Structural Plenitude Theory (SPT v1.3 – Part I): The Structural Flux Paradigm and Thermal Coupling in a Viscoelastic Substrate
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| Natura: | Recurso digital |
| Lingua: | inglese |
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Zenodo
2026
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| _version_ | 1866901884961292288 |
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| author | Azevedo jr, Carlos |
| author_facet | Azevedo jr, Carlos |
| contents | <p>This work presents <strong>SPT v1.3 – Part I</strong>, introducing the <strong>Structural Flux Paradigm</strong>, a thermodynamically consistent extension of the Structural Plenitude Theory (SPT).</p> <p>In this formulation, heat, radiation, momentum, and energy transfer are no longer treated as independent or purely radiative processes. Instead, they are described as <strong>substrate-mediated fluxes</strong> governed by the viscoelastic state of the vacuum (Pleroma). Thermal exchange is reinterpreted as a problem of <strong>structural coupling efficiency</strong>, where unsuccessful coupling results in <strong>residual radiative dissipation (ℛ)</strong> rather than heat absorption.</p> <p>This paper establishes the conceptual and mathematical foundations of <strong>structural impedance</strong>, redefining:</p> <ul> <li> <p>thermal coupling,</p> </li> <li> <p>latitudinal temperature asymmetries,</p> </li> <li> <p>failed thermodynamic anchoring,</p> </li> <li> <p>and radiative excess phenomena.</p> </li> </ul> <p>No new ontological postulates are introduced. The work strictly extends previous SPT formulations by adding a <strong>dynamic and thermodynamic framework</strong>, preparing the theory for quantitative modeling and observational tests developed in subsequent parts of v1.3.</p> <p>This document is part of a <strong>frozen, multi-part v1.3 release</strong>, where each part receives an independent DOI for traceability and version control.</p> |
| format | Recurso digital |
| id | zenodo_https___doi_org_10_5281_zenodo_18155719 |
| institution | Zenodo |
| language | eng |
| publishDate | 2026 |
| publisher | Zenodo |
| record_format | zenodo |
| spellingShingle | Structural Plenitude Theory (SPT v1.3 – Part I): The Structural Flux Paradigm and Thermal Coupling in a Viscoelastic Substrate Azevedo jr, Carlos Structural Plenitude Theory, Viscoelastic Vacuum, Structural Flux Paradigm, Non-Radiative Thermalization, Alternative Gravity, Cosmological Substrate <p>This work presents <strong>SPT v1.3 – Part I</strong>, introducing the <strong>Structural Flux Paradigm</strong>, a thermodynamically consistent extension of the Structural Plenitude Theory (SPT).</p> <p>In this formulation, heat, radiation, momentum, and energy transfer are no longer treated as independent or purely radiative processes. Instead, they are described as <strong>substrate-mediated fluxes</strong> governed by the viscoelastic state of the vacuum (Pleroma). Thermal exchange is reinterpreted as a problem of <strong>structural coupling efficiency</strong>, where unsuccessful coupling results in <strong>residual radiative dissipation (ℛ)</strong> rather than heat absorption.</p> <p>This paper establishes the conceptual and mathematical foundations of <strong>structural impedance</strong>, redefining:</p> <ul> <li> <p>thermal coupling,</p> </li> <li> <p>latitudinal temperature asymmetries,</p> </li> <li> <p>failed thermodynamic anchoring,</p> </li> <li> <p>and radiative excess phenomena.</p> </li> </ul> <p>No new ontological postulates are introduced. The work strictly extends previous SPT formulations by adding a <strong>dynamic and thermodynamic framework</strong>, preparing the theory for quantitative modeling and observational tests developed in subsequent parts of v1.3.</p> <p>This document is part of a <strong>frozen, multi-part v1.3 release</strong>, where each part receives an independent DOI for traceability and version control.</p> |
| title | Structural Plenitude Theory (SPT v1.3 – Part I): The Structural Flux Paradigm and Thermal Coupling in a Viscoelastic Substrate |
| topic | Structural Plenitude Theory, Viscoelastic Vacuum, Structural Flux Paradigm, Non-Radiative Thermalization, Alternative Gravity, Cosmological Substrate |
| url | https://doi.org/10.5281/zenodo.18155719 |