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2020 | OriginalPaper | Buchkapitel

3. Flow Patterns, Flow Pattern Maps, and Flow Pattern Transition Models

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Abstract

This chapter provides some of the flow visualization results of the experimental setup discussed in Chapter 2, a succinct review of the flow patterns, flow pattern maps, and flow pattern transition models.

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Literatur
Zurück zum Zitat Barnea D (1986) Transition from annular and from dispersed bubble flow – unified models for the whole range of pipe inclinations. Int J Multiphase Flow 12:733–744CrossRef Barnea D (1986) Transition from annular and from dispersed bubble flow – unified models for the whole range of pipe inclinations. Int J Multiphase Flow 12:733–744CrossRef
Zurück zum Zitat Barnea D (1987) A unified model for predicting flow pattern transitions for the whole range of pipe inclinations. Int J Multiphase Flow 13:1–12CrossRef Barnea D (1987) A unified model for predicting flow pattern transitions for the whole range of pipe inclinations. Int J Multiphase Flow 13:1–12CrossRef
Zurück zum Zitat Barnea D, Shoham O, Taitel Y (1982) Flow pattern transition for downward inclined two-phase flow: horizontal to vertical. Chem Eng Sci 37:735–740CrossRef Barnea D, Shoham O, Taitel Y (1982) Flow pattern transition for downward inclined two-phase flow: horizontal to vertical. Chem Eng Sci 37:735–740CrossRef
Zurück zum Zitat Beggs HD, Brill JP (1973) A study of two-phase flow in inclined pipes. J Pet Technol 25(5):607–617CrossRef Beggs HD, Brill JP (1973) A study of two-phase flow in inclined pipes. J Pet Technol 25(5):607–617CrossRef
Zurück zum Zitat Bhagwat SM, Ghajar AJ (2015a) An empirical model to predict the transition between stratified and non-stratified gas-liquid two-phase flow in horizontal and downward inclined pipes. Heat Transfer Eng. 36(18):1489–1498CrossRef Bhagwat SM, Ghajar AJ (2015a) An empirical model to predict the transition between stratified and non-stratified gas-liquid two-phase flow in horizontal and downward inclined pipes. Heat Transfer Eng. 36(18):1489–1498CrossRef
Zurück zum Zitat Cheng SC, Wong YL, Groeneveld DC (1988) CHF prediction for horizontal flow. In: International symposium on phase change heat transfer, Chonqing, pp 211–215 Cheng SC, Wong YL, Groeneveld DC (1988) CHF prediction for horizontal flow. In: International symposium on phase change heat transfer, Chonqing, pp 211–215
Zurück zum Zitat Crawford TJ, Weinberger CB, Weisman J (1985) Two-phase flow patterns and void fractions in downward flow part I: steady state flow patterns. Int J Multiphase Flow 11:761–782CrossRef Crawford TJ, Weinberger CB, Weisman J (1985) Two-phase flow patterns and void fractions in downward flow part I: steady state flow patterns. Int J Multiphase Flow 11:761–782CrossRef
Zurück zum Zitat Ghajar AJ, Bhagwat SM (2014a) Non-boiling gas-liquid two-phase flow phenomenon in near horizontal, upward and downward inclined pipe orientations. Int J Mech Aerosp Ind Mechatron Eng 8:1039–1053 Ghajar AJ, Bhagwat SM (2014a) Non-boiling gas-liquid two-phase flow phenomenon in near horizontal, upward and downward inclined pipe orientations. Int J Mech Aerosp Ind Mechatron Eng 8:1039–1053
Zurück zum Zitat Ghajar AJ, Bhagwat SM (2017) Gas-liquid flow in ducts. In: Michaelides EE, Crowe CT, Schwarzkopf JD (eds) Handbook of multiphase flow, 2nd edn. CRC Press/Taylor & Francis, Boca Rotan, pp 287–356, Chapter 3 Ghajar AJ, Bhagwat SM (2017) Gas-liquid flow in ducts. In: Michaelides EE, Crowe CT, Schwarzkopf JD (eds) Handbook of multiphase flow, 2nd edn. CRC Press/Taylor & Francis, Boca Rotan, pp 287–356, Chapter 3
Zurück zum Zitat Haramathy TZ (1960) Velocity of large drops and bubbles in media of infinite or restricted extent. AICHE J 6:281–288CrossRef Haramathy TZ (1960) Velocity of large drops and bubbles in media of infinite or restricted extent. AICHE J 6:281–288CrossRef
Zurück zum Zitat Hewitt GF, Roberts DN (1969) Studies of two-phase flow patterns by simultaneous x-ray and flash photography, Technical Report AERE-M 2159, Atomic Energy Research Establishment Hewitt GF, Roberts DN (1969) Studies of two-phase flow patterns by simultaneous x-ray and flash photography, Technical Report AERE-M 2159, Atomic Energy Research Establishment
