63
deepwaterhorizon/upload/Deepwater_Horizon_Plume_Team_Final_Report_7-21-2010_
comp-corrected2.pdf
Li Z, Bird A, Payne JR, Vinhateiro N, Kim Y, Davis C, Loomis N (2015) Technical reports for
Deepwater Horizon water column injury assessment: oil particle data from the Deepwater
Horizon oil spill. https://www.fws.gov/doiddata/dwh-ar-documents/946/DWH-AR0024715.pdf.
Accessed 28 Sept 2018
Li Z, Spaulding M, French McCay D, Crowley D, Payne JR (2017) Development of a unified oil
droplet size distribution model with application to surface breaking waves and subsea blowout
releases considering dispersant effects. Mar Pollut Bull 114:247–257. https://doi.org/10.1016/j.
marpolbul.2016.09.008
Maaß S, Wollny S, Voigt A, Kraume M (2011) Experimental comparison of measurement techniques for drop size distributions in liquid/liquid dispersions. Exp Fluids 50:259–269. https://
doi.org/10.1007/s00348-010-0918-9
Malone K, Pesch S, Schlüter M, Krause D (2018) Oil droplet size distributions in deep-sea blowouts: influence of pressure and dissolved gases. Environ Sci Technol 52:6326–6333. https://doi.
org/10.1021/acs.est.8b00587
Masutani S, Adams EE (2001) Experimental study of multiphase plumes with application to deep
ocean oil spills: final report to U.S. Dept. of the Interior
Ohnesorge WV (1936) Die Bildung von Tropfen an Düsen und die Auflösung flüssiger Strahlen. Z
Angew Math Mech 16:355–358. https://doi.org/10.1002/zamm.19360160611
Oldenburg TBP, Jaeger P, Gros J, Socolofsky SA, Pesch S, Radović J, Jaggi A (2020) Physical
and chemical properties of oil and gas under reservoir and deep-sea conditions (Chap. 3). In:
Murawski SA, Ainsworth C, Gilbert S, Hollander D, Paris CB, Schlüter M, Wetzel D (eds)
Deep oil spills: facts, fate, effects. Springer, Cham
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, Schlüter M, Aman ZM, Malone K, Krause D, Paris CB (2020) Behavior of rising droplets
and bubbles – impact on the physics of deep-sea blowouts and oil fate (Chap. 5). In: Murawski
SA, Ainsworth C, Gilbert S, Hollander D, Paris CB, Schlüter M, Wetzel D (eds) Deep oil spills:
facts, fate, effects. Springer, Cham
Reddy CM, Arey JS, Seewald JS, Sylva SP, Lemkau KL, Nelson RK, Carmichael CA, McIntyre
CP, Fenwick J, Ventura GT, van Mooy BAS, Camilli R (2012) Composition and fate of gas and
oil released to the water column during the Deepwater Horizon oil spill. Proc Natl Acad Sci
109:20229–20,234. https://doi.org/10.1073/pnas.1101242108
Satter A, Iqbal GM (2016) Reservoir engineering: the fundamentals, simulation, and management of conventional and unconventional recoveries. Elsevier/Gulf Professional Publishing,
Amsterdam
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 seventh International Symposium on Environmental Hydraulics,
pp 340–343
Socolofsky SA, Adams EE, Boufadel MC, Aman ZM, Johansen Ø, Konkel WJ, Lindo D, Madsen
MN, North EW, Paris CB, Rasmussen D, Reed M, Rønningen P, Sim LH, Uhrenholdt T,
Anderson KG, Cooper C, Nedwed TJ (2015) Intercomparison of oil spill prediction models
for accidental blowout scenarios with and without subsea chemical dispersant injection. Mar
Pollut Bull 96:110–126. https://doi.org/10.1016/j.marpolbul.2015.05.039
Tang L (2004) Cylindrical liquid-liquid jet instability. Ph. D. Thesis
Vaz AC, Paris CB, Dissanayake AL, Socolofsky SA, Gros J, Boufadel MC (2020) Dynamic coupling
of near-field and far-field models (Chap. 9). In: Murawski SA, Ainsworth C, Gilbert S, Hollander
D, Paris CB, Schlüter M, Wetzel D (eds) Deep oil spills: facts, fate, effects. Springer, Cham
4 Jet Formation at the Spill Site and Resulting Droplet Size Distributions
deepwaterhorizon/upload/Deepwater_Horizon_Plume_Team_Final_Report_7-21-2010_
comp-corrected2.pdf
Li Z, Bird A, Payne JR, Vinhateiro N, Kim Y, Davis C, Loomis N (2015) Technical reports for
Deepwater Horizon water column injury assessment: oil particle data from the Deepwater
Horizon oil spill. https://www.fws.gov/doiddata/dwh-ar-documents/946/DWH-AR0024715.pdf.
