provides several possibilities for energy conversion that work in a mill/zip/conveyor belt like style:
- chemomechanical converters
- electromechanical converters - the link for massive and efficient energy storage that is missing today
- entropomechanical converters
- optoelectric / solarelectric
Mesoscale
thermomechanical:
diamondoid heat pump system
Used base technologies can be: microcapsules, infinitesimal bearings and thermal switching cells
Note that although the efficiency is limited by the Carnough-cycle the conversion can be near reversible.
Makroscale
thermonuclear
Complex macroscopic systems made from advanced diamondoid metamaterials may lead to significant improvements here.
Related
- Global scale energy management
- wikipedia: transducer, actuators, ...
- energy transmission