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Indoor thermoregulatory homeostasis using hydrodynamic instability

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This study published in PNAS presents a novel approach to indoor temperature management using hydrodynamic instability principles to achieve thermoregulatory homeostasis. The research addresses a fundamental tradeoff in optimal temperature control that has previously limited efficiency in temperature management systems. The work has implications for multiple sectors including agriculture, power generation, and residential housing where indoor climate control is critical for sustainability.


Indoor temperature management is essential for global sustainability across nearly every major sector. A breakthrough in resolving the efficiency tradeoffs in temperature control systems could significantly reduce energy consumption and improve climate management in buildings, greenhouses, and industrial facilities.


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Thermoregulation 12 articles Explore Concept → Homeostasis Concept coming soon Hydrodynamic stability Concept coming soon

Proceedings of the National Academy of Sciences, Volume 123, Issue 21, May 2026. <br/>SignificanceIndoor temperature management underpins the sustainability of nearly every global sector, from agriculture to power generation and residential housing. However, optimal temperature management remains elusive due to an unresolved tradeoff: …

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