Roebuck's Law 3: Transient Thermal Sequestration in Bounded Degrees of Freedom

This methods preprint defines transient sequestration as finite storage or conversion among identifiable state variables. Version 2 distinguishes chemical, hydraulic, elastic, thermal, electrical, magnetic, kinetic, and potential storage; includes mass, work, leakage, degradation, and hysteresis channels; and requires no unaccounted net gain over a declared cycle. Starch and turgor are treated as distinct chemical and hydraulic/elastic examples. No experimental validation is claimed.

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Publication Details

Journal
Zenodo (CERN European Organization for Nuclear Research)
Published
2026-09-14
DOI
https://doi.org/10.5281/zenodo.22758756
Primary Topic
Heat Transfer and Numerical Methods
Type
preprint
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Roebuck's Law 3: Transient Thermal Sequestration in Bounded Degrees of Freedom

Andrew Roebuck
Zenodo (CERN European Organization for Nuclear Research)
Heat Transfer and Numerical Methods
preprint

Roebuck's Law 3: Transient Thermal Sequestration in Bounded Degrees of Freedom

Andrew Roebuck
preprint en

Abstract

This methods preprint defines transient sequestration as finite storage or conversion among identifiable state variables. Version 2 distinguishes chemical, hydraulic, elastic, thermal, electrical, magnetic, kinetic, and potential storage; includes mass, work, leakage, degradation, and hysteresis channels; and requires no unaccounted net gain over a declared cycle. Starch and turgor are treated as distinct chemical and hydraulic/elastic examples. No experimental validation is claimed.

Zenodo (CERN European Organization for Nuclear Research)
Sarguja University (IN)
Peace, Justice and strong institutions
Heat Transfer and Numerical Methods
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