Component Measurements and Design Parameters
Every component carries measurements and design parameters drawn from the frozen canon, readable directly in the model.
Numbers attached to parts
Selecting any component opens its measurements and design parameters: dimensions, materials, and the physics values that define its role. These are not captions typed alongside the geometry; they are drawn from the frozen design record, so the picture and the numbers cannot disagree.
Headline machine parameters
- Hyperion: Q 3.424 at 88.7 MW fusion power, 9.86 MA plasma current, 8 T on axis, 16.84 T peak conductor field, negative triangularity -0.30, tritium breeding ratio 1.8.
- Burner: 26.49 T plug field, 17 T throat field, 5.44 percent neutron fraction, direct energy conversion.
- Both: REBCO high-temperature superconducting magnets.
Component-level parameters
Below the machine headlines, each component carries its own numbers: layer thicknesses in millimeters for the first wall, blanket, and shield; coil bore and position in meters; field values in tesla at the conductor; axial positions along the burner. In cutaway, layer thicknesses appear at the cut face; on a selected coil, its field callout appears against the conductor.
Result versus target
The model distinguishes simulation results from design targets. The Q of 3.424 is a simulation result for an unbuilt machine; the tritium breeding ratio of 1.8 is a design target the blanket is sized to meet. Callouts label which is which, so no reader mistakes a computed design point for a measured one.
One source of truth
Because every value traces to the frozen canon, the same number appears wherever the component does, in the model, in this library, and in the design papers. See The Physics-Computable Model and Design Parameter Callouts.