Buoyant support structures keep heat exchangers submerged during water level drops, preventing fuel rod exposure and ensuring reliable cooling.
Terminal weighting element accumulates mass and expands surface area to offset hydraulic resistance during emergency shutdown.
Integrated locking and sealing mechanisms reduce handling time for nuclear specimens while maintaining high-pressure containment reliability.
Automated work platform with orbital track and swappable robots enables precise remote positioning of maintenance tools.
Reinjected solid particles concentrate radionuclides, reducing sludge volume while maintaining high decontamination efficiency.
Segmented rings and rod members prevent coolant vortex wear on thermal sleeves while allowing axial expansion.
Segmented probe arrays inspect multiple tubes concurrently, cutting plant downtime and labor costs while maintaining thorough defect detection.
A shielded platform unit inside a reactor vessel nozzle stub enables automated maintenance operations, reducing worker radiation exposure.
A radioactive gas monitoring device uses plastic and inorganic crystal scintillation detectors to measure distinct count rates for beta rays and gamma rays.
Monomer gel polymerization creates a xerogel intermediate that traps aqueous actinide solutions, reducing radioactivity risks during powder preparation.
A gravity-driven fluidic device uses a spring-biased water tub to transition emergency cooling injection modes.
Correlates hydrogen peroxide survival fraction with platinum surface loading for rapid, non-destructive assessment.
A two-step dry process converts uranium hexafluoride to uranium dioxide powder using a flame reactor and rotary kiln.
A filtered containment venting system uses a reservoir to automatically replenish washing liquid in the wet scrubber.