IUTAM symposium on advances in mathematical modelling of atmosphere and ocean dynamics. Proceedings of the IUTAM symposium, Limerick, Ireland, July 2--7, 2000. (Q1417204)
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scientific article; zbMATH DE number 2020376
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| English | IUTAM symposium on advances in mathematical modelling of atmosphere and ocean dynamics. Proceedings of the IUTAM symposium, Limerick, Ireland, July 2--7, 2000. |
scientific article; zbMATH DE number 2020376 |
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IUTAM symposium on advances in mathematical modelling of atmosphere and ocean dynamics. Proceedings of the IUTAM symposium, Limerick, Ireland, July 2--7, 2000. (English)
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21 December 2003
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The articles of this volume will be reviewed individually. Indexed articles: \textit{Durran, D. R.}, Open boundary conditions: fact and fiction, 1-18 [Zbl 1074.76635] \textit{Gent, Peter R.}, Parameterizing eddies in ocean climate models, 19-30 [Zbl 1074.76540] \textit{Lynch, Peter; McGrath, Ray}, Boundary filter initialization of the HIRLAM model, 31-44 [Zbl 1074.76587] \textit{McIntyre, M. E.}, Balance, potential-vorticity inversion, Lighthill radiation, and the slow quasimanifold, 45-68 [Zbl 1074.76534] \textit{Pedlosky, Joseph}, Kelvin's theorem and the oceanic circulation in the presence of islands and broken ridges, 69-80 [Zbl 1074.76541] \textit{Baer, F.; Tribbia, Joe; Taylor, Mark}, Global and regional atmospheric modeling using spectral elements, 81-86 [Zbl 1074.76569] \textit{Baey, Jean-Michel; Carton, Xavier J.}, Piecewise-constant vortices in a two-layer shallow water flow, 87-92 [Zbl 1074.76529] \textit{Bates, J. R.; Alexeev, V. A.}, A dynamical stabilizer in the climate system: a mechanism suggested by a simple model and supported by GCM experiments and an observational data study, 93-98 [Zbl 1074.76555] \textit{Benilov, E. S.}, Waves on the beta-plane over topography, 99-104 [Zbl 1074.76506] \textit{Ben Jelloul, M.; Carton, X. J.}, Asymptotic models and application to vortex dynamics, 105-110 [Zbl 1074.76633] \textit{Burk, Stephen D.; Haack, Tracy; Hodur, Richard M.}, Orographically forced variability in the coastal marine atmospheric boundary layer, 111-118 [Zbl 1195.86004] \textit{Capotondi, A.; Alexander, M. A.}, The influence of thermocline topography on the oceanic response to fluctuating winds: a case study in the tropical North Pacific, 119-124 [Zbl 1195.86006] \textit{Choboter, P. F.; Swaters, G. E.}, Modelling the dynamics of abyssal equator-crossing currents, 125-130 [Zbl 1074.76634] \textit{Chu, Peter C.}, Toward accurate coastal ocean prediction, 131-136 [Zbl 1074.76578] \textit{Chu, Peter C.; Lu, Shihua; Fan, Chenwu}, An air-ocean coupled nowcast/forecast system for the East Asian marginal seas, 137-142 [Zbl 1195.86015] \textit{Gluhovsky, Alexander; Tong, Christopher}, Low-order models of atmospheric dynamics with physically sound behavior, 147-152 [Zbl 1074.76637] \textit{Grimshaw, Roger; Gottwald, Georg}, Models for instability in geophysical flows, 153-160 [Zbl 1074.76556] \textit{Hodnett, P. F.; McNamara, R.}, Baroclinic structure of a modified Stommel-Arons model of the abyssal ocean circulation, 161-166 [Zbl 1074.76638] \textit{Huang, Rui Xin}, The available potential energy in a compressible ocean, 167-172 [Zbl 1074.76593] \textit{Hughes, C. W.}, The role of bottom pressure torques in the ocean circulation, 173-178 [Zbl 1074.76639] \textit{Keeley, N.; White, A. A.}, Quasi-geostrophic potential vorticity for a generalised vertical coordinate: formulation and applications, 179-182 [Zbl 1074.76640] \textit{Lionello, P.; Pedlosky, J.}, On the effect of a surface density front on the interior structure of the ventilated ocean thermocline, 183-189 [Zbl 1074.76641] \textit{Mak, Mankin}, Non-hydrostatic barotropic instability, 191-196 [Zbl 1074.76557] \textit{McGregor, John L.; