RIMS Kôkyûroku
No.1830
—¬‘Μ‚Ζ‹C‘̂̐”Šw‰πΝ
Mathematical Analysis in Fluid and Gas Dynamics
RIMS Œ€‹†W‰ο•ρW
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2012/07/04`2012/07/06
ˆδŒϋ@’B—Y
Tatsuo Iguchi
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–ځ@ŽŸ
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1. ON THE INVISCID LIMIT PROBLEM FOR VISCOUS INCOMPRESSIBLE FLOWS IN THE HALF PLANE (Mathematical Analysis in Fluid and Gas Dynamics)---1
@@@@_ŒΛ‘εŠw—ŠwŒ€‹†‰Θ@@@‘Oμ ‘Χ‘₯@(Maekawa,Yasunori)
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2. Asymptotic stability for a geophysical system (Mathematical Analysis in Fluid and Gas Dynamics)----------------------------------16
@@@@“Œ‹ž‘εŠw‘εŠw‰@”—‰ΘŠwŒ€‹†‰Θ@@@ŒΓκ ˆκ@(KOBA,HAJIME)
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3. GLOBAL SOLUTIONS FOR THE ROTATING NAVIER-STOKES EQUATIONS (Mathematical Analysis in Fluid and Gas Dynamics)----------------------34
@@@@’†‰›‘εŠw—HŠw•” / ‹ž“s‘εŠw—ŠwŒ€‹†‰Θ@@@ŠβŸΊ Ži / ‚“c —Ή@(Iwabuchi,Tsukasa / Takada,Ryo)
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4. KELVIN-HELMHOLTZ INSTABILITIES AND INTERFACIAL WAVES (Mathematical Analysis in Fluid and Gas Dynamics)---------------------------42
@@@@DMA, ECOLE NORMALE SUPERIEURE DE PARIS ET CNRS UMR 8553@@@LANNES,DAVID
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5. •½–Κ‹«ŠEγ‚ΜŠσ”–‹C‘Μ‚Ι‚¨‚―‚ι“ΑˆΩ‚ȐU•‘‚’ (—¬‘Μ‚Ζ‹C‘̂̐”Šw‰πΝ)------------------------------------------------------------------56
@@@@‹ž“s‘εŠw‘εŠw‰@HŠwŒ€‹†‰Θ‹@ŠB—HŠwκU@@@‚“c Ž @(Takata,Shigeru)
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6. Initial boundary value problem for model equations of resistive drift wave turbulence with Stepanov-almost-periodic initial data (Mathematical Analysis in Fluid and Gas Dynamics)---64
@@@@Œcœδ‹`m‘εŠw—HŠw•”@@@‹ί“‘ M‘Ύ˜Y@(KONDO,Shintaro)
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7. On asymptotic behavior of solutions to the compressible Navier-Stokes equation around a time-periodic parallel flow (Mathematical Analysis in Fluid and Gas Dynamics)---76
@@@@‹γB‘εŠw”—ŠwŒ€‹†‰@@@@Brezina,Jan
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8. Global Classical and Weak Solutions to the Three-Dimensional Full Compressible Navier-Stokes System with Vacuum and Large Oscillations (Mathematical Analysis in Fluid and Gas Dynamics)---98
@@@@NCMIS, Academy of Mathematics and System Sciences, Chinese Academy of Sciences / Institute of Applied Mathematics, AMSSEHua Loo-Keng Key Laboratory of Mathematics, Chinese Academy of Sciences@@@HUANG,Xiangdi / LI,Jing
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9. ˆ³k«”S«—¬‘Μ‚Μ”M‘Ξ—¬–β‘θ (—¬‘Μ‚Ζ‹C‘̂̐”Šw‰πΝ)-------------------------------------------------------------------------------119
@@@@‹ž“s‘εŠwξ•ρŠwŒ€‹†‰Θ / / Ϋ“μ‘εŠwHŠw•”@@@Ό“c F–Ύ / Padula M. / Ž›–{ ŒbΊ@(Nishida,Takaaki / Padula,M. / Teramoto,Yoshiaki)
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10. Mathematical justification of the penalty method for viscous incompressible fluid flows (Mathematical Analysis in Fluid and Gas Dynamics)---127
@@@@•xŽR‘εŠwlŠΤ”­’B‰ΘŠw•”@@@ŽRŒϋ ”Ν˜a@(Yamaguchi,Norikazu)
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11. Initial-Boundary Value Problems for a Motion of a Vortex Filament with Axial Flow (Mathematical Analysis in Fluid and Gas Dynamics)---143
@@@@Œcœδ‹`m‘εŠw—HŠw•””—‰ΘŠw‰Θ / Œcœδ‹`m‘εŠw—HŠw•””—‰ΘŠw‰Θ@@@‘Š–Ψ ‰λŽŸ / ˆδŒϋ ’B—Y@(Aiki,Masashi / Iguchi,Tatsuo)
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12. Convergence rates towards traveling waves for a model system of radiating gas (Mathematical Analysis in Fluid and Gas Dynamics)---163
@@@@‘ˆξ“c‘εŠw”ρόŒ`PDEŒ€‹†Š@@@‘ε“κ «Žj@(Ohnawa,Masashi)
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13. Isentropic Gas Flow in a Laval Nozzle : Physical Phenomena of Steady Flow and Time Global Existence of Solutions (Mathematical Analysis in Fluid and Gas Dynamics)---171
@@@@Šς•Œ‘εŠw‹³ˆηŠw•”@@@’ѐA ’ΌŽχ@(Tsuge,Naoki)
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