Abstract
This document serves as a formal Technical Addendum to the ALLFROMAIR™ Unified Thermodynamic Platform. It discloses the proprietary "Terra" configuration, a system architecture designed for autonomous Atmospheric Water Generation (AWG) and Tri-Generation in inland, arid, or industrial environments lacking natural thermal sinks (e.g., sea or lakes).
The addendum details the engineering of an Internal Hydrological Loop coupled with a thermal accumulator buffer. Key disclosures include:
* Closed-Loop Thermodynamics: A method for recirculating process water to achieve Zero Liquid Discharge (ZLD) while balancing thermal loads internally.
* Active Thermal Balancing: The utilization of the Third Stage (SVRU 2) as a dynamic "Scavenger" that regulates system temperature via controlled evaporative cooling (Wet Scavenging) during periods of low external heat demand.
* Active Biological Mitigation: An integrated AI-CORE™ control protocol that utilizes periodic thermal shock (>70°C) to sterilize the internal water volume, mitigating Legionella risks in closed-loop operations.
This configuration validates the system's capability to operate as a location-agnostic utility hub, balancing gross water yield against thermal autonomy without reliance on external water infrastructure.
Keywords:
Atmospheric Water Generation
AWG
Closed-Loop Thermodynamics
Tri-Generation
Thermal Balancing
Evaporative Cooling
SVRU Technology
Zero Liquid Discharge
ZLD
Decentralized Infrastructure
Legionella Mitigation
ALLFROMAIR
Industrial Symbiosis
Water-Energy Nexus
Creative Commons License

This work is licensed under a Creative Commons Attribution 4.0 License.
Recommended Citation
Lius, Vesa Olavi, "Technical Addendum: Autonomous Thermal Balancing & Closed-Loop Architecture for ALLFROMAIR™ (Gen 3)", Technical Disclosure Commons, ()
https://www.tdcommons.org/dpubs_series/9220