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2,602
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Kühltürme
Der Mechanismus des Wärme-, Stoff- und Impulsaustausches
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Author(s):
Paul Berliner
Publication date
(Print):
1975
Publisher:
Springer Berlin Heidelberg
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HTWK Leipzig / OA-HVerlag
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Heat Transfer, Mass Transfer, and Fluid Friction
Thomas Sherwood
(1950)
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Distillation, Vaporization, and Gas Absorption in a Wetted Wall Column
M. Jackson
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N. Ceaglske
(1950)
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Evaporation from a Plane, Free-Liquid Surface into a Turbulent Air Stream
F. Pasquill
(1943)
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Book Chapter
Publication date (Print):
1975
Pages
: 70-86
DOI:
10.1007/978-3-642-65855-6_8
SO-VID:
5723ea64-9717-490f-be31-9ea42521bfa1
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Book chapters
pp. 1
Thermodynamische Begriffe in der Kühlturmtechnik
pp. 10
Zustandsgrößen und Zustandsbereiche der feuchten Luft
pp. 20
Die Verdunstung als Misehungsprozeß
pp. 34
Die Verdunstung als Ausgleichsprozeß
pp. 43
Die Berechnung der Leistung
pp. 56
Optimale Auslegung
pp. 63
Anwendung der Analogien zwischen den Ausgleichsprozessen
pp. 70
Der Mechanismus des Wärme-, Stoff- und Impulsaustausches
pp. 86
Leistungsmessungen für verschiedene Konfigurationen
pp. 101
Trockene und nasse Wärmeabführung
pp. 114
Strömungsführung der Luft im Kühlturm
pp. 123
Ventilatoren für Kühltürme
pp. 139
Natürlicher Zug
pp. 154
Umgebungseinflüsse auf die Leistung
pp. 162
Nebelbildung und Tropfenauswurf
pp. 176
Kühlwasser-Verteilung
pp. 183
Kühltürme in Kraftwerken
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