fuel (LHV)0.0 kW
electric0 W
⚡ η LHV0.0 %
light η0.0 %
core300 K
sim lag— ms
drag greens — NESS kernel live · NaCl↔Na coupled (last grab drives; ideal-gas at wall T [MODEL]; >1 atm = fuming transport above saturation [OP]):
nNa 5.6e22 m⁻³ ·
trap gap 4.0 mm ·
superrad η 0.15 ·
recup 0.95 ·
Psec 0.5 atm ·
589 trap ON ·
EMERGENT SPECTRUM — Voigt · self-reversal · Na₂ 805/882 [deGroot 3.21] · log
T(r,z) FIELD + SPECIES vs z — kernel gradient [MODEL radial projection] · log
SANKEY — where the energy goes + entropy generation Ṡ=Q/T [MODEL]
ACTIVE BLUEPRINT — section at z (drag to scan) · T(r) + material boundaries [T dims · MODEL wall ladder]
vs TIME — fuel · electric · η │ 589 · 819 · Na₂ NIR (autoscale)
WIDENING BUDGET — log FWHM vs n_Na · Voigt ← Lorentz ← Doppler ← colored-HBT transport [kernel formulas]
FLUCTUATIONS — FDT floor kT²/C_V [T Landau §112] · convective OU [MODEL Ra] · log PSD
ELECTRICAL — rings→string→bus · · 3-SPLIT off
bill of materials — drag greens
quartz tube 101.6×1257 $ 40
polycrystalline alumina tube $ 50
alumina hex extrusion $ 60
3d printed alumina, 1 kg $ 200
boards and mounting $ 100
24.0–24.4% eff · Vmpp 0.626 V · EQE ≈1.00 [T] · nano-textured: NIR traverses the Si
Σ parts $ 731
idiot factor ×2.0
Cost $ 1462
1814 W → $0.81/W
learning rate 20% / doubling [Wright]
at cumulative 1 MW deployed:
cost $/W
Turbines flat at $3/W and 3 Years! ↗
Price $2.5/W → margin %
SUBSYSTEM HEALTH — driver · rate sparkline · damage [MODEL Arrhenius]
ANNULUS FAN 35% · T_cell 330 K · −1.1 W
quartz
PCA
Na/NaCl
cells
seals
SIZE YOUR CHUNGUS — drag greens
I need 30 kW electric
units — · fleet out —
fuel in (LHV) — @ η —
≈ — propane [T 46.0 MJ/kg] · — NG [T 35.8 MJ/Nm³]
fuel @ $0.040/kWhLHV → —/kWhe fuel-only
hardware —
🛒 BUY — $2.5/W
🔆 THE FIRST 100 — claim a founding serial →