Accessed 28 Sept 2018
Li Z, Spaulding M, French McCay D, Crowley D, Payne JR (2017) Development of a unified oil
droplet size distribution model with application to surface breaking waves and subsea blowout
releases considering dispersant effects. Mar Pollut Bull 114:247–257. https://doi.org/10.1016/j.
marpolbul.2016.09.008
Maaß S, Wollny S, Voigt A, Kraume M (2011) Experimental comparison of measurement techniques for drop size distributions in liquid/liquid dispersions. Exp Fluids 50:259–269. https://
doi.org/10.1007/s00348-010-0918-9
Malone K, Pesch S, Schlüter M, Krause D (2018) Oil droplet size distributions in deep-sea blowouts: influence of pressure and dissolved gases. Environ Sci Technol 52:6326–6333. https://doi.
org/10.1021/acs.est.8b00587
Masutani S, Adams EE (2001) Experimental study of multiphase plumes with application to deep
ocean oil spills: final report to U.S. Dept. of the Interior
Ohnesorge WV (1936) Die Bildung von Tropfen an Düsen und die Auflösung flüssiger Strahlen. Z
Angew Math Mech 16:355–358. https://doi.org/10.1002/zamm.19360160611
Oldenburg TBP, Jaeger P, Gros J, Socolofsky SA, Pesch S, Radović J, Jaggi A (2020) Physical
and chemical properties of oil and gas under reservoir and deep-sea conditions (Chap. 3). In:
Murawski SA, Ainsworth C, Gilbert S, Hollander D, Paris CB, Schlüter M, Wetzel D (eds)
Deep oil spills: facts, fate, effects. Springer, Cham
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, Schlüter M, Aman ZM, Malone K, Krause D, Paris CB (2020) Behavior of rising droplets
and bubbles – impact on the physics of deep-sea blowouts and oil fate (Chap. 5). In: Murawski
SA, Ainsworth C, Gilbert S, Hollander D, Paris CB, Schlüter M, Wetzel D (eds) Deep oil spills:
facts, fate, effects. Springer, Cham
Reddy CM, Arey JS, Seewald JS, Sylva SP, Lemkau KL, Nelson RK, Carmichael CA, McIntyre
CP, Fenwick J, Ventura GT, van Mooy BAS, Camilli R (2012) Composition and fate of gas and
oil released to the water column during the Deepwater Horizon oil spill. Proc Natl Acad Sci
109:20229–20,234. https://doi.org/10.1073/pnas.1101242108
Satter A, Iqbal GM (2016) Reservoir engineering: the fundamentals, simulation, and management of conventional and unconventional recoveries. Elsevier/Gulf Professional Publishing,
Amsterdam
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 seventh International Symposium on Environmental Hydraulics,
pp 340–343
Socolofsky SA, Adams EE, Boufadel MC, Aman ZM, Johansen Ø, Konkel WJ, Lindo D, Madsen
MN, North EW, Paris CB, Rasmussen D, Reed M, Rønningen P, Sim LH, Uhrenholdt T,
Anderson KG, Cooper C, Nedwed TJ (2015) Intercomparison of oil spill prediction models
for accidental blowout scenarios with and without subsea chemical dispersant injection. Mar
Pollut Bull 96:110–126. https://doi.org/10.1016/j.marpolbul.2015.05.039
Tang L (2004) Cylindrical liquid-liquid jet instability. Ph. D. Thesis
Vaz AC, Paris CB, Dissanayake AL, Socolofsky SA, Gros J, Boufadel MC (2020) Dynamic coupling
of near-field and far-field models (Chap. 9). In: Murawski SA, Ainsworth C, Gilbert S, Hollander
D, Paris CB, Schlüter M, Wetzel D (eds) Deep oil spills: facts, fate, effects. Springer, Cham
4 Jet Formation at the Spill Site and Resulting Droplet Size Distributions
