81
Laqua K, Malone K, Hoffmann M, Krause D, Schlüter M (2016) Methane bubble rise velocities under deep-sea conditions—influence of initial shape deformation. Colloids Surf A
Physicochem Eng Asp 505:106–117. https://doi.org/10.1016/j.colsurfa.2016.01.041
Lindo-Atichati D, Paris CB, Le Hénaff M, Schedler M, Valladares Juárez AG, Müller R (2016)
Simulating the effects of droplet size, high-pressure biodegradation, and variable flow rate
on the subsea evolution of deep plumes from theMacondo blowout. Deep-Sea Research II
129(2016):301–310
MacDonald IR, Leifer I, Sassen R, Stine P, Mitchell R, Guinasso N (2002) Transfer of hydrocarbons from natural seeps to the water column and atmosphere. Geofluids 2:95–107. https://doi.
org/10.1046/j.1468-8123.2002.00023.x
Maini BB, Bishnoi PR (1981) Experimental investigation of hydrate formation behaviour of a
natural gas bubble in a simulated Deep Sea environment. Chem Eng Sci 36:183–189
May EF, Lim VW, Metaxas PJ, Du J, Stanwix PL, Rowland D, Johns ML, Haandrikman G, Crosby
D, Aman ZM (2018) Gas hydrate formation probability distributions: the effect of shear and
comparisons with nucleation theory. Langmuir 34(10):3186–3196. https://doi.org/10.1021/acs.
langmuir.7b03901
Mersmann A (1977) Auslegung und Maßstabsvergrößerung von Blasen- und Tropfensäulen.
Chemie Ingenieur Technik 49:679–691
Paris CB, Le Henaff M, Aman ZM, Subramaniam A, Helgers J, Wang D-P, Kourafalou VH,
Srinivasan A (2012) Evolution of the Macondo well blowout: simulating the effects of the circulation and synthetic dispersants on the subsea oil transport. Environ Sci Technol 46:13293–
13302. https://doi.org/10.1021/es303197h
Peebles FN, Garber HJ (1953) Studies on the motion of gas bubbles in liquids. Chem Eng Prog
49:88–97
Perlin N, Paris CB, Berenshtein I, Vaz AC, Faillettaz R, Aman ZM, Schwing PT, Romero IC,
Schlüter M, Liese A, Noirungsee N, Hackbusch S (2020) Far-field modeling of a deep-sea
blowout: sensitivity studies of initial conditions, bio-degradation, sedimentation and subsurface dispersant injection on surface slicks and oil plume concentrations (Chap. 11). In:
Murawski SA, Ainsworth C, Gilbert S, Hollander D, Paris CB, Schlüter M, Wetzel D (eds)
Deep oil spills: facts, fate, effects. Springer, Cham
Pesch S, Jaeger P, Jaggi A, Malone K, Hoffmann M, Krause D, Oldenburg TB, Schlüter M (2018)
Rise velocity of live-oil droplets in deep-sea oil spills. Environ Eng Sci 35:289–299. https://
doi.org/10.1089/ees.2017.0319
Räbiger N, Schlüter M (2002) Bildung und Bewegung von Tropfen und Blasen. In: VDIWärmeatlas: Berechnungsblätter für den Wärmeübergang, Neunte, überarbeitete und erweiterte Auflage. Springer Berlin Heidelberg, Berlin, Heidelberg, s.l., Lda 1-Lda 15
Rehder G, Brewer PG, Peltzer ET, Friederich G (2002) Enhanced lifetime of methane bubble streams
within the deep ocean. Geophys Res Lett 29:21–1-21-4. https://doi.org/10.1029/2001GL013966
Rehder G, Leifer I, Brewer PG, Friederich G, Peltzer ET (2009) Controls on methane bubble dissolution inside and outside the hydrate stability field from open ocean field experiments and
numerical modeling. Mar Chem 114:19–30. https://doi.org/10.1016/j.marchem.2009.03.004
Richardson JF, Zaki WN (1954) The sedimentation of a suspension of uniform spheres under conditions of viscous flow. Chem Eng Sci 3(2):65–73. https://doi.org/10.1016/0009-2509(54)85015-9
Satter A (2016) Reservoir engineering: the fundamentals, simulation, and management of conventional and unconventional recoveries. Gulf Professional Publishing, Waltham
Seemann R, Malone K, Laqua K, Schmidt J, Meyer A, Krause D, Schlüter M (2014) A new highpressure laboratory setup for the investigation of deep-sea oil spill scenarios under in-situ conditions. In: Proceedings of the 7th international symposium und environmental hydraulics,
pp 340–343
Sloan ED, Koh CA (2007) Clathrate hydrates of natural gases. CRC Press, Boca Raton
Taylor CJ, Miller KT, Koh CA, Sloan ED (2007) Macroscopic investigation of hydrate film growth
at the hydrocarbon/water interface. Chem Eng Sci 62(23):6524–6533
5 Behavior of Rising Droplets and Bubbles: Impact on the Physics of Deep-Sea…
Laqua K, Malone K, Hoffmann M, Krause D, Schlüter M (2016) Methane bubble rise velocities under deep-sea conditions—influence of initial shape deformation. Colloids Surf A
Physicochem Eng Asp 505:106–117. https://doi.org/10.1016/j.colsurfa.2016.01.041
Lindo-Atichati D, Paris CB, Le Hénaff M, Schedler M, Valladares Juárez AG, Müller R (2016)
Simulating the effects of droplet size, high-pressure biodegradation, and variable flow rate
on the subsea evolution of deep plumes from theMacondo blowout. Deep-Sea Research II
129(2016):301–310
MacDonald IR, Leifer I, Sassen R, Stine P, Mitchell R, Guinasso N (2002) Transfer of hydrocarbons from natural seeps to the water column and atmosphere. Geofluids 2:95–107. https://doi.