Zurück zum Zitat Lockhart RW, Martinelli RC (1949) Proposed correlation of data for isothermal two-phase, two component flow in pipes. Chem Eng Prog 45:39–48 Lockhart RW, Martinelli RC (1949) Proposed correlation of data for isothermal two-phase, two component flow in pipes. Chem Eng Prog 45:39–48
Zurück zum Zitat Mandhane JM, Gregory GA, Aziz K (1974) A flow pattern map for gas-liquid flow in horizontal pipes. Int J Multiphase Flow 1:537–553CrossRef Mandhane JM, Gregory GA, Aziz K (1974) A flow pattern map for gas-liquid flow in horizontal pipes. Int J Multiphase Flow 1:537–553CrossRef
Zurück zum Zitat Mishima K, Ishii M (1980) Theoretical prediction of onset of horizontal slug flow. J Fluids Eng 102:441–445CrossRef Mishima K, Ishii M (1980) Theoretical prediction of onset of horizontal slug flow. J Fluids Eng 102:441–445CrossRef
Zurück zum Zitat Mishima K, Ishii M (1984) Flow regime transition criteria for upward two-phase flow in vertical tubes. Int J Heat Mass Transf 27:723–737CrossRef Mishima K, Ishii M (1984) Flow regime transition criteria for upward two-phase flow in vertical tubes. Int J Heat Mass Transf 27:723–737CrossRef
Zurück zum Zitat Mukherjee H (1979) An experimental study of inclined two-phase flow, Ph.D. Thesis, University of Tulsa Mukherjee H (1979) An experimental study of inclined two-phase flow, Ph.D. Thesis, University of Tulsa
Zurück zum Zitat Nguyen VT (1975) Two-phase gas-liquid cocurrent flow: an investigation of holdup, pressure drop and flow patterns in a pipe at various inclinations, Ph.D. Thesis, University of Auckland, New Zealand Nguyen VT (1975) Two-phase gas-liquid cocurrent flow: an investigation of holdup, pressure drop and flow patterns in a pipe at various inclinations, Ph.D. Thesis, University of Auckland, New Zealand
Zurück zum Zitat Oshinowo O (1971) Two-phase flow in a vertical tube coil, Ph.D. Thesis, University of Toronto, Canada Oshinowo O (1971) Two-phase flow in a vertical tube coil, Ph.D. Thesis, University of Toronto, Canada
Zurück zum Zitat Taitel Y, Dukler AE (1976) A model for predicting flow regime transitions in horizontal and near horizontal gas-liquid flow. AICHE J 22:47–55CrossRef Taitel Y, Dukler AE (1976) A model for predicting flow regime transitions in horizontal and near horizontal gas-liquid flow. AICHE J 22:47–55CrossRef
Zurück zum Zitat Taitel Y, Barnea D, Dukler AE (1980) Modeling flow pattern transitions for steady upward gas-liquid flow in vertical tubes. AICHE J 26:345–354CrossRef Taitel Y, Barnea D, Dukler AE (1980) Modeling flow pattern transitions for steady upward gas-liquid flow in vertical tubes. AICHE J 26:345–354CrossRef
Zurück zum Zitat Terekhov VI, Pakhomov MA (2008) The effect of bubbles on the structure of flow and the friction in downward turbulent gas-liquid flow. High Temp 46:854–860CrossRef Terekhov VI, Pakhomov MA (2008) The effect of bubbles on the structure of flow and the friction in downward turbulent gas-liquid flow. High Temp 46:854–860CrossRef
Zurück zum Zitat Usui K, Sato K (1989) Vertically downward two-phase flow: (I) void distribution and average void fraction. J Nucl Sci Technol 26(7):670–680CrossRef Usui K, Sato K (1989) Vertically downward two-phase flow: (I) void distribution and average void fraction. J Nucl Sci Technol 26(7):670–680CrossRef
Zurück zum Zitat Weisman J, Kang SY (1981) Flow pattern transitions in vertical and upward inclined lines. Int J Multiphase Flow 7:271–291CrossRef Weisman J, Kang SY (1981) Flow pattern transitions in vertical and upward inclined lines. Int J Multiphase Flow 7:271–291CrossRef
Zurück zum Zitat Yijun J, Rezkallah K (1993) A study on void fraction in vertical co-current upward and downward two-phase gas-liquid flow – I: experimental results. Chem Eng Commun 126:221–243CrossRef Yijun J, Rezkallah K (1993) A study on void fraction in vertical co-current upward and downward two-phase gas-liquid flow – I: experimental results. Chem Eng Commun 126:221–243CrossRef
Metadaten
Titel
Flow Patterns, Flow Pattern Maps, and Flow Pattern Transition Models
verfasst von
Afshin J. Ghajar
Copyright-Jahr
2020
DOI
https://doi.org/10.1007/978-3-030-41626-3_3

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