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Crystal-fiber growth using laser-heated pedestal growth method - Simulation model and the analysis of interface shape, heat transferm and fluid flow
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Crystal-fiber growth using laser-heated pedestal growth method - Simulation model and the analysis of interface shape, heat transferm and fluid flow - Livres de poche

2010, ISBN: 9783838332796

[ED: Taschenbuch / Paperback], [PU: LAP Lambert Academic Publishing], A 2D simulation was employed to study the interface shpaes of the minisature molten zone (MZ) formed in the laser-heated pedestal growth (LHPG) system. Using non-othogonal body-fitting grid system with control-volume finite difference method, the interface shape can be detrmined both efficiency and accurately. During stable growth, the dependence of the MZ length and shape on the heating CO2 laser is examined in detail under boh the maximum and the minimum allowed powers with various growth speeds. After comparing with the MZ shape in terms of the experiment and simulation, heat transfer and fluid flow in LHPG system are analyzed near the deformed interfaces. The global thermal distributions are decribed by temperature and its axial gradient within model length of 10 mm. As compared with the growth of bulk crystal of several centimeters in dimension, natural convection drops six orders in magnitude due to smaller melt volume therefore, conduction rather than convection determines the temperature distribution in the MZ. Moreover, thermocapillary convection rather than mass-transfer convection becomes dominant., [SC: 0.00], Neuware, gewerbliches Angebot, [GW: 165g]

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Crystal-fiber growth using laser-heated pedestal growth method - Peng-Yi Chen
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Peng-Yi Chen:
Crystal-fiber growth using laser-heated pedestal growth method - Livres de poche

2010, ISBN: 3838332792

ID: 9777105555

[EAN: 9783838332796], Nouveau livre, [SC: 7.95], [PU: Lap Lambert Acad. Publ. Mrz 2010], This item is printed on demand - Print on Demand Titel. - A 2D simulation was employed to study the interface shpaes of the minisature molten zone (MZ) formed in the laser-heated pedestal growth (LHPG) system. Using non-othogonal body-fitting grid system with control-volume finite difference method, the interface shape can be detrmined both efficiency and accurately. During stable growth, the dependence of the MZ length and shape on the heating CO2 laser is examined in detail under boh the maximum and the minimum allowed powers with various growth speeds. After comparing with the MZ shape in terms of the experiment and simulation, heat transfer and fluid flow in LHPG system are analyzed near the deformed interfaces. The global thermal distributions are decribed by temperature and its axial gradient within model length of ~10 mm. As compared with the growth of bulk crystal of several centimeters in dimension, natural convection drops six orders in magnitude due to smaller melt volume; therefore, conduction rather than convection determines the temperature distribution in the MZ. Moreover, thermocapillary convection rather than mass-transfer convection becomes dominant. 116 pp. Englisch

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Crystal-fiber growth using laser-heated pedestal growth method - Peng-Yi Chen
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Peng-Yi Chen:
Crystal-fiber growth using laser-heated pedestal growth method - Livres de poche

2010, ISBN: 3838332792

ID: 9777105555

[EAN: 9783838332796], Neubuch, [PU: LAP Lambert Acad. Publ. Mrz 2010], This item is printed on demand - Print on Demand Titel. Neuware - A 2D simulation was employed to study the interface shpaes of the minisature molten zone (MZ) formed in the laser-heated pedestal growth (LHPG) system. Using non-othogonal body-fitting grid system with control-volume finite difference method, the interface shape can be detrmined both efficiency and accurately. During stable growth, the dependence of the MZ length and shape on the heating CO2 laser is examined in detail under boh the maximum and the minimum allowed powers with various growth speeds. After comparing with the MZ shape in terms of the experiment and simulation, heat transfer and fluid flow in LHPG system are analyzed near the deformed interfaces. The global thermal distributions are decribed by temperature and its axial gradient within model length of ~10 mm. As compared with the growth of bulk crystal of several centimeters in dimension, natural convection drops six orders in magnitude due to smaller melt volume; therefore, conduction rather than convection determines the temperature distribution in the MZ. Moreover, thermocapillary convection rather than mass-transfer convection becomes dominant. 116 pp. Englisch

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Crystal-fiber growth using laser-heated pedestal growth method als Buch von Peng-Yi Chen, Chun-Lin Chang, Sheng-Lung Huang - Peng-Yi Chen, Chun-Lin Chang, Sheng-Lung Huang
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Peng-Yi Chen, Chun-Lin Chang, Sheng-Lung Huang:
Crystal-fiber growth using laser-heated pedestal growth method als Buch von Peng-Yi Chen, Chun-Lin Chang, Sheng-Lung Huang - edition reliée, livre de poche

ISBN: 9783838332796

ID: 420186564

Crystal-fiber growth using laser-heated pedestal growth method:Simulation model and the analysis of interface shape, heat transferm and fluid flow Peng-Yi Chen, Chun-Lin Chang, Sheng-Lung Huang Crystal-fiber growth using laser-heated pedestal growth method:Simulation model and the analysis of interface shape, heat transferm and fluid flow Peng-Yi Chen, Chun-Lin Chang, Sheng-Lung Huang Bücher > Wissenschaft > Physik, LAP Lambert Acad. Publ.

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Chen, Peng-Yi;Chang, Chun-Lin;Huang, Sheng-Lung: Crystal-fiber growth using laser-heated pedestal growth method
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Chen, Peng-Yi;Chang, Chun-Lin;Huang, Sheng-Lung: Crystal-fiber growth using laser-heated pedestal growth method - nouveau livre

ISBN: 9783838332796

ID: 720983958

Simulation model and the analysis of interface shape, heat transferm and fluid flow Simulation model and the analysis of interface shape, heat transferm and fluid flow Bücher > Wissenschaft > Physik

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Détails sur le livre
Crystal-fiber growth using laser-heated pedestal growth method
Auteur:

Chen, Peng-Yi; Chang, Chun-Lin; Huang, Sheng-Lung

Titre:

Crystal-fiber growth using laser-heated pedestal growth method

ISBN:

A 2D simulation was employed to study the interface shpaes of the minisature molten zone (MZ) formed in the laser-heated pedestal growth (LHPG) system. Using non-othogonal body-fitting grid system with control-volume finite difference method, the interface shape can be detrmined both efficiency and accurately. During stable growth, the dependence of the MZ length and shape on the heating CO2 laser is examined in detail under boh the maximum and the minimum allowed powers with various growth speeds. After comparing with the MZ shape in terms of the experiment and simulation, heat transfer and fluid flow in LHPG system are analyzed near the deformed interfaces. The global thermal distributions are decribed by temperature and its axial gradient within model length of ~10 mm. As compared with the growth of bulk crystal of several centimeters in dimension, natural convection drops six orders in magnitude due to smaller melt volume; therefore, conduction rather than convection determines the temperature distribution in the MZ. Moreover, thermocapillary convection rather than mass-transfer convection becomes dominant.

Informations détaillées sur le livre - Crystal-fiber growth using laser-heated pedestal growth method


EAN (ISBN-13): 9783838332796
ISBN (ISBN-10): 3838332792
Version reliée
Livre de poche
Date de parution: 2010
Editeur: LAP Lambert Acad. Publ.
116 Pages
Poids: 0,189 kg
Langue: eng/Englisch

Livre dans la base de données depuis 12.02.2009 00:00:38
Livre trouvé récemment le 30.05.2017 00:04:17
ISBN/EAN: 3838332792

ISBN - Autres types d'écriture:
3-8383-3279-2, 978-3-8383-3279-6


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