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Nuclear Process Heat Transfer For Hydrogen Production - Piyush Sabharwall
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Piyush Sabharwall:

Nuclear Process Heat Transfer For Hydrogen Production - nouveau livre

ISBN: 9783639184648

ID: 9b05dca7346ca9d7f622853a1f1b1b2d

Thermosyphon and Phase Change Heat Exchanger There are several options to transferring multi-megawatt thermal power over long distances. One option is simply to produce only electricity, transfer by wire to the hydrogen plant, and then reconvert the electric energy to heat via Joule or induction heating. Electrical transport, however, suffers energy losses of 60-70% due to the thermal to electric conversion inherent in the Brayton cycle. Another option is two-phase heat transfer utilizing a high temperature thermosyphon. Heat transport occurs via evaporation and condensation, and the heat transport fluid is re-circulated by gravitational force. Thermosyphon has the capability to transport heat at high rates over appreciable distances, virtually isothermally and without any requirement for external pumping devices. The research presented provides useful information for thermosyphon design and Spiral Heat Exchanger. This research provides useful insight in making decisions regarding the thermosyphon heat transfer system between the nuclear reactor and chemical plant. Development of very high-temperature reactor technologies is a high priority research for a successful national energy future. Bücher / Fremdsprachige Bücher / Englische Bücher 978-3-639-18464-8, VDM Verlag

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Nuclear Process Heat Transfer For Hydrogen Production - Piyush Sabharwall
Livre non disponible
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Piyush Sabharwall:

Nuclear Process Heat Transfer For Hydrogen Production - nouveau livre

ISBN: 9783639184648

ID: 133711596

There are several options to transferring multi-megawatt thermal power over long distances. One option is simply to produce only electricity, transfer by wire to the hydrogen plant, and then reconvert the electric energy to heat via Joule or induction heating. Electrical transport, however, suffers energy losses of 60-70% due to the thermal to electric conversion inherent in the Brayton cycle. Another option is two-phase heat transfer utilizing a high temperature thermosyphon. Heat transport occurs via evaporation and condensation, and the heat transport fluid is re-circulated by gravitational force. Thermosyphon has the capability to transport heat at high rates over appreciable distances, virtually isothermally and without any requirement for external pumping devices. The research presented provides useful information for thermosyphon design and Spiral Heat Exchanger. This research provides useful insight in making decisions regarding the thermosyphon heat transfer system between the nuclear reactor and chemical plant. Development of very high-temperature reactor technologies is a high priority research for a successful national energy future. Thermosyphon and Phase Change Heat Exchanger Buch (fremdspr.) Bücher>Fremdsprachige Bücher>Englische Bücher, VDM Verlag

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Nuclear Process Heat Transfer For Hydrogen Production - Piyush Sabharwall
Livre non disponible
(*)
Piyush Sabharwall:
Nuclear Process Heat Transfer For Hydrogen Production - nouveau livre

ISBN: 9783639184648

ID: 142551488

There are several options to transferring multi-megawatt thermal power over long distances. One option is simply to produce only electricity, transfer by wire to the hydrogen plant, and then reconvert the electric energy to heat via Joule or induction heating. Electrical transport, however, suffers energy losses of 60-70% due to the thermal to electric conversion inherent in the Brayton cycle. Another option is two-phase heat transfer utilizing a high temperature thermosyphon. Heat transport occurs via evaporation and condensation, and the heat transport fluid is re-circulated by gravitational force. Thermosyphon has the capability to transport heat at high rates over appreciable distances, virtually isothermally and without any requirement for external pumping devices. The research presented provides useful information for thermosyphon design and Spiral Heat Exchanger. This research provides useful insight in making decisions regarding the thermosyphon heat transfer system between the nuclear reactor and chemical plant. Development of very high-temperature reactor technologies is a high priority research for a successful national energy future. Thermosyphon and Phase Change Heat Exchanger Buch (fremdspr.) Bücher>Fremdsprachige Bücher>Englische Bücher, VDM

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Nuclear Process Heat Transfer For Hydrogen Production - Piyush Sabharwall
Livre non disponible
(*)
Piyush Sabharwall:
Nuclear Process Heat Transfer For Hydrogen Production - nouveau livre

ISBN: 9783639184648

ID: ff44e75b3abce1d05bb7301aa78499a8

There are several options to transferring multi-megawatt thermal power over long distances. One option is simply to produce only electricity, transfer by wire to the hydrogen plant, and then reconvert the electric energy to heat via Joule or induction heating. Electrical transport, however, suffers energy losses of 60-70% due to the thermal to electric conversion inherent in the Brayton cycle. Another option is two-phase heat transfer utilizing a high temperature thermosyphon. Heat transport occurs via evaporation and condensation, and the heat transport fluid is re-circulated by gravitational force. Thermosyphon has the capability to transport heat at high rates over appreciable distances, virtually isothermally and without any requirement for external pumping devices. The research presented provides useful information for thermosyphon design and Spiral Heat Exchanger. This research provides useful insight in making decisions regarding the thermosyphon heat transfer system between the nuclear reactor and chemical plant. Development of very high-temperature reactor technologies is a high priority research for a successful national energy future. Buch / Broschur, [PU: VDM Verlag Dr. Müller, Saarbrücken]

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Nuclear Process Heat Transfer For Hydrogen Production - Sabharwall, Piyush
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Sabharwall, Piyush:
Nuclear Process Heat Transfer For Hydrogen Production - Livres de poche

2009, ISBN: 3639184645

Edition reliée, ID: 5492463

Thermosyphon and Phase Change Heat Exchanger - Buch, gebundene Ausgabe, 136 S., Beilagen: Paperback, Erschienen: 2009 VDM Verlag, [PU: VDM Verlag Dr. Müller, Saarbrücken]

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Détails sur le livre
Nuclear Process Heat Transfer For Hydrogen Production
Auteur:

Sabharwall, Piyush

Titre:

Nuclear Process Heat Transfer For Hydrogen Production

ISBN:

3639184645

There are several options to transferring multi-megawatt thermal power over long distances. One option is simply to produce only electricity, transfer by wire to the hydrogen plant, and then reconvert the electric energy to heat via Joule or induction heating. Electrical transport, however, suffers energy losses of 60-70% due to the thermal to electric conversion inherent in the Brayton cycle. Another option is two-phase heat transfer utilizing a high temperature thermosyphon. Heat transport occurs via evaporation and condensation, and the heat transport fluid is re-circulated by gravitational force. Thermosyphon has the capability to transport heat at high rates over appreciable distances, virtually isothermally and without any requirement for external pumping devices. The research presented provides useful information for thermosyphon design and Spiral Heat Exchanger. This research provides useful insight in making decisions regarding the thermosyphon heat transfer system between the nuclear reactor and chemical plant. Development of very high-temperature reactor technologies is a high priority research for a successful national energy future.

Informations détaillées sur le livre - Nuclear Process Heat Transfer For Hydrogen Production


EAN (ISBN-13): 9783639184648
ISBN (ISBN-10): 3639184645
Version reliée
Livre de poche
Date de parution: 2009
Editeur: VDM Verlag
136 Pages
Poids: 0,223 kg
Langue: eng/Englisch

Livre dans la base de données depuis 18.02.2009 15:36:41
Livre trouvé récemment le 10.08.2016 16:37:50
ISBN/EAN: 3639184645

ISBN - Autres types d'écriture:
3-639-18464-5, 978-3-639-18464-8

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