Number 1
Fusion Science and Technology | Volume 13 | Number 1 | January 1988 | Pages 7-56
Overview | doi.org/10.13182/FST88-A25084
Tokamak Fusion Test Reactor Central Ignition Scenarios
Fusion Science and Technology | Volume 13 | Number 1 | January 1988 | Pages 57-86
Technical Paper | Plasma Engineering | doi.org/10.13182/FST88-A25085
Diffusion-Driven Steady States of the Z-Pinch
Fusion Science and Technology | Volume 13 | Number 1 | January 1988 | Pages 87-92
Technical Paper | Plasma Engineering | doi.org/10.13182/FST88-A25086
System Studies of Compact Ignition Tokamaks
Fusion Science and Technology | Volume 13 | Number 1 | January 1988 | Pages 93-114
Technical Paper | Fusion Reactor | doi.org/10.13182/FST88-A25087
Fusion Science and Technology | Volume 13 | Number 1 | January 1988 | Pages 115-124
Technical Paper | Fusion Reactor | doi.org/10.13182/FST88-A25088
Self-Shielding Effects in Heterogeneous Blankets of Fusion Breeders
Fusion Science and Technology | Volume 13 | Number 1 | January 1988 | Pages 125-130
Technical Paper | Blanket Engineering | doi.org/10.13182/FST88-A25089
Subcooled Water Flow Boiling Experiments Under Uniform High Heat Flux Conditions
Fusion Science and Technology | Volume 13 | Number 1 | January 1988 | Pages 131-142
Technical Paper | Blanket Engineering | doi.org/10.13182/FST88-A25090
Optimal Use of Beryllium for Fusion Reactor Blankets
Fusion Science and Technology | Volume 13 | Number 1 | January 1988 | Pages 143-152
Technical Paper | Blanket Engineering | doi.org/10.13182/FST88-A25091
A Comparative Study of Thermal Neutron Fusion Blanket Arrangements
Fusion Science and Technology | Volume 13 | Number 1 | January 1988 | Pages 153-156
Technical Paper | Blanket Engineering | doi.org/10.13182/FST88-A25092
Recycling and Shallow Land Burial as Goals for Fusion Reactor Materials Development
Fusion Science and Technology | Volume 13 | Number 1 | January 1988 | Pages 157-164
Technical Paper | Safety/Environmental Aspect | doi.org/10.13182/FST88-A25093
Modular Pump Limiter Systems for Large Tokamaks
Fusion Science and Technology | Volume 13 | Number 1 | January 1988 | Pages 165-180
Technical Paper | Divertor System | doi.org/10.13182/FST88-A25094
Number 2
U.S. Accelerator Research Program for Heavy-Ion Fusion
Fusion Science and Technology | Volume 13 | Number 2 | February 1988 | Pages 201-206
Overview | Heavy-Ion Fusion | doi.org/10.13182/FST88-A25101
U.S. Heavy-Ion Fusion Systems Assessment Project Overview
Fusion Science and Technology | Volume 13 | Number 2 | February 1988 | Pages 207-216
Overview | Heavy-Ion Fusion | doi.org/10.13182/FST88-A25102
An Induction Linac Driven Heavy-Ion Fusion Systems Model
Fusion Science and Technology | Volume 13 | Number 2 | February 1988 | Pages 217-254
Technical Paper | Heavy-Ion Fusion | doi.org/10.13182/FST88-A25103
Heavy-Ion Linear Induction Accelerators as Drivers for Inertial Fusion Power Plants
Fusion Science and Technology | Volume 13 | Number 2 | February 1988 | Pages 255-278
Technical Paper | Heavy-Ion Fusion | doi.org/10.13182/FST88-A25104
Analysis of Cavity Gas Conditions in Heavy-Ion Beam Fusion Reactors
Fusion Science and Technology | Volume 13 | Number 2 | February 1988 | Pages 279-289
Technical Paper | Heavy-Ion Fusion | doi.org/10.13182/FST88-A25105
Heavy-Ion Fusion Systems Assessment Implications for Reactors
Fusion Science and Technology | Volume 13 | Number 2 | February 1988 | Pages 290-332
Technical Paper | Heavy-Ion Fusion | doi.org/10.13182/FST88-A25106
Sensitivity of Electricity Cost to Heavy-Ion Fusion Target Characteristics
Fusion Science and Technology | Volume 13 | Number 2 | February 1988 | Pages 333-338
Technical Paper | Heavy-Ion Fusion | doi.org/10.13182/FST88-A25107
Gain Scaling Relations — Heavy-Ion Targets
Fusion Science and Technology | Volume 13 | Number 2 | February 1988 | Pages 339-347
Technical Paper | Heavy-Ion Fusion | doi.org/10.13182/FST88-A25108
Fusion Science and Technology | Volume 13 | Number 2 | February 1988 | Pages 348-355
Technical Paper | Heavy-Ion Fusion | doi.org/10.13182/FST88-A25109
Resolving Key Heavy-Ion Fusion Target Issues With Relativistic Heavy-Ion Research Accelerators
Fusion Science and Technology | Volume 13 | Number 2 | February 1988 | Pages 356-361
Technical Paper | Heavy-Ion Fusion | doi.org/10.13182/FST88-A25110
Heavy-Ion/Hot Target Interactions of Inertial Confinement Fusion Interest
Fusion Science and Technology | Volume 13 | Number 2 | February 1988 | Pages 362-374
Technical Paper | Heavy-Ion Fusion | doi.org/10.13182/FST88-A25111
Heavy-Ion Fusion Target Cost Model
Fusion Science and Technology | Volume 13 | Number 2 | February 1988 | Pages 375-395