org/10.1046/j.1468-8123.2002.00023.x
Maini BB, Bishnoi PR (1981) Experimental investigation of hydrate formation behaviour of a
natural gas bubble in a simulated Deep Sea environment. Chem Eng Sci 36:183–189
May EF, Lim VW, Metaxas PJ, Du J, Stanwix PL, Rowland D, Johns ML, Haandrikman G, Crosby
D, Aman ZM (2018) Gas hydrate formation probability distributions: the effect of shear and
comparisons with nucleation theory. Langmuir 34(10):3186–3196. https://doi.org/10.1021/acs.
langmuir.7b03901
Mersmann A (1977) Auslegung und Maßstabsvergrößerung von Blasen- und Tropfensäulen.
Chemie Ingenieur Technik 49:679–691
Paris CB, Le Henaff M, Aman ZM, Subramaniam A, Helgers J, Wang D-P, Kourafalou VH,
Srinivasan A (2012) Evolution of the Macondo well blowout: simulating the effects of the circulation and synthetic dispersants on the subsea oil transport. Environ Sci Technol 46:13293–
13302. https://doi.org/10.1021/es303197h
Peebles FN, Garber HJ (1953) Studies on the motion of gas bubbles in liquids. Chem Eng Prog
49:88–97
Perlin N, Paris CB, Berenshtein I, Vaz AC, Faillettaz R, Aman ZM, Schwing PT, Romero IC,
Schlüter M, Liese A, Noirungsee N, Hackbusch S (2020) Far-field modeling of a deep-sea
blowout: sensitivity studies of initial conditions, bio-degradation, sedimentation and subsurface dispersant injection on surface slicks and oil plume concentrations (Chap. 11). In:
Murawski SA, Ainsworth C, Gilbert S, Hollander D, Paris CB, Schlüter M, Wetzel D (eds)
Deep oil spills: facts, fate, effects. Springer, Cham
Pesch S, Jaeger P, Jaggi A, Malone K, Hoffmann M, Krause D, Oldenburg TB, Schlüter M (2018)
Rise velocity of live-oil droplets in deep-sea oil spills. Environ Eng Sci 35:289–299. https://
doi.org/10.1089/ees.2017.0319
Räbiger N, Schlüter M (2002) Bildung und Bewegung von Tropfen und Blasen. In: VDIWärmeatlas: Berechnungsblätter für den Wärmeübergang, Neunte, überarbeitete und erweiterte Auflage. Springer Berlin Heidelberg, Berlin, Heidelberg, s.l., Lda 1-Lda 15
Rehder G, Brewer PG, Peltzer ET, Friederich G (2002) Enhanced lifetime of methane bubble streams
within the deep ocean. Geophys Res Lett 29:21–1-21-4. https://doi.org/10.1029/2001GL013966
Rehder G, Leifer I, Brewer PG, Friederich G, Peltzer ET (2009) Controls on methane bubble dissolution inside and outside the hydrate stability field from open ocean field experiments and
numerical modeling. Mar Chem 114:19–30. https://doi.org/10.1016/j.marchem.2009.03.004
Richardson JF, Zaki WN (1954) The sedimentation of a suspension of uniform spheres under conditions of viscous flow. Chem Eng Sci 3(2):65–73. https://doi.org/10.1016/0009-2509(54)85015-9
Satter A (2016) Reservoir engineering: the fundamentals, simulation, and management of conventional and unconventional recoveries. Gulf Professional Publishing, Waltham
Seemann R, Malone K, Laqua K, Schmidt J, Meyer A, Krause D, Schlüter M (2014) A new highpressure laboratory setup for the investigation of deep-sea oil spill scenarios under in-situ conditions. In: Proceedings of the 7th international symposium und environmental hydraulics,
pp 340–343
Sloan ED, Koh CA (2007) Clathrate hydrates of natural gases. CRC Press, Boca Raton
Taylor CJ, Miller KT, Koh CA, Sloan ED (2007) Macroscopic investigation of hydrate film growth
at the hydrocarbon/water interface. Chem Eng Sci 62(23):6524–6533
5 Behavior of Rising Droplets and Bubbles: Impact on the Physics of Deep-Sea…
