Triple-utility passive solar-thermal concrete system — open-source hardware for decentralized energy infrastructure.

Overview

AeroCement turns ordinary concrete into a multifunctional energy infrastructure material. A single structure provides solar-thermal energy capture, underground thermal storage, and load-bearing structural capacity simultaneously. It is part of the OpenRoot ecosystem — a decentralized permaculture governance framework integrating thermodynamics, axiom-based governance, and proof-of-physical-work token mechanics.The system is designed for deployability in low-resource environments using locally available materials (concrete, sand, aggregate, zirconium additives) and passive physics (no moving parts except airflow and optional Stirling/TEG discharge).

How It Works

Capture

Volumetric open-cell blackbody concrete panels absorb approximately 95-98% of incident solar radiation. Air is drawn through microscopic pores in the concrete, heating as it passes through the volumetric matrix. Unlike surface-coating solar collectors, the entire volume participates in heat exchange.

Transit

Heated air flows through an insulated underground labyrinth filled with porous concrete. The labyrinth forces air into contact with every microscopic pore surface, maximizing thermal transfer to the surrounding ground battery. The system is open-loop — it breathes fresh ambient air and exhausts cooled air, rather than recirculating a sealed fluid.

Storage

An insulated ground battery retains thermal energy across multiple diurnal cycles. Soil and concrete mass provide high volumetric heat capacity at low cost.

Discharge

Stored thermal energy is converted to electricity via Stirling engine or thermoelectric generator (TEG). The temperature differential between the hot battery and ambient/night sky serves as the thermodynamic driver.

Material Science

The core material is AE-GFRC (Aerated Glass Fiber Reinforced Concrete) with zirconium substitution:

Theoretical Performance

Warning

All metrics below are from unvalidated simulations. Physical testing is needed to confirm.

Open Source Licensing

Governance and Token Mechanics

AeroCement integrates with the OpenRoot Proof of Physical Work (PoPW) framework and the ACRE token. Physical deployment of thermal infrastructure earns tokens proportional to verified energy capacity installed — linking digital governance to real-world productive output.

Resources

How to Participate

See the issue tracker and CONTRIBUTING.md on GitHub. The project seeks collaborators in:

Researchers contributing meaningful verification or refinement are offered co-authorship on resulting publications.

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Created July 7, 2026 by jesse mcmillen
Last edit July 8, 2026 by Irene Delgado