Fundamentals of thermophotovoltaic energy conversion /:
This is a text book presenting the fundamentals of thermophotovoltaic(TPV) energy conversion suitable for an upper undergraduate or first year graduate course. In addition it can serve as a reference or design aid for engineers developing TPV systems. Mathematica design programs for interference fil...
Gespeichert in:
1. Verfasser: | |
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Format: | Elektronisch E-Book |
Sprache: | English |
Veröffentlicht: |
Amsterdam, Netherlands ; Boston ; Oxford, UK :
Elsevier,
2007.
|
Ausgabe: | 1st ed. |
Schlagworte: | |
Online-Zugang: | DE-862 DE-863 |
Zusammenfassung: | This is a text book presenting the fundamentals of thermophotovoltaic(TPV) energy conversion suitable for an upper undergraduate or first year graduate course. In addition it can serve as a reference or design aid for engineers developing TPV systems. Mathematica design programs for interference filters and a planar TPV system are included on a CD-Rom disk. Each chapter includes a summary and concludes with a set of problems. The first chapter presents the electromagnetic theory and radiation transfer theory necessary to calculate the optical properties of the components in a TPV optical cavit. |
Beschreibung: | "Mathematica computer programs for calculating the optical properties of interference filters and for calculating the performance of a planar TPV system are included on a CD-ROM disk"--Page vii |
Beschreibung: | 1 online resource (xiii, 515 pages :) |
Bibliographie: | Includes bibliographical references and index. |
ISBN: | 9780080560687 0080560687 9780444531117 0444531114 1281189111 9781281189110 9786611189112 6611189114 |
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100 | 1 | |a Chubb, Donald L. |0 http://id.loc.gov/authorities/names/no2007092427 | |
245 | 1 | 0 | |a Fundamentals of thermophotovoltaic energy conversion / |c Donald L. Chubb. |
246 | 3 | 0 | |a Thermophotovoltaic energy conversion |
250 | |a 1st ed. | ||
260 | |a Amsterdam, Netherlands ; |a Boston ; |a Oxford, UK : |b Elsevier, |c 2007. | ||
300 | |a 1 online resource (xiii, 515 pages :) | ||
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500 | |a "Mathematica computer programs for calculating the optical properties of interference filters and for calculating the performance of a planar TPV system are included on a CD-ROM disk"--Page vii | ||
504 | |a Includes bibliographical references and index. | ||
588 | 0 | |a Print version record. | |
520 | |a This is a text book presenting the fundamentals of thermophotovoltaic(TPV) energy conversion suitable for an upper undergraduate or first year graduate course. In addition it can serve as a reference or design aid for engineers developing TPV systems. Mathematica design programs for interference filters and a planar TPV system are included on a CD-Rom disk. Each chapter includes a summary and concludes with a set of problems. The first chapter presents the electromagnetic theory and radiation transfer theory necessary to calculate the optical properties of the components in a TPV optical cavit. | ||
