Movilla Miangolarra

Stochastic Thermodynamic Treatment of Thermal Anisotropy

Springer

ISBN 978-3-031-68065-6

Standardpreis


128,39 €

lieferbar ca. 10 Tage als Sonderdruck ohne Rückgaberecht

Preisangaben inkl. MwSt. Abhängig von der Lieferadresse kann die MwSt. an der Kasse variieren. Weitere Informationen

auch verfügbar als eBook (PDF) für 128,39 €

Bibliografische Daten

Fachbuch

Buch. Hardcover

2024

2 s/w-Abbildungen, 30 Farbabbildungen, Bibliographien.

In englischer Sprache

Umfang: xvii, 159 S.

Format (B x L): 15,5 x 23,5 cm

Verlag: Springer

ISBN: 978-3-031-68065-6

Weiterführende bibliografische Daten

Das Werk ist Teil der Reihe: Springer Theses

auch verfügbar als eBook (PDF) für 128,39 €

Produktbeschreibung

This thesis advances our understanding of how thermal anisotropy can be exploited to extract work through a mechanism that is quite distinct from the classical Carnot heat engine. Anisotropy, the presence of thermal or chemical gradients, is ubiquitous in the real world and powers the cascade of processes that sustain life. The thesis quantifies, for the first time, the maximum amount of power and efficiency that a suitable mechanism (a Brownian gyrator) can achieve in such conditions. An important contribution at the center of the thesis is to lay out a geometric framework that brings out the importance of an isoperimetric problem to analyze and quantify optimal operation of thermodynamic engines that harvest energy when simultaneously in contact with several heat baths. Fundamental bounds are derived via isoperimetric inequalities which capture the trade-off between work and dissipation that accrue during thermodynamic cycles. A geometric theory that allows such insights is explained first – the theory of optimal mass transport – followed by rudiments of stochastic thermodynamics that allow for quantification of work and entropy production during finite-time thermodynamic transitions. The thesis further explores entropy production due to heat flowing between heat baths of different temperature through the system dynamics, and concludes with analysis as a proof-of-concept of an autonomous engine that harvests energy from a thermal gradient to continuously produce work in a stable limit cycle operation.

Autorinnen und Autoren

Kundeninformationen

Nominated as an outstanding PhD Thesis by the University of California, Irvine Begins with an accessible introduction to optimal mass transport Presents a geometric framework to quantify the performance of thermodynamic engines under anisotropic fluctuations

Produktsicherheit

Hersteller

Springer Nature Customer Service Center GmbH

ProductSafety@springernature.com

Topseller & Empfehlungen für Sie

Ihre zuletzt angesehenen Produkte

Rezensionen

Dieses Set enthält folgende Produkte:
    Auch in folgendem Set erhältlich:

    • nach oben

      Ihre Daten werden geladen ...