Technical Paper | Heavy-Ion Fusion | doi.org/10.13182/FST88-A25112
Number 3
Influence of Fast Alpha Diffusion and Thermal Alpha Buildup on Tokamak Reactor Performance
Fusion Science and Technology | Volume 13 | Number 3 | March 1988 | Pages 411-422
Technical Paper | Alpha-Particle Workshop / Alpha Workshop | doi.org/10.13182/FST88-A25117
Alpha-Particle Effects on Magnetohydrodynamic Stability in the Engineering Test Reactor Tokamak
Fusion Science and Technology | Volume 13 | Number 3 | March 1988 | Pages 423-427
Technical Paper | Alpha-Particle Workshop / Alpha Workshop | doi.org/10.13182/FST88-A25118
Modification of Tokamak Ballooning Stability Boundaries by Alpha Populations
Fusion Science and Technology | Volume 13 | Number 3 | March 1988 | Pages 428-431
Technical Paper | Alpha-Particle Workshop / Alpha Workshop | doi.org/10.13182/FST88-A25119
Fusion Science and Technology | Volume 13 | Number 3 | March 1988 | Pages 432-437
Technical Paper | Alpha-Particle Workshop / Alpha Workshop | doi.org/10.13182/FST88-A25120
Problems in Modeling Toroidal Field Ripple Loss of Fast Alphas from A Tokamak Reactor
Fusion Science and Technology | Volume 13 | Number 3 | March 1988 | Pages 438-446
Technical Paper | Alpha-Particle Workshop / Alpha Workshop | doi.org/10.13182/FST88-A25121
Plasma Oscillation Bursts and Scattering of Intermediate Energy Alpha Particles
Fusion Science and Technology | Volume 13 | Number 3 | March 1988 | Pages 447-452
Technical Paper | Alpha-Particle Workshop / Alpha Workshop | doi.org/10.13182/FST88-A25122
A Novel Non-Power-Producing Fusion-Fission Breeder Reactor
Fusion Science and Technology | Volume 13 | Number 3 | March 1988 | Pages 453-462
Technical Paper | Alpha-Particle Workshop / Fusion Reactor | doi.org/10.13182/FST88-A25123
Helium-3 Functions in Tokamak-Pumped Laser Systems
Fusion Science and Technology | Volume 13 | Number 3 | March 1988 | Pages 463-472
Technical Paper | Alpha-Particle Workshop / Nonelectrical Application | doi.org/10.13182/FST88-A25124
Fusion Science and Technology | Volume 13 | Number 3 | March 1988 | Pages 473-483
Technical Paper | Alpha-Particle Workshop / Divertor System | doi.org/10.13182/FST88-A25125
Analysis of Activation Measurements Done on Slabs of Beryllium and Lead at Lotus Facility
Fusion Science and Technology | Volume 13 | Number 3 | March 1988 | Pages 484-494
Technical Paper | Alpha-Particle Workshop / Blanket Engineering | doi.org/10.13182/FST88-A25126
Fusion Science and Technology | Volume 13 | Number 3 | March 1988 | Pages 495-502
Technical Paper | Alpha-Particle Workshop / Plasma Heating System | doi.org/10.13182/FST88-A25127
Magnet Alignment in the Mirror Fusion Test Facility-B Tandem Mirror
Fusion Science and Technology | Volume 13 | Number 3 | March 1988 | Pages 503-509
Technical Paper | Alpha-Particle Workshop / Magnet System | doi.org/10.13182/FST88-A25128
Fusion Science and Technology | Volume 13 | Number 3 | March 1988 | Pages 510-514
Technical Note | Alpha-Particle Workshop / Plasma Engineering | doi.org/10.13182/FST88-A25129
Number 4
Studies of a Flexible Heliac Configuration
Fusion Science and Technology | Volume 13 | Number 4 | May 1988 | Pages 521-535
Technical Paper | Experimental Device | doi.org/10.13182/FST88-A25132
Fast Alpha Diagnostics Using Pellet Injection
Fusion Science and Technology | Volume 13 | Number 4 | May 1988 | Pages 536-542
Technical Paper | Experimental Device | doi.org/10.13182/FST88-A25133
Plasma Transport in a Compact Ignition Tokamak
Fusion Science and Technology | Volume 13 | Number 4 | May 1988 | Pages 543-554
Technical Paper | Plasma Engineering | doi.org/10.13182/FST88-A25134
Transport Simulation of a Field-Reversed Configuration Plasma
Fusion Science and Technology | Volume 13 | Number 4 | May 1988 | Pages 555-576
Technical Paper | Plasma Engineering | doi.org/10.13182/FST88-A25135
Fusion Science and Technology | Volume 13 | Number 4 | May 1988 | Pages 577-593
Technical Paper | Fusion Reactor | doi.org/10.13182/FST88-A25136
Fusion Science and Technology | Volume 13 | Number 4 | May 1988 | Pages 594-615
Technical Paper | ICF Target | doi.org/10.13182/FST88-A25137
Fusion Science and Technology | Volume 13 | Number 4 | May 1988 | Pages 616-643
Technical Paper | Tritium System | doi.org/10.13182/FST88-A25138
Heat Transfer for Fusion Component Applications
Fusion Science and Technology | Volume 13 | Number 4 | May 1988 | Pages 644-653
Technical Paper | Blanket Engineering | doi.org/10.13182/FST88-A25139
A Phenomenological Model for Prediction of Critical Heat Flux Under Highly Subcooled Conditions
Fusion Science and Technology | Volume 13 | Number 4 | May 1988 | Pages 654-659
Technical Paper | Blanket Engineering | doi.org/10.13182/FST88-A25140