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    Kívánságlista
    Engineering Thermodynamics of Thermal Radiation: for Solar Power Utilization

    Engineering Thermodynamics of Thermal Radiation: for Solar Power Utilization by Petela, Richard;

    Sorozatcím: MECHANICAL ENGINEERING;

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    A termék adatai:

    • Kiadó McGraw Hill
    • Megjelenés dátuma 2010. március 16.

    • ISBN 9780071639620
    • Kötéstípus Keménykötés
    • Terjedelem416 oldal
    • Méret 236x160x27 mm
    • Súly 724 g
    • Nyelv angol
    • 0

    Kategóriák

    Rövid leírás:

    Authoritative coverage of thermal radiation theory and potential applications in solar power energy generation

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    Hosszú leírás:

    Publisher's Note: Products purchased from Third Party sellers are not guaranteed by the publisher for quality, authenticity, or access to any online entitlements included with the product.


    Complete coverage of the thermodynamics of radiation matter for solar energy utilization

    This comprehensive guide reviews the fundamentals of the thermodynamics of radiation matter--photon gas. The book introduces the exergy of radiation through the most advanced thermodynamic analysis of the solar power processes involving radiation.

    Engineering Thermodynamics of Thermal Radiation: For Solar Power Utilization provides, for the first time, an exhaustive discussion on energy and exergy analysis of radiation processes. Extensive details on the exergy of radiation are developed for evaluation of the practical uses of radiation. This volume contains quantitative calculation examples for solar heating, a solar chimney power plant, photosynthesis, and photovoltaic technology. Addressed to researchers, designers, and users of different solar installations, the book also has the potential to inspire the development of new applications of radiation exergy.

    Coverage includes:

    • Definitions and laws of substance and radiation
    • Laws of thermodynamic analysis, including energy and exergy analysis
    • Thermodynamic properties of photon gas
    • Exergy of emission and arbitrary radiation flux
    • Energy, entropy, and exergy radiation spectra of surfaces
    • Thermodynamic analysis of heat from the sun, a solar chimney power plant, photosynthesis, and the photovoltaic


    Publisher's Note: Products purchased from Third Party sellers are not guaranteed by the publisher for quality, authenticity, or access to any online entitlements included with the product.


    Complete coverage of the thermodynamics of radiation matter for solar energy utilization

    This comprehensive guide reviews the fundamentals of the thermodynamics of radiation matter--photon gas. The book introduces the exergy of radiation through the most advanced thermodynamic analysis of the solar power processes involving radiation.

    Engineering Thermodynamics of Thermal Radiation: For Solar Power Utilization provides, for the first time, an exhaustive discussion on energy and exergy analysis of radiation processes. Extensive details on the exergy of radiation are developed for evaluation of the practical uses of radiation. This volume contains quantitative calculation examples for solar heating, a solar chimney power plant, photosynthesis, and photovoltaic technology. Addressed to researchers, designers, and users of different solar installations, the book also has the potential to inspire the development of new applications of radiation exergy.

    Coverage includes:

    • Definitions and laws of substance and radiation
    • Laws of thermodynamic analysis, including energy and exergy analysis
    • Thermodynamic properties of photon gas
    • Exergy of emission and arbitrary radiation flux
    • Energy, entropy, and exergy radiation spectra of surfaces
    • Thermodynamic analysis of heat from the sun, a solar chimney power plant, photosynthesis, and the photovoltaic

    Több

    Tartalomjegyzék:

    Chapter 1. Introduction; Chapter 2. Definitions and Laws of Substance; Chapter 3. Definitions and Laws of Radiation; Chapter 4. The Laws of Thermodynamic Analysis; Chapter 5. Thermodynamic Properties of Photon Gas; Chapter 6. Exergy of Emission; Chapter 7. Radiation Flux; Chapter 8. Radiation Spectra of a Surface; Chapter 9. Discussion of Radiation Exergy Formulae Proposed by Researchers; Chapter 10. Thermodynamic Analysis of Heat from the Sun; Chapter 11. Thermodynamic Analysis of a Solar Chimney Power Plant; Chapter 12. Thermodynamic Analysis of Photosynthesis; Chapter 13. Thermodynamic Analysis of the Photovoltaic; References; Appendices; Index

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