Home / Publications / Journals / Nuclear Technology / Volume 65 / Number 1
Dryout of an Inductively Heated Bed of Steel Particles with Subcooled Flow from Beneath the Bed
Nuclear Technology / Volume 65 / Number 1 / April 1984 / Pages 10-15
Technical Paper / Postaccident Debris Cooling / Heat Transfer and Fluid Flow / dx.doi.org/10.13182/NT84-A33367
Modes of Heat Removal from a Heat-Generating Debris Bed
Nuclear Technology / Volume 65 / Number 1 / April 1984 / Pages 16-22
Technical Paper / Postaccident Debris Cooling / Heat Transfer and Fluid Flow / dx.doi.org/10.13182/NT84-A33368
On the Pattern of Water Penetration into a Hot Particle Bed
Nuclear Technology / Volume 65 / Number 1 / April 1984 / Pages 23-31
Technical Paper / Postaccident Debris Cooling / Heat Transfer and Fluid Flow / dx.doi.org/10.13182/NT84-A33369
Radiative Contribution to the Heat Transfer in Liquid Urania
Nuclear Technology / Volume 65 / Number 1 / April 1984 / Pages 32-35
Technical Paper / Postaccident Debris Cooling / Heat Transfer and Fluid Flow / dx.doi.org/10.13182/NT84-A33370
On the Location and Mechanisms of Dryout in Top-Fed and Bottom-Fed Particulate Beds
Nuclear Technology / Volume 65 / Number 1 / April 1984 / Pages 36-45
Technical Paper / Postaccident Debris Cooling / Heat Transfer and Fluid Flow / dx.doi.org/10.13182/NT84-A33371
Mechanical Behavior of SNR-300 Reactor Vessel Components Under Postaccident Heat Removal Conditions
Nuclear Technology / Volume 65 / Number 1 / April 1984 / Pages 46-52
Technical Paper / Postaccident Debris Cooling / Heat Transfer and Fluid Flow / dx.doi.org/10.13182/NT84-A33372
A Coolability Model for Postaccident Nuclear Reactor Debris
Nuclear Technology / Volume 65 / Number 1 / April 1984 / Pages 53-66
Technical Paper / Postaccident Debris Cooling / Heat Transfer and Fluid Flow / dx.doi.org/10.13182/NT84-A33373
Nuclear Technology / Volume 65 / Number 1 / April 1984 / Pages 67-86
Technical Paper / Postaccident Debris Cooling / Heat Transfer and Fluid Flow / dx.doi.org/10.13182/NT84-A33374
Light Water Reactor Debris from Severe In-Pile Transient Tests
Nuclear Technology / Volume 65 / Number 1 / April 1984 / Pages 87-91
Technical Paper / Postaccident Debris Cooling / Heat Transfer and Fluid Flow / dx.doi.org/10.13182/NT84-A33375
Steam Generator Leak Detection in Liquid-Metal Fast Breeder Reactors by Chemical Methods
Nuclear Technology / Volume 65 / Number 1 / April 1984 / Pages 92-101
Technical Paper / Postaccident Debris Cooling / Nuclear Safety / dx.doi.org/10.13182/NT84-A33376
Nuclear Technology / Volume 65 / Number 1 / April 1984 / Pages 102-108
Technical Paper / Postaccident Debris Cooling / Fuel Cycle / dx.doi.org/10.13182/NT84-A33377
Chemical Interactions Between UO2 and Zircaloy-4 from 1000 to 2000°C
Nuclear Technology / Volume 65 / Number 1 / April 1984 / Pages 109-124
Technical Paper / Postaccident Debris Cooling / Nuclear Fuel / dx.doi.org/10.13182/NT84-A33378
Nuclear Technology / Volume 65 / Number 1 / April 1984 / Pages 125-130
Technical Paper / Postaccident Debris Cooling / Radioactive Waste Management / dx.doi.org/10.13182/NT84-A33379
Nuclear Technology / Volume 65 / Number 1 / April 1984 / Pages 131-137
Technical Paper / Postaccident Debris Cooling / Radioactive Waste Management / dx.doi.org/10.13182/NT84-A33380
Nuclear Technology / Volume 65 / Number 1 / April 1984 / Pages 138-145
Technical Paper / Postaccident Debris Cooling / Material / dx.doi.org/10.13182/NT84-A33381
Nuclear Technology / Volume 65 / Number 1 / April 1984 / Pages 146-160
Technical Paper / Postaccident Debris Cooling / Heat Transfer and Fluid Flow / dx.doi.org/10.13182/NT84-A33382
Paint Decontamination Kinetics
Nuclear Technology / Volume 65 / Number 1 / April 1984 / Pages 161-167
Technical Paper / Postaccident Debris Cooling / Technique / dx.doi.org/10.13182/NT84-A33383