Method and system for providing fuel in a nuclear reactor
View Patent ↗Exemplary embodiments provide automated nuclear fission reactors and methods for their operation. Exemplary embodiments and aspects include, without limitation, re-use of nuclear fission fuel, alternate fuels and fuel geometries, modular fuel cores, fast fluid cooling, variable burn-up, programmable nuclear thermostats, fast flux irradiation, temperature-driven surface area/volume ratio neutron absorption, low coolant temperature cores, refueling, and the like.
1. A method of operating a propagating nuclear fission deflagration wave reactor, the method comprising:
initiating a nuclear fission deflagration wave in a first region of a nuclear fission deflagration wave reactor;
propagating the propagating nuclear fission deflagration wave through the first region to a second region of the nuclear fission deflagration wave reactor contiguous with the first region;
propagating the propagating nuclear fission deflagration wave through the second region to a third region of the nuclear fission deflagration wave reactor contiguous with the second region and the first region;
propagating the propagating nuclear fission deflagration wave through the third region, the first, second, and third regions being capable of criticality independent of each other;
after propagating the propagating nuclear fission deflagration wave through the third region, re-initiating a nuclear fission deflagration wave in the first region; and
re-propagating the propagating nuclear fission deflagration wave through the first region.
2. The method of claim 1 , wherein the first region, second region, and third region form a closed loop.
3. The method of claim 2 , wherein the closed loop is substantially a toroid.