MICHAEL Y. ULEYSKY
 
PH.D.
 
List of papers (including titles) in refereed journals:
 
1) M.Yu.Uleysky and S.V. Prants. A nonlinear oscillator with two degrees of freedom in a laser field. Journal of Russian Laser Research. V.22 N1 (2001) 69-81.
 
2) D.V. Makarov, S.V. Prants and M.Yu. Uleysky. Structure of spatial nonlinear resonance of rays in an inhomogeneous underwater sound channel. DAN Earth Science. V. 2002 [Dokl. Akad. Nauk. V.382 N3 2002 394-396].
 
3) M.V. Budyansky, S.V. Prants, M.Yu. Uleysky. Fractals and dynamical traps in a simplest model of chaotic advection with a topographic vortex. Doklady Earth Sciences V.387 N8 2002 929-932 [Dokl. Akad. Nauk. V.386 N5 2002 686-689].
 
4) D.V. Makarov, M.Yu. Uleysky, S.V. Prants. On possibility of determining internal waves characteristics with the help of distributions of ray's travel times in an underwater sound channel under chaos conditions. Pis'ma JTP. V.29. N10 (2003) 70-76.
 
5) S.V. Prants, M.Yu. Uleysky. Atomic fractals in cavity quantum electrodynamics. Physics Letters A. V. 309 N5-6 (2003) 357-362.
 
6) M. Uleysky, L. Kon'kov, S. Prants. Quantum chaos and fractals with atoms in cavities. Communications in Nonlinear Science and Numerical Simulation. V.8 N3/4 (2003) 329-347.
 
7) D.V. Makarov, M.Yu. Uleysky, S.V. Prants. Ray chaos and ray clustering in an ocean waveguide. Chaos. V.14. N1 (2004) 79-95.
 
8) M. Budyansky, M. Uleysky, S. Prants. Hamiltonian fractals and chaotic scattering by a topographical vortex and an alternating current. Physica D 195 N3-4 (2004) 369-378.
 
9) M.V. Budyansky, M.Yu. Uleysky, S.V. Prants. Chaotic scattering, transport, and fractals  in a simple hydrodynamic flow. JETP. V.99 N5 (2004) 1018-1027. [ZETP. V.126 N5(11) (2004) 1167-1179].
 
10) S.V. Prants and M.Yu. Uleysky. Quantum stability in cavity QED.JETP Letters. V.82 N12 (2005) [Pis'ma ZETP. V.82. Is.12 846-851(2005)].
 
11) S.V. Prants, M.Yu. Uleysky, and V.Yu. Argonov. Entanglement, fidelity, and quantum-classical correlations with an atom moving in a quantized cavity field. Physical Review A. V.73 (2006) art. 023807.
 
12) M.Yu. Uleysky, M.V. Budyansky, and S.V. Prants. Chaotic advection in a meandering jet flow. Nonlinear Dynamics, V.2 N2 (2006) 165-180.
 
13) D.V. Makarov, M.Yu. Uleysky, M.V. Budyansky, and S.V. Prants.Clustering in randomly-driven Hamiltonian systems. Physical Review E.V.73 (2006) art.no 066210.
 
14) S.V. Prants, M.V. Budyansky, M.Yu. Uleysky, G.M. Zaslavsky. Chaotic mixing and transport in a meandering jet flow. Chaos. V.16 (2006) art.no 033117.
 
15) Makarov D.V., Uleysky M.Yu. Specific Poincare' map for a randomly-perturbed nonlinear oscillator. Journal of Physics A: Mathematical and General. 2006. V. 39. P. 489-497.
 
16) Makarov D.V., Uleysky M.Yu. Generation of the ballistic particle transport in a periodic hamiltonian system subjected to small time-dependent perturbation. JETP Letters,. 2006. V. 83, No. 11 P. 522-525.
 
17) M.V. Budyansky, M.Yu. Uleysky, S.V. Prants. Lagrangian coherent structures, transport and chaotic mixing in simple kinematic ocean models. Communications in Nonlinear Science and Numerical Simulation.V.12, Is. 1 (2007) 31-44.
 
List of papers (including titles) in non-refereed journals:
 
1) D.V. Makarov, M.Yu. Uleysky, S.V. Prants. Ray chaos and ray clustering in an ocean waveguide under internal-wave induced single-mode, random-like, and mixed perturbations. e-print archive, nlin. CD/0306056. (2003).
 
2) M. Budyansky, M. Uleysky, S. Prants. Hamiltonian fractals and chaotic scattering by a topographical vortex and an alternating current. (e-print archive, nlin. CD/0208032)
 
3) S.V. Prants, M.Yu. Uleysky. On the quantum (in)stability in cavity QED. (e-print archive, quant-ph/0504180, 2005).
 
4) D.V. Makarov, M.Yu. Uleysky, M.V Budyansky, and S.V. Prants.Noise-induced clustering in Hamiltonian systems. (e-print archive, ch-dyn/0507010, 2005).
 
5) Makarov D.V., Uleysky M.Yu., Martynov M.Yu. Sensitivity of ray dynamics in an underwater sound channel to vertical scale of   longitudinal sound-speed variations. e-print arXiv:physics/0508226. 2005.
 
List of papers (including titles) in Proceedings:
 
1) M.Yu. Uleysky, D.V.Makarov, S. V. Prants. Optical bistability and chaos with quantum-well excitons in a semiconductor microcavity. In: Proc. conf. "Atoms, molecules and quantum dots in laser fields: fundamental processes" 2000, Pisa, p.124-125.
 
2) M.Yu. Uleysky and S.V. Prants. Chaotic absorption of coherent laser light by an anharmonic molecule. In: "Fundamental Aspects of Laser-Matter Interaction and Physics of Nanostructures" (eds. A.V. Andreev et al), Proc. SPIE V.4748, Washington (2002). P.89-96.
 
3) M.Yu. Uleysky and S.V. Prants. A driven nonlinear oscillator with a few degrees of freedom: chaos and controllability in the light absorption. "Progress in Nonlinear Science", vol.2. "Frontiers of Nonlinear Physics", ed. by A. G. Litvak, Nizhny Novgorod, pp.608-613 (2002).
 
4) M. Budyansky, M. Uleysky, S. Prants. Chaotic scattering in a simple Hamiltonian system modeling transport in a topographic eddy. In: Proc. ENOC-2005, Fifth EUROMECH Nonlinear Dynamics Conference, ed. by D.H. van Campen, M.D. Lazurko, W.P.J.M. van den Oever, Eindhoven, Eindhoven Technical University, p. 1489-1495 (2005).
 
5) M.Yu. Uleysky and S. V. Prants. Quantum control and quantum chaos in cavity QED. In: Proc. IEEE: Physics and Control 2005, ed. by A.L. Fradkov and A.N. Churilov, Saint Peterburg, p.642-646 (2005).
 
6) M.Yu. Uleysky and S. V. Prants. Quantum Chaos and Quantum Fractals with Atoms and Photons in a Microcavity. In: Proc. ASME, DETC2005, V.1A (ed. by A. Luo), California, pp.195-200 (2005)
 
 

2006

  1. S.V. Prants, M.Yu. Uleysky, and V.Yu. Argonov. Entanglement, fidelity, and quantum-classical correlations with an atom moving in a quantized cavity field. Physical Review A. V.73 (2006) art. 023807.
  2. М.Ю.Улейский, М.В. Будянский, С.В. Пранц. Хаотическая адвекция в меандрирующем  струйном потоке. Нелинейная динамика. Т.2 N 2 с.165-180 (2006).
  3. D.V. Makarov, M.Yu. Uleysky, M.V. Budyansky, and S.V. Prants. Clustering in randomly-driven Hamiltonian systems. Physical Review E. V.73 (2006) art.no 066210.
  4. S.V. Prants, M.V. Budyansky, M.Yu. Uleysky, G.M. Zaslavsky. Chaotic mixing and transport in a meandering jet flow. Chaos. V.16 (2006) art.no 033117.
  5. Makarov D.V., Uleysky M.Yu. Specific Poincare' map for a randomly-perturbed nonlinear oscillator. Journal of Physics A: Mathematical and General. 2006. V. 39. P. 489-497.
  6. Макаров Д.В., Улейский М.Ю. Генерация баллистического транспорта частиц при воздействии слабого переменного возмущения на периодическую гамильтонову систему. Письма в ЖЭТФ. 2006. Т. 83. С. 614-617.
  7. M.V. Budyansky, M.Yu. Uleysky, S.V. Prants. Lagrangian coherent structures, transport and chaotic mixing in simple kinematic ocean models. Communications in Nonlinear Science and Numerical Simulation. V.12, Is. 1 (2007) 31-44.

2007

  1. Makarov D.V., Uleysky M.Yu. Giant acceleration in slow-fast space-periodic Hamiltonian systems. Physical Review E. 2007. V. 75. 065201(R).
  2. Kon'kov L.E., Makarov D.V., Sosedko E.V., Uleysky M.Yu. Recovery of ordered periodic orbits with increasing wavelength for sound propagation in a range-dependent waveguide// Physical Review E. 2007. V. 76. P. 1-10.
  3. Uleysky M.Yu., Budyansky M.V., Prants S.V. Effect of dynamical traps on chaotic transport in a meandering jet flow// Chaos. 2007. V. 17. art.no 043105.
  4. Budyansky M.V., Uleysky M.Yu., Prants S.V. Lagrangian coherent structures, transport and chaotic mixing in simple kinematic ocean models // Communications in Nonlinear Science and Numerical Simulation. 2007. V.12. P. 31-44.
  5. Макаров Д.В. Улейский М.Ю. Высвечивание лучей из горизонтально-неоднородного подводного звукового канала// Акуст. журн. 2007. Т. 53. С. 565-573.

2008

  1. Uleysky M.Yu., Budyansky M.V., Prants S.V. Genesis and bifurcations of unstable periodic orbits in a jet flow// Journal of Physics A. 2008. V.41. Art 215102.
  2. Макаров Д.В., Коньков Л.Е., Улейский М.Ю. Соответствие между волновой и лучевой картинами и подавление хаоса при дальнем распространении звука в океане// Акустический журнал. 2008. Т. 54. № 3. С. 565-573.
  3. Makarov D.V., Uleysky M.Yu. Local chaos induced by spatial oscillations of a perturbation// Commun. Nonlin. Sci. Numer. Simul. 2008. V. 13. № 2. P. 400-406.

2009

  1. M.V. Budyansky, M.Yu. Uleysky, S.V. Prants. Detection of barriers to cross-jet Lagrangian transport and its destruction in a meandering flow//Physical Review E. 2009. 79(5): 056215

2010

  1. Uleysky M.Yu., Budyansky M.V., Prants S.V. Mechanism of destruction of transport barriers in geophysical jets with Rossby waves// Physical Review E. 2010. 81(2): 017202
  2. R. Chacon, M.Yu. Uleysky, and D.V. Makarov. Universal chaotic layer width in space-periodic Hamiltonian systems under adiabatic ac time-periodic forces //Europhysics Letters. 2010. V 90, N 4
  3. D.V. Makarov , E.V. Sosedko and M.Yu. Uleysky. Frequency-modulated ratchet with autoresonance// The European Physical Journal B. 2010. V 73, N 4

 

2011
1. S.V. Prants, M.V. Budyansky, V.I. Ponomarev, M.Yu. Uleysky Lagrangian study of transport and mixing in a mesoscale eddy street // Ocean Modelling V.38 (2011) p. 114–125 DOI:10.1016/j.ocemod.2011.02.008
2. M.V. Budyansky, V.I. Ponomarev, P.A. Fyman, M.Yu. Uleysky and S.V.Prants. Lagrangian approach to chaotic transport and mixing in theJapan Sea. Chaos Theory: Modeling, Simulation and Applications. Selected Papers from the 3rd Chaotic Modeling and Simulation International Conference (CHAOS2010) (eds. C.H. Skiadas, I. Dimotikalis,C. Skiadas). Singapore: World Scientific. P.3-13. 2011. 468p. http://eproceedings.worldscinet.com/9789814350341/toc.shtml
3. S.V. Prants, M.Yu. Uleysky, M.V. Budyansky. Numerical simulation of propagation of radioactive pollution in the ocean from the Fukushima-Dai-ichi nuclear plant. Doklady Earth Sciences. V. 439 (2011) 1179-1182 [Dokl. Akad. Nauk. V.439 N6 (2011) 811-814].
2012
1. S.V. Prants, M.Yu. Uleysky, M.V. Budyansky. Lagrangian Coherent Structures in the Ocean Favorable for Fishery. Doklady Earth Sciences, 2012, Vol. 447, Part 1, pp. 1269-1272.7. S.V. Prants, V.O. Vitkovsky. Chaotic walking and fractal scattering of atoms in a tilted optical lattice. Journal of Russian Laser Research, V. 33, ╧ 3 (2012) p. 293-300.
2. S.V. Prants, M.V. Budyansky, M.Yu. Uleysky. Lagrangian tools to monitor transport and mixing in the ocean. In: CHAOS, COMPLEXITY AND TRANSPORT. Selected Papers from the International Conference (eds. Xavier Leoncini & Marc Leonetti). Singapore: World Scientific. P.33-46. 2012. DOI: 10.1142/9789814405645_0004
3. D.V. Makarov, M.Yu. Uleysky, S.V. Prants. Control of atomic transport using autoresonance. In: CHAOS, COMPLEXITY AND TRANSPORT. Selected Papers from the InternationalConference (eds. Xavier Leoncini & Marc Leonetti). Singapore: World Scientific. P.24-32. 2012. DOI: 10.1142/9789814405645_0003
4. S.V. Prants, M.Yu. Uleysky, M.V. Budyansky. Lagrangian Coherent Structures in the Ocean Favorable for Fishery. Doklady Earth Sciences, 2012, Vol. 447, Part 1, pp. 1269-1272.
2013
S. V. Prants, V. I. Ponomarev, M. V. Budyansky, M. Yu. Uleisky, and P. A. Fayman. Lagrange Analysis of Mixing and Transfer of Water Masses in the Gulfs. Izvestiya, Atmospheric and Oceanic Physics, 2013, Vol. 49, No. 1, pp. 82-96.

2011 

1. S.V. Prants, M.V. Budyansky, V.I. Ponomarev, M.Yu. Uleysky Lagrangian study of transport and mixing in a mesoscale eddy street // Ocean Modelling V.38 (2011) p. 114–125 DOI:10.1016/j.ocemod.2011.02.008
2. M.V. Budyansky, V.I. Ponomarev, P.A. Fyman, M.Yu. Uleysky and S.V.Prants. Lagrangian approach to chaotic transport and mixing in theJapan Sea. Chaos Theory: Modeling, Simulation and Applications. Selected Papers from the 3rd Chaotic Modeling and Simulation International Conference (CHAOS2010) (eds. C.H. Skiadas, I. Dimotikalis,C. Skiadas). Singapore: World Scientific. P.3-13. 2011. 468p. http://eproceedings.worldscinet.com/9789814350341/toc.shtml
3. S.V. Prants, M.Yu. Uleysky, M.V. Budyansky. Numerical simulation of propagation of radioactive pollution in the ocean from the Fukushima-Dai-ichi nuclear plant. Doklady Earth Sciences. V. 439 (2011) 1179-1182 [Dokl. Akad. Nauk. V.439 N6 (2011) 811-814].
 

2012

1. S.V. Prants, M.Yu. Uleysky, M.V. Budyansky. Lagrangian Coherent Structures in the Ocean Favorable for Fishery. Doklady Earth Sciences, 2012, Vol. 447, Part 1, pp. 1269-1272

2. S.V. Prants, M.V. Budyansky, M.Yu. Uleysky. Lagrangian tools to monitor transport and mixing in the ocean. In: CHAOS, COMPLEXITY AND TRANSPORT. Selected Papers from the International Conference (eds. Xavier Leoncini & Marc Leonetti). Singapore: World Scientific. P.33-46. 2012. DOI: 10.1142/9789814405645_0004

3. D.V. Makarov, M.Yu. Uleysky, S.V. Prants. Control of atomic transport using autoresonance. In: CHAOS, COMPLEXITY AND TRANSPORT. Selected Papers from the InternationalConference (eds. Xavier Leoncini & Marc Leonetti). Singapore: World Scientific. P.24-32. 2012. DOI: 10.1142/9789814405645_0003

4. S.V. Prants, M.Yu. Uleysky, M.V. Budyansky. Lagrangian Coherent Structures in the Ocean Favorable for Fishery. Doklady Earth Sciences, 2012, Vol. 447, Part 1, pp. 1269-1272.   

2013  

S. V. Prants, V. I. Ponomarev, M. V. Budyansky, M. Yu. Uleisky, and P. A. Fayman. Lagrange Analysis of Mixing and Transfer of Water Masses in the Gulfs. Izvestiya, Atmospheric and Oceanic Physics, 2013, Vol. 49, No. 1, pp. 82-96.

 
2014

 

1. S.V. Prants, M.V. Budyansky, M.Yu. Uleysky. Lagrangian fronts in the ocean. Izvestiya, Atmospheric and Oceanic Physics. Vol. 50, No.3 (2014) pp.284-291. DOI: 10.1134/s0001433814030116
2. S.V. Prants, M.V. Budyansky, M.Yu. Uleysky. Lagrangian study of surface transport in the Kuroshio Extension area based on simulation of propagation of Fukushima-derived radionuclides. Nonlinear Processes in Geophysics. V.21, 279-289, 2014. DOI: 10.5194/npg-21-279-2014
3. S.V. Prants, A.G. Andreev, M.Yu. Uleysky, M.V. Budyansky. Lagrangian study of temporal changes of a surface flow through the Kamchatka Strait. Ocean Dynamics.
V.64 (N6) 771-780 (2014) DOI: 10.1007/s10236-014-0706-9 
4. S.V. Prants, M.V. Budyansky, M.Yu. Uleysky. Identifying Lagrangian fronts with favourable fishery conditions. Deep Sea Research I. V. 90, p.27-35 (2014) DOI: 10.1016/j.dsr.2014.04.012
2015 
  
1. M.V. Budyansky, V.A. Goryachev, D.D. Kaplunenko, V.B. Lobanov, S.V. Prants, A.F. Sergeev, N.V. Shlyk, M.Yu. Uleysky. Role of mesoscale eddies in transport of Fukushima-derived cesium isotopes in the ocean. Deep Sea Research I. (2015), V.96, pp. 15-27 DOI information: 10.1016/j.dsr.2014.09.007. 
2. S.V. Prants, M.V. Budyansky, V.I. Ponomarev, M.Yu. Uleysky, P.A. Fayman Lagrangian analysis of the vertical structure of eddies simulated in the Japan Basin of  the Japan/East Sea. Ocean Modelling. V.86 pp.128-140 (2015) http://dx.doi.org/10.1016/j.ocemod.2014.12.010. 
3. S.V. Prants, A.G. Andreev, M.V. Budyansky, M.Yu. Uleysky. Impact of the Alaskan Stream flow on surface water dynamics, temperature, ice extent, plankton biomass and walleye pollock stocks in the eastern Okhotsk Sea. J. Marine Systems. V.151 pp.47-58 (2015). doi:10.1016/j.jmarsys.2015.07.001 
4. S.V. Prants, M.V. Budyansky, M.Yu. Uleysky, J. Zhang. Hyperbolicity in the ocean. Discontinuity, Nonlinearity, and Complexity. V.4, N3 pp. 257-270 (2015). DOI: 10.5890/DNC.2015.09.004
5. S.V. Prants, M.Yu. Uleysky. Genealogical tree of Russian schools on Nonlinear Dynamics Bulletin of Far-Eastern Branch of the Russian Academy of Sciences(in Russian). No. 6 pp. 164-172 (2015). 
 
2016 
 
1. S.V. Prants, V.B. Lobanov, M.V. Budyansky, M.Yu. Uleysky. Lagrangian analysis of formation, structure, evolution and splitting of anticyclonic Kuril eddies. Deep Sea Research I. V.109 pp.61–75 (2016). DOI: 10.1016/j.dsr.2016.01.003
   
   
2017
  
1. S.V. Prants, M.Yu. Uleysky, M.V. Budyansky. Lagrangian oceanography: large-scale transport and mixing in the ocean. Berlin, New York. Springer Verlag. 2017. 271 p. ISSN 1610-1677 ISBN 978-3-319-53021-5.
2. S.V. Prants, A.G. Andreev, M.V. Budyansky, M.Yu. Uleysky. Mesoscale circulation along the Sakhalin Island eastern coast. Ocean Dynamics. (2017) V. 67. Is.3 P. 345-356. doi:10.1007/s10236-017-1031-x
3. S.V. Prants, M.V. Budyansky, M.Yu. Uleysky. Statistical analysis of Lagrangian transport of subtropical waters in the Japan Sea based on AVISO altimetry data. Nonlin. Processes Geophys. V.24, p. 89-99, 2017 doi:10.5194/npg-24-1-2017.
4.  S.V. Prants, M.Yu. Uleysky. Genealogical Tree of Russian schools on Nonlinear Dynamics. Discontinuity, Nonlinearity, and Complexity V.6(2) (2017) P.191–199.  DOI : 10.5890/DNC.2017.06.007
5. S.V. Prants, M.V. Budyansky, M.Yu. Uleysky.  Lagrangian simulation and tracking of the mesoscale eddies contaminated by Fukushima-derived radionuclides. Ocean Science. V.13 P.453-463 (2017). https://doi.org/10.5194/os-13-453-2017
6. M.V. Budyansky, S.V. Prants, E.V. Samko, M.Yu. Uleysky. Identification and Lagrangian analysis of oceanographic structures favorable for fishery of neon flying squid (Ommastrephes bartramii) in the South Kuril area. Oceanology, 2017, Vol. 57, No. 5, pp. 648–660. 
7. M.V. Budyansky, M.Yu. Uleysky, A.G. Andreev, S.V. Prants. A Lagrangian analysis of Kuril eddies. Vestnik DVO. N4 P.81-88 (2017) (in Russian) 
2018

1. Prants S.V., Budyansky M.V., Uleysky M.Yu. How eddies gain, retain and release water: the case study of a Hokkaido anticyclone. Journal Geophysical Research. Oceans. 2018. Vol. 123. Is. 3.   P. 2081-2096. DOI: 10.1002/2017JC013610

2. Prants S.V., Uleysky M.Yu., Budyansky M.V. Lagrangian study of transport of subarctic water across the Subpolar  Front in the Japan Sea. Ocean Dynamics. 2018. V. 68(6). Р. 701-712. https://doi.org/10.1007/s10236-018-1155-7

3. Ponomarev V.I., Fayman P.A., Prants S.V., Budyansky M.V., Uleysky M.Yu. Simulation of mesoscale circulation in the Tatar Strait of the Japan Sea. Ocean Modelling. 2018. V. 126. P. 43-55. https://doi.org/10.1016/j.ocemod.2018.04.006

4. Prants S.V., Uleysky M.Yu., Budyansky M.V. Lagrangian analysis of transport pathways of subtropical water to the Primorye coast.  Doklady Earth Sciences. 2018. Vol. 481. Part 2. Р. 1099–1103. [Doklady Akademii Nauk, 2018, Vol. 481, No. 6.]. doi: 10.1134/S1028334X18080329

5. Andreev A, Budyansky M., Uleysky M., Prants S. Mesoscale dynamics and walleye pollock catches in the Navarin Canyon area of the Bering Sea. Ocean Dynamics. 2018. V.68, N 11. P. 1503-1514.https://doi.org/10.1007/s10236-018-1208-y

6. Didov A.A., Uleysky M.Yu., Nonlinear resonances in the ABC-flow. Chaos. 2018. V.28, Is.1, P.013123. https://doi.org/10.1063/1.5003426

7. Didov A.A., Uleysky M.Yu., Analysis of stationary points and their bifurcations in the ABC-flow. Applied Mathematics and Computation. 2018. V.330, P.56-64. https://doi.org/10.1016/j.amc.2018.02.032

2019

1. S.V. Prants, A.G. Andreev, M.Yu. Uleysky, M.V. Budyansky. Lagrangian study of mesoscale circulation in the Alaskan Stream area and the eastern Bering Sea. Deep Sea Research II. V. 169-170 art. No. 104560 (2019) DOI: https://doi.org/10.1016/j.dsr2.2019.03.005

2. P.A. Fayman, S.V. Prants, M.V., Budyansky, M.Yu. Uleysky. Coastal summer eddies in the Peter the Great Bay of the Japan Sea: in situ data, numerical modeling and Lagrangian analysis.Continental Shelf Research. V.181. 143-155. 2019 https://doi.org/10.1016/j.csr.2019.05.002

2020

1. S.V. Prants, V.V. Kulik, M.V. Budyansky, M.Yu. Uleysky. Relationship between Saury Fishing Grounds and Large-Scale Coherent Structures in the Ocean, According to Satellite Data Izvestiya, Atmospheric and Oceanic Physics. 2020, Vol. 56, No. 12 pp. 1638–1644. DOI: 10.1134/S000143382012050
 
2. S.V. Prants, M.V. Budyansky, V. B. Lobanov, A. F. Sergeev and M.Yu. Uleysky. Observation and Lagrangian analysis of quasi-stationary Kamchatka trench eddies. Journal of Geophysical Research (Oceans) 2020  V.125 , Issue 6. e2020JC016187 https://doi.org/10.1029/2020JC016187 
  
3. P.A. Fayman, S.V. Prants, M.V. Budyansky, M.Yu. Uleysky. New circulation features in the Okhotsk Sea from a numerical model. Izvestiya, Atmospheric and Oceanic Physics. 2020, Vol. 56, No. 6, pp. 618–631. DOI: 10.1134/S0001433820060043 
  
4. P.A. Fayman, M.V. Budyansky, M.Yu. Uleysky, S.V. Prants, V.L. Vysotsky, D.A. Pripachkin. Modeling the transport of radioactive pollution in the Ussuri Gulf during the first days after the nuclear accident in the Chazhma Bay in August 1985. Vestnik DVO RAN (In Russ. English abstract) N5 2020. p.18-31. 
  
5. Kulik V.V., Prants S.V., Budyansky M.V., Uleysky M.Yu., Fayman P.A., Glebov I.I., Glebova S.Yu., Novikov R.N. Relationship of the greenland halibut stocks in the Okhotsk sea with environmental factors. Izvestiya TINRO. 2020. V.200. pp. 58-81. (In Russ. English abstract) https://doi.org/10.26428/1606-9919-2020-200-58-81
       
2021
  
1. T. V. Belonenko, V.A. Zinchenko, A. M. Fedorov, M.V. Budyansky, S.V. Prants, M. Yu. Uleysky. Interaction of the Lofoten Vortex with a satellite cyclone. Pure and Applied Geophysics.V.178 2021 p. 287-300. https://doi.org/10.1007/s00024-020-02647-1
2. P.A. Fayman, S.V. Prants, M.V. Budyansky, M.Yu. Uleysky. Simulated pathways of the Northwestern Pacific Water in the Okhotsk Sea and ocean-sea exchange transport. Izvestiya, Atmospheric and Oceanic Physics. 2021 Vol. 57, No. 3, pp. 329-340. DOI: 10.1134/S000143382103004X
3. S.V. Prants, M.V., Budyansky, M.Yu. Uleysky, Kulik V.V. Lagrangian fronts and saury catch locations in the Northwestern Pacific in 2004-2019. J. Marine Systems. 2021. V. 222. Art. No. 103605 DOI: 10.1016/j.jmarsys.2021.103605
4. A.M. Fedorov, T.V. Belonenko, M.V. Budyansky, S.V. Prants, M.Yu. Uleysky, I.L. Bashmachnikov. Lagrangian Modeling of Water Circulation in the Lofoten Basin. Dynamics of Atmospheres and Oceans. V.96, art.no. 101268 2021. DOI 10.1016/j.dynatmoce.2021.101258
 
    
2022
   
1. V.S. Travkin, T. V. Belonenko, M.V. Budyansky, S.V. Prants, M. Yu. Uleysky, Gnevyshev V.G, Roshin. P. Raj.Quasi-permanent mushroom-like dipole in the Lofoten basin. Pure and Applied Geophysics. 2022.V.179, pages 465-482 DOI 10.1007/s00024-021-02922-9
2. M. V. Budyansky, P. A. Fayman, M. Yu. Uleysky and S. V. Prants. The impact of circulation features on the dispersionof radionuclides in the Chazhma Bay: a Lagrangian simulation. Marine Pollution Bulletin. 2022.V. 177, 113483 DOI 10.1016/j.marpolbul.2022.113483
3. M.V. Budyansky, S.V. Prants, M.Yu. Uleysky. Odyssey of Aleutian eddies. Ocean Dynamics. 2022.V.72, p. 455-476. DOI 10.1007/s10236-022-01508-w
4. S.V. Prants, P.A. Fayman, M.V. Budyansky, M.Yu. Uleysky. Simulation of winter deep slope convectionin Peter the Great Bay (Japan Sea). 2022. Fluids. V.7(4). 134. DOI 10.3390/fluids7040134
5. V.V. Kulik, S.V. Prants, M.Yu. Uleysky, M.V. Budyansky. Lagrangian characteristics in the westernNorth Pacific help to explain variability in Pacific saury fishery. Fisheries  Research. 2022.V.252 106361. DOI 10.1016/j.fishres.2022.106361
6. A.A. Didov, M.Yu. Uleysky, M.V. Budyansky Fractal structure of chaotic scattering in a simplehydrodynamic model with a point vortex embedded ina time-(quasi)periodic background flow // September 2022 Communications in NonlinearScience and Numerical Simulation DOI: 10.1016/j.cnsns.2022.1068822
7. A.A. Udalov, M.Yu. Uleysky, M.V. Budyansky Analysis of Stationary Points and Bifurcations of a DynamicallyConsistent Model of a Two-dimensional Meandering // Jet.Russian Journal of Nonlinear Dynamics DOI: 10.20537/nd220802

 

  
     

Last Updated (Wednesday, 12 October 2022 02:24)