DocumentCode :
629230
Title :
Numerical simulation of two phase flow in high pressure and low pressure evaporator pipes in recovery boiler
Author :
Hasanpoor, B. ; Javaherdeh, K. ; Kouhikamali, R. ; Salehi, Marzieh ; Mehrafzoon, M.
Author_Institution :
Fac. of Eng., Univ. of Guilan, Rasht, Iran
fYear :
2011
fDate :
18-19 Oct. 2011
Firstpage :
1
Lastpage :
2
Abstract :
In this study, a numerical simulation of evaporation in two phase flow of water has been performed considering energy and mass transfer during phase change based on the VOF (volume offluid) model in CFD software Fluent 6.3, with a UDF (user defined function) as an evaporation, and unsteady solution is considered in several times. The operating conditions are specified at high pressure (HP), 99.7 bar and low pressure (LP), 10.5 bar in saturation conditions of water flow in temperature, 583 K and 450 K, respectively. Also, the physical properties of water are determined by inlet temperature and pressure system in saturation conditions. Two phase properties such as void fraction, distribution of wall temperature, heat transfer coefficient and heat flux are also investigated in this study. The simulations are carried out on upward water flow in a two dimensional vertical tube with constant temperature of wall heating surface condition. The pressure-implicit with splitting of operators (PISO) pressure-velocity coupling scheme is used to improve the efficiency of calculation. The flow is considered as turbulent based on the RNG k-ε model.
Keywords :
boilers; computational fluid dynamics; evaporation; flow simulation; heat transfer; mass transfer; numerical analysis; pipe flow; pipes; turbulence; two-phase flow; CFD software Fluent 6.3; HP; LP; PISO; RNG k-ε model; UDF; VOF model; energy transfer; evaporation; heat flux; heat transfer coefficient; heating surface condition; high pressure; high pressure evaporator pipe; inlet temperature; low pressure; low pressure evaporator pipe; mass transfer; numerical simulation; pressure system; pressure-implicit with splitting of operator; pressure-velocity coupling scheme; recovery boiler; turbulent; two phase flow; user defined function; volume of fluid model; Electron tubes; Heat transfer; Heating; Liquids; Mathematical model; Numerical models; Temperature; VOF model; high pressure; low pressure; turbulent; two phase flow;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Thermal Power Plants (CTPP), 2011 Proceedings of the 3rd Conference on
Conference_Location :
Tehran
Print_ISBN :
978-1-4799-0591-1
Type :
conf
Filename :
6576986
Link To Document :
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