HBF Virtual Reactor Lab
L1 · REDUCED idle 3D: … Reactor 3D Torus Lab Isotope Explorer Model card Hub record
REDUCED MODEL — SIMULATION PLATFORM, NOT A REACTOR. Linear-mirror concept; static reduced plasma + time-stepped weighted alphas via the real Python kernels in your browser. Particle markers are enlarged; every reading is derived from the run state or declared assumed. Ambience audio is illustrative (vacuum processes are not audible). No net-energy claim.
⚠ VISUALLY MAGNIFIED — SLOW-MOTION EDUCATIONAL VIEW

2D laboratory view (3D rendering unavailable)

The hall is shown as an interactive cross-section. Every numerical result — sensors, energy chain, particle records, run identity — remains fully available. Click hotspots to inspect components and sensors; click a particle row for its dossier.

COMPONENTS (keyboard accessible)

PARTICLES (choose a row for the dossier)

Layers
Machine shape
Field view
Plasma scale

Laboratory overview

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⚡ Energy conversion chain model output

⚖ Compare runs (same scenario)

Runs the CURRENT experiment configuration at both fidelities in your browser and compares the resulting identities and energy channels. L0 = ideal upper bound; L1 = loss-aware.

Experiment configuration

Defaults reproduce the canonical lab run. Every field is strictly validated in the kernel.

Fidelity

L2 (field maps) and L3 (WarpX/Geant4 reference) are planned — the kernel refuses to fake them.

Reactor geometry

Plasma

Magnetic field

Simulation resolution

DirectConvert

ΔE = qΔV within the declared model; losses are assumed values (assumed).

t = 0.0e0 s · slow-mo ×1

Starting the lab engine

Preparing…