Axine Labs
Artículo #2 · Energy19 Jul 202618 páginas · 3.7 MBDOI: pending (Zenodo, 2026)

The Spectral Advantage in Energy

Autores:Axine Labs Research

Resumen Ejecutivo

Applied orbital spectroscopy for geothermal alteration cap mapping, microseepage identification, and pipeline corridor terrain stability. We demonstrate how narrow SWIR ammonium illite signatures and thermal inertia anomalies pinpoint blind hydrothermal reservoirs without destructive surface disruption.

Hallazgos Metodológicos Clave

Ammonium illite absorption at 2.120 µm reliably marks high-temperature boiling zones and geothermal upflow channels.

Surface mineral alteration induced by reducing hydrocarbon microseepage exhibits detectable bleaching of hematite and anomalous clay recrystallisation.

Diurnal thermal inertia modeling maps subterranean void formations and moisture emergence along 200+ km pipeline corridors.

Física y Metodología de Inversión

Combines multi-temporal shortwave infrared absorption mapping with diurnal day/night thermal infrared pairs normalized by broadband surface albedo to isolate subsurface thermal conductivity anomalies.

Ventanas Espectrales Diagnósticas

Band RegimeWavelength RangePhysical / Chemical Feature
SWIR-22.11 – 2.13 µmNH4+ ammonium illite substitution diagnostic envelope
TIR8.00 – 12.00 µmDiurnal surface thermal inertia and silica emissivity variation

Citación e Identificador de Objeto Digital (DOI)

BibTeX Citation:
@techreport{axine_the_spectral_advantage_in_energy_2026,
  author      = {Axine Labs Research},
  title       = {The Spectral Advantage in Energy},
  institution = {Axine Labs Technical Whitepaper Series},
  number      = {2},
  year        = {2026},
  doi         = {pending (Zenodo, 2026)},
  url         = {https://axinelabs.com/papers/the-spectral-advantage-in-energy}
}

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