505 | 0 | |a Cover -- Acknowledgements -- Preface -- Table of Contents -- Chapter 1 -- Introduction -- 1.1 Symbols -- 1.2 Thermphotovoltaic (TPV) Energy Conversion Concept -- 1.3 A Short History of TPV Energy Conversion -- 1.4 TPV Applications -- 1.5 Propagation of Electromagnetic Waves -- 1.5.1 Plane Wave Solution to Maxwell's Equations -- 1.5.2 Energy Flux for Plane Electromagnetic Waves -- 1.5.3 Boundary Conditions at an Interface -- 1.5.4 The Law of Reflection and Snell's Law of Refraction -- 1.5.5 Reflectivity and Transmissivity at an Interface -- 1.5.6 Connections between Electromagnetic Theory and Radiation Transfer Theory -- 1.6 Introduction to Radiation Transfer -- 1.6.1 Radiation Intensity -- 1.6.2 Blackbody -- 1.6.3 Blackbody Spectral Emissive Power -- 1.6.4 Blackbody Total Emissive Power -- 1.6.5 Equations for Radiation Energy Transfer -- 1.6.6 Energy Conservation Including Radiation -- 1.7 Optical Properties -- 1.7.1 Emittance and Absorptance -- 1.7.2 Hemispherical Spectral and Hemispherical Total Reflectivity -- 1.7.3 Independence of Emitted (Absorbed), Reflected, and Transmitted Radiation -- 1.8 Radiation Energy Balance for One Dimensional Model -- 1.9 Emittance of a Metal into a Dielectric -- 1.10 Summary -- References -- Problems -- Chapter 2 -- Maximum Efficiency and Power Density for TPV Energy Conversion -- 2.1 Symbols -- 2.2 Maximum TPV Efficiency -- 2.3 Maximum TPV Efficiency for Constant Emitter Emittance and PV Cell Reflectance -- 2.4 Ideal TPV System -- 2.5 Approximation of Selective Emitter and Filter TPV Systems -- 2.6 Power Output -- 2.7 Summary -- References -- Problems -- Chapter 3 -- Emitter Performances -- 3.1 Symbols -- 3.2 Gray Body Emitters -- 3.3 Selective Emitters -- 3.3.1 Rare Earth Selective Emitters -- 3.3.2 Other Selective Emitters -- 3.4 Extinction Coefficient and Optical Depth -- 3.5 Extinction Coefficients of Rare Earth Selective Emitters -- 3.6 Coupled Energy Equation and Radiation Transfer Equation for a Solid Material -- 3.7 One Dimensional Radiation Transfer Equations -- 3.7.1 One Dimensional Source Function Equation -- 3.7.2 One Dimensional Radiation Flux -- 3.7.3 No Scattering Medium -- 3.8 Spectral Emittance for Planar Emitter -- 3.8.1 No Scattering Spectral Emittance -- 3.8.2 No Scattering, Linear Temperature Variation Spectral Emittance -- 3.8.3 Importance of Temperature Change Across Planar Emitter -- 3.8.4 Effect of Scattering on Spectral Emittance of a Planar Emitter -- 3.9 Cylindrical Emitter -- 3.10 Emitter Performance -- 3.10.1 Gray Body Emitter Performance -- 3.10.2 Selective Emitter Performance -- 3.10.3 Cylindrical Selective Emitter Performance -- 3.10.4 Planar Selective Emitter Performance -- 3.11 Comparison of Selective Emitters and Gray Body Emitters -- 3.12 Summary -- References -- Problems -- Chapter 4 -- Optical Filters for Thermophotovoltaics -- 4.1 Symbols -- 4.2 Filter Performance Parameters -- 4.3 Interference Filters -- 4.3.1 In. | |
546 | |a English. | ||
650 | 0 | |a Photovoltaic power generation. |0 http://id.loc.gov/authorities/subjects/sh85101427 | |
650 | 0 | |a Thermoelectricity. |0 http://id.loc.gov/authorities/subjects/sh85134791 | |
650 | 0 | |a Photovoltaic power systems. |0 http://id.loc.gov/authorities/subjects/sh93000144 | |
650 | 0 | |a Thermoelectric apparatus and appliances. |0 http://id.loc.gov/authorities/subjects/sh85134787 | |
650 | 6 | |a Thermoélectricité. | |
650 | 6 | |a Conversion photovoltaïque. | |
650 | 6 | |a Systèmes photovoltaïques. | |
650 | 6 | |a Appareils thermoélectriques. | |
650 | 7 | |a TECHNOLOGY & ENGINEERING |x Electrical. |2 bisacsh | |
650 | 7 | |a Photovoltaic power generation |2 fast | |
650 | 7 | |a Photovoltaic power systems |2 fast | |
650 | 7 | |a Thermoelectric apparatus and appliances |2 fast | |
650 | 7 | |a Thermoelectricity |2 fast | |
650 | 7 | |a Thermoélectricité. |2 rvm | |
650 | 7 | |a Conversion photovoltaïque. |2 rvm | |
650 | 7 | |a Systèmes photovoltaïques. |2 rvm | |
650 | 7 | |a Appareils thermoélectriques. |2 rvm | |
655 | 7 | |a dissertations. |2 aat | |
655 | 7 | |a Academic theses |2 fast | |
655 | 7 | |a Academic theses. |2 lcgft |0 http://id.loc.gov/authorities/genreForms/gf2014026039 | |
655 | 7 | |a Thèses et écrits académiques. |2 rvmgf | |
758 | |i has work: |a Fundamentals of thermophotovoltaic energy conversion (Text) |1 https://id.oclc.org/worldcat/entity/E39PCGvCC8X6rrDRqcb4QpPc8y |4 https://id.oclc.org/worldcat/ontology/hasWork | ||
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Datensatz im Suchindex
DE-BY-FWS_katkey | ZDB-4-EBA-ocn212377200 |
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author | Chubb, Donald L. |
author_GND | http://id.loc.gov/authorities/names/no2007092427 |
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contents | Cover -- Acknowledgements -- Preface -- Table of Contents -- Chapter 1 -- Introduction -- 1.1 Symbols -- 1.2 Thermphotovoltaic (TPV) Energy Conversion Concept -- 1.3 A Short History of TPV Energy Conversion -- 1.4 TPV Applications -- 1.5 Propagation of Electromagnetic Waves -- 1.5.1 Plane Wave Solution to Maxwell's Equations -- 1.5.2 Energy Flux for Plane Electromagnetic Waves -- 1.5.3 Boundary Conditions at an Interface -- 1.5.4 The Law of Reflection and Snell's Law of Refraction -- 1.5.5 Reflectivity and Transmissivity at an Interface -- 1.5.6 Connections between Electromagnetic Theory and Radiation Transfer Theory -- 1.6 Introduction to Radiation Transfer -- 1.6.1 Radiation Intensity -- 1.6.2 Blackbody -- 1.6.3 Blackbody Spectral Emissive Power -- 1.6.4 Blackbody Total Emissive Power -- 1.6.5 Equations for Radiation Energy Transfer -- 1.6.6 Energy Conservation Including Radiation -- 1.7 Optical Properties -- 1.7.1 Emittance and Absorptance -- 1.7.2 Hemispherical Spectral and Hemispherical Total Reflectivity -- 1.7.3 Independence of Emitted (Absorbed), Reflected, and Transmitted Radiation -- 1.8 Radiation Energy Balance for One Dimensional Model -- 1.9 Emittance of a Metal into a Dielectric -- 1.10 Summary -- References -- Problems -- Chapter 2 -- Maximum Efficiency and Power Density for TPV Energy Conversion -- 2.1 Symbols -- 2.2 Maximum TPV Efficiency -- 2.3 Maximum TPV Efficiency for Constant Emitter Emittance and PV Cell Reflectance -- 2.4 Ideal TPV System -- 2.5 Approximation of Selective Emitter and Filter TPV Systems -- 2.6 Power Output -- 2.7 Summary -- References -- Problems -- Chapter 3 -- Emitter Performances -- 3.1 Symbols -- 3.2 Gray Body Emitters -- 3.3 Selective Emitters -- 3.3.1 Rare Earth Selective Emitters -- 3.3.2 Other Selective Emitters -- 3.4 Extinction Coefficient and Optical Depth -- 3.5 Extinction Coefficients of Rare Earth Selective Emitters -- 3.6 Coupled Energy Equation and Radiation Transfer Equation for a Solid Material -- 3.7 One Dimensional Radiation Transfer Equations -- 3.7.1 One Dimensional Source Function Equation -- 3.7.2 One Dimensional Radiation Flux -- 3.7.3 No Scattering Medium -- 3.8 Spectral Emittance for Planar Emitter -- 3.8.1 No Scattering Spectral Emittance -- 3.8.2 No Scattering, Linear Temperature Variation Spectral Emittance -- 3.8.3 Importance of Temperature Change Across Planar Emitter -- 3.8.4 Effect of Scattering on Spectral Emittance of a Planar Emitter -- 3.9 Cylindrical Emitter -- 3.10 Emitter Performance -- 3.10.1 Gray Body Emitter Performance -- 3.10.2 Selective Emitter Performance -- 3.10.3 Cylindrical Selective Emitter Performance -- 3.10.4 Planar Selective Emitter Performance -- 3.11 Comparison of Selective Emitters and Gray Body Emitters -- 3.12 Summary -- References -- Problems -- Chapter 4 -- Optical Filters for Thermophotovoltaics -- 4.1 Symbols -- 4.2 Filter Performance Parameters -- 4.3 Interference Filters -- 4.3.1 In. |
ctrlnum | (OCoLC)212377200 |
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dewey-raw | 621.31244 |
dewey-search | 621.31244 |
dewey-sort | 3621.31244 |
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discipline | Elektrotechnik / Elektronik / Nachrichtentechnik |
edition | 1st ed. |
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genre_facet | dissertations. Academic theses Academic theses. Thèses et écrits académiques. |
id | ZDB-4-EBA-ocn212377200 |
illustrated | Illustrated |
indexdate | 2025-03-18T14:14:26Z |
institution | BVB |
isbn | 9780080560687 0080560687 9780444531117 0444531114 1281189111 9781281189110 9786611189112 6611189114 |
language | English |
oclc_num | 212377200 |
open_access_boolean | |
owner | MAIN DE-862 DE-BY-FWS DE-863 DE-BY-FWS |
owner_facet | MAIN DE-862 DE-BY-FWS DE-863 DE-BY-FWS |
physical | 1 online resource (xiii, 515 pages :) |
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publishDate | 2007 |
publishDateSearch | 2007 |
publishDateSort | 2007 |
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spelling | Chubb, Donald L. http://id.loc.gov/authorities/names/no2007092427 Fundamentals of thermophotovoltaic energy conversion / Donald L. Chubb. Thermophotovoltaic energy conversion 1st ed. Amsterdam, Netherlands ; Boston ; Oxford, UK : Elsevier, 2007. 1 online resource (xiii, 515 pages :) text txt rdacontent computer c rdamedia online resource cr rdacarrier text file "Mathematica computer programs for calculating the optical properties of interference filters and for calculating the performance of a planar TPV system are included on a CD-ROM disk"--Page vii Includes bibliographical references and index. Print version record. This is a text book presenting the fundamentals of thermophotovoltaic(TPV) energy conversion suitable for an upper undergraduate or first year graduate course. In addition it can serve as a reference or design aid for engineers developing TPV systems. Mathematica design programs for interference filters and a planar TPV system are included on a CD-Rom disk. Each chapter includes a summary and concludes with a set of problems. The first chapter presents the electromagnetic theory and radiation transfer theory necessary to calculate the optical properties of the components in a TPV optical cavit. Cover -- Acknowledgements -- Preface -- Table of Contents -- Chapter 1 -- Introduction -- 1.1 Symbols -- 1.2 Thermphotovoltaic (TPV) Energy Conversion Concept -- 1.3 A Short History of TPV Energy Conversion -- 1.4 TPV Applications -- 1.5 Propagation of Electromagnetic Waves -- 1.5.1 Plane Wave Solution to Maxwell's Equations -- 1.5.2 Energy Flux for Plane Electromagnetic Waves -- 1.5.3 Boundary Conditions at an Interface -- 1.5.4 The Law of Reflection and Snell's Law of Refraction -- 1.5.5 Reflectivity and Transmissivity at an Interface -- 1.5.6 Connections between Electromagnetic Theory and Radiation Transfer Theory -- 1.6 Introduction to Radiation Transfer -- 1.6.1 Radiation Intensity -- 1.6.2 Blackbody -- 1.6.3 Blackbody Spectral Emissive Power -- 1.6.4 Blackbody Total Emissive Power -- 1.6.5 Equations for Radiation Energy Transfer -- 1.6.6 Energy Conservation Including Radiation -- 1.7 Optical Properties -- 1.7.1 Emittance and Absorptance -- 1.7.2 Hemispherical Spectral and Hemispherical Total Reflectivity -- 1.7.3 Independence of Emitted (Absorbed), Reflected, and Transmitted Radiation -- 1.8 Radiation Energy Balance for One Dimensional Model -- 1.9 Emittance of a Metal into a Dielectric -- 1.10 Summary -- References -- Problems -- Chapter 2 -- Maximum Efficiency and Power Density for TPV Energy Conversion -- 2.1 Symbols -- 2.2 Maximum TPV Efficiency -- 2.3 Maximum TPV Efficiency for Constant Emitter Emittance and PV Cell Reflectance -- 2.4 Ideal TPV System -- 2.5 Approximation of Selective Emitter and Filter TPV Systems -- 2.6 Power Output -- 2.7 Summary -- References -- Problems -- Chapter 3 -- Emitter Performances -- 3.1 Symbols -- 3.2 Gray Body Emitters -- 3.3 Selective Emitters -- 3.3.1 Rare Earth Selective Emitters -- 3.3.2 Other Selective Emitters -- 3.4 Extinction Coefficient and Optical Depth -- 3.5 Extinction Coefficients of Rare Earth Selective Emitters -- 3.6 Coupled Energy Equation and Radiation Transfer Equation for a Solid Material -- 3.7 One Dimensional Radiation Transfer Equations -- 3.7.1 One Dimensional Source Function Equation -- 3.7.2 One Dimensional Radiation Flux -- 3.7.3 No Scattering Medium -- 3.8 Spectral Emittance for Planar Emitter -- 3.8.1 No Scattering Spectral Emittance -- 3.8.2 No Scattering, Linear Temperature Variation Spectral Emittance -- 3.8.3 Importance of Temperature Change Across Planar Emitter -- 3.8.4 Effect of Scattering on Spectral Emittance of a Planar Emitter -- 3.9 Cylindrical Emitter -- 3.10 Emitter Performance -- 3.10.1 Gray Body Emitter Performance -- 3.10.2 Selective Emitter Performance -- 3.10.3 Cylindrical Selective Emitter Performance -- 3.10.4 Planar Selective Emitter Performance -- 3.11 Comparison of Selective Emitters and Gray Body Emitters -- 3.12 Summary -- References -- Problems -- Chapter 4 -- Optical Filters for Thermophotovoltaics -- 4.1 Symbols -- 4.2 Filter Performance Parameters -- 4.3 Interference Filters -- 4.3.1 In. English. Photovoltaic power generation. http://id.loc.gov/authorities/subjects/sh85101427 Thermoelectricity. http://id.loc.gov/authorities/subjects/sh85134791 Photovoltaic power systems. http://id.loc.gov/authorities/subjects/sh93000144 Thermoelectric apparatus and appliances. http://id.loc.gov/authorities/subjects/sh85134787 Thermoélectricité. Conversion photovoltaïque. Systèmes photovoltaïques. Appareils thermoélectriques. TECHNOLOGY & ENGINEERING Electrical. bisacsh Photovoltaic power generation fast Photovoltaic power systems fast Thermoelectric apparatus and appliances fast Thermoelectricity fast Thermoélectricité. rvm Conversion photovoltaïque. rvm Systèmes photovoltaïques. rvm Appareils thermoélectriques. rvm dissertations. aat Academic theses fast Academic theses. lcgft http://id.loc.gov/authorities/genreForms/gf2014026039 Thèses et écrits académiques. rvmgf has work: Fundamentals of thermophotovoltaic energy conversion (Text) https://id.oclc.org/worldcat/entity/E39PCGvCC8X6rrDRqcb4QpPc8y https://id.oclc.org/worldcat/ontology/hasWork Print version: Chubb, Donald L. Fundamentals of thermophotovoltaic energy conversion. 1st ed. Amsterdam, Netherlands ; Boston ; Oxford, UK : Elsevier, 2007 9780444527219 0444527214 (OCoLC)84150882 |
spellingShingle | Chubb, Donald L. Fundamentals of thermophotovoltaic energy conversion / Cover -- Acknowledgements -- Preface -- Table of Contents -- Chapter 1 -- Introduction -- 1.1 Symbols -- 1.2 Thermphotovoltaic (TPV) Energy Conversion Concept -- 1.3 A Short History of TPV Energy Conversion -- 1.4 TPV Applications -- 1.5 Propagation of Electromagnetic Waves -- 1.5.1 Plane Wave Solution to Maxwell's Equations -- 1.5.2 Energy Flux for Plane Electromagnetic Waves -- 1.5.3 Boundary Conditions at an Interface -- 1.5.4 The Law of Reflection and Snell's Law of Refraction -- 1.5.5 Reflectivity and Transmissivity at an Interface -- 1.5.6 Connections between Electromagnetic Theory and Radiation Transfer Theory -- 1.6 Introduction to Radiation Transfer -- 1.6.1 Radiation Intensity -- 1.6.2 Blackbody -- 1.6.3 Blackbody Spectral Emissive Power -- 1.6.4 Blackbody Total Emissive Power -- 1.6.5 Equations for Radiation Energy Transfer -- 1.6.6 Energy Conservation Including Radiation -- 1.7 Optical Properties -- 1.7.1 Emittance and Absorptance -- 1.7.2 Hemispherical Spectral and Hemispherical Total Reflectivity -- 1.7.3 Independence of Emitted (Absorbed), Reflected, and Transmitted Radiation -- 1.8 Radiation Energy Balance for One Dimensional Model -- 1.9 Emittance of a Metal into a Dielectric -- 1.10 Summary -- References -- Problems -- Chapter 2 -- Maximum Efficiency and Power Density for TPV Energy Conversion -- 2.1 Symbols -- 2.2 Maximum TPV Efficiency -- 2.3 Maximum TPV Efficiency for Constant Emitter Emittance and PV Cell Reflectance -- 2.4 Ideal TPV System -- 2.5 Approximation of Selective Emitter and Filter TPV Systems -- 2.6 Power Output -- 2.7 Summary -- References -- Problems -- Chapter 3 -- Emitter Performances -- 3.1 Symbols -- 3.2 Gray Body Emitters -- 3.3 Selective Emitters -- 3.3.1 Rare Earth Selective Emitters -- 3.3.2 Other Selective Emitters -- 3.4 Extinction Coefficient and Optical Depth -- 3.5 Extinction Coefficients of Rare Earth Selective Emitters -- 3.6 Coupled Energy Equation and Radiation Transfer Equation for a Solid Material -- 3.7 One Dimensional Radiation Transfer Equations -- 3.7.1 One Dimensional Source Function Equation -- 3.7.2 One Dimensional Radiation Flux -- 3.7.3 No Scattering Medium -- 3.8 Spectral Emittance for Planar Emitter -- 3.8.1 No Scattering Spectral Emittance -- 3.8.2 No Scattering, Linear Temperature Variation Spectral Emittance -- 3.8.3 Importance of Temperature Change Across Planar Emitter -- 3.8.4 Effect of Scattering on Spectral Emittance of a Planar Emitter -- 3.9 Cylindrical Emitter -- 3.10 Emitter Performance -- 3.10.1 Gray Body Emitter Performance -- 3.10.2 Selective Emitter Performance -- 3.10.3 Cylindrical