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Mehurčkasto vrenje čistih snovi
ID Zec, Ana (Author), ID Golobič, Iztok (Mentor) More about this mentor... This link opens in a new window

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MD5: 2DEA572FB09C8DD45A2DA7666644F332
PID: 20.500.12556/rul/ae095b15-73be-42c6-b82d-23fdfea9e0fa

Abstract
V nalogi smo obravnavali določitev koeficienta toplotne prestopnosti pri mehurčkastem vrenju čistih snovi. Vrenje je eno najbolj učinkovitih in tehnično obvladljivih mehanizmov prenosa toplote. Izdelali smo primerjavo med sedmimi različnimi metodami določitve koeficienta toplotne prestopnosti pri mehurčkastem vrenju čistih snovi. V delu smo obravnavali mehurčkasto vrenje 57 različnih čistih snovi s 1126 izmerjenimi vrednostmi koeficientov toplotne prestopnosti pri mehurčkastem vrenju. Poleg analizirane reducirane tlačne odvisnosti smo vpeljali tudi reducirano temperaturno odvisnost koeficienta toplotne prestopnosti pri mehurčkastem vrenju. Pri tem reduciran tlak predstavlja kvocient tlaka nasičenja in kritičnega tlaka in reducirana temperatura predstavlja kvocient temperature nasičenja in kritične temperature. Izvedena analiza kaže obetavno možnost uporabe reducirane temperaturne funkcije za določitev koeficienta toplotne prestopnosti pri mehurčkastem vrenju.

Language:Slovenian
Keywords:prenos toplote, mehurčkasto vrenje, koeficient toplotne prestopnosti, metode, čiste snovi
Work type:Bachelor thesis/paper
Organization:FS - Faculty of Mechanical Engineering
Year:2017
PID:20.500.12556/RUL-94860 This link opens in a new window
Publication date in RUL:08.09.2017
Views:1735
Downloads:448
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Secondary language

Language:English
Title:Nucleate pool boiling of pure fluids
Abstract:
This work investigates the determination of heat transfer coefficient in nucleate pool boiling of pure fluids. Boiling is one of the most effective and technically manageable mechanisms of heat transfer. The comparison between seven different methods for determination of heat transfer coefficient in nucleate pool boiling of pure substances was made. This work investigates the nucleate pool boiling of 57 different pure fluids with 1126 measured values of the heat transfer coefficient. In addition to the analysed reduced pressure dependency we introduced the reduced temperature dependency of the heat transfer coefficient in nucleate pool boiling. The reduced pressure represents the quotient of saturation pressure and critical pressure, while reduced temperature represents the quotient of saturation temperature and critical temperature. The performed analysis shows promise in using reduced temperature to determine the heat transfer coefficient in nucleate pool boiling.

Keywords:heat transfer, pool boiling, heat transfer coefficient, methods, pure fluids

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