Selective Emitter Performance -- 3.10.4 Planar Selective Emitter Performance -- 3.11 Comparison of Selective Emitters and Gray Body Emitters -- 3.12 Summary -- References -- Problems -- Chapter 4 -- Optical Filters for Thermophotovoltaics -- 4.1 Symbols -- 4.2 Filter Performance Parameters -- 4.3 Interference Filters -- 4.3.1 In. Photovoltaic power generation. http://id.loc.gov/authorities/subjects/sh85101427 Thermoelectricity. http://id.loc.gov/authorities/subjects/sh85134791 Photovoltaic power systems. http://id.loc.gov/authorities/subjects/sh93000144 Thermoelectric apparatus and appliances. http://id.loc.gov/authorities/subjects/sh85134787 Thermoélectricité. Conversion photovoltaïque. Systèmes photovoltaïques. Appareils thermoélectriques. TECHNOLOGY & ENGINEERING Electrical. bisacsh Photovoltaic power generation fast Photovoltaic power systems fast Thermoelectric apparatus and appliances fast Thermoelectricity fast Thermoélectricité. rvm Conversion photovoltaïque. rvm Systèmes photovoltaïques. rvm Appareils thermoélectriques. rvm |
subject_GND | http://id.loc.gov/authorities/subjects/sh85101427 http://id.loc.gov/authorities/subjects/sh85134791 http://id.loc.gov/authorities/subjects/sh93000144 http://id.loc.gov/authorities/subjects/sh85134787 http://id.loc.gov/authorities/genreForms/gf2014026039 |
title | Fundamentals of thermophotovoltaic energy conversion / |
title_alt | Thermophotovoltaic energy conversion |
title_auth | Fundamentals of thermophotovoltaic energy conversion / |
title_exact_search | Fundamentals of thermophotovoltaic energy conversion / |
title_full | Fundamentals of thermophotovoltaic energy conversion / Donald L. Chubb. |
title_fullStr | Fundamentals of thermophotovoltaic energy conversion / Donald L. Chubb. |
title_full_unstemmed | Fundamentals of thermophotovoltaic energy conversion / Donald L. Chubb. |
title_short | Fundamentals of thermophotovoltaic energy conversion / |
title_sort | fundamentals of thermophotovoltaic energy conversion |
topic | Photovoltaic power generation. http://id.loc.gov/authorities/subjects/sh85101427 Thermoelectricity. http://id.loc.gov/authorities/subjects/sh85134791 Photovoltaic power systems. http://id.loc.gov/authorities/subjects/sh93000144 Thermoelectric apparatus and appliances. http://id.loc.gov/authorities/subjects/sh85134787 Thermoélectricité. Conversion photovoltaïque. Systèmes photovoltaïques. Appareils thermoélectriques. TECHNOLOGY & ENGINEERING Electrical. bisacsh Photovoltaic power generation fast Photovoltaic power systems fast Thermoelectric apparatus and appliances fast Thermoelectricity fast Thermoélectricité. rvm Conversion photovoltaïque. rvm Systèmes photovoltaïques. rvm Appareils thermoélectriques. rvm |
topic_facet | Photovoltaic power generation. Thermoelectricity. Photovoltaic power systems. Thermoelectric apparatus and appliances. Thermoélectricité. Conversion photovoltaïque. Systèmes photovoltaïques. Appareils thermoélectriques. TECHNOLOGY & ENGINEERING Electrical. Photovoltaic power generation Photovoltaic power systems Thermoelectric apparatus and appliances Thermoelectricity Thermoélectricité. Conversion photovoltaïque. Systèmes photovoltaïques. Appareils thermoélectriques. dissertations. Academic theses Academic theses. Thèses et écrits académiques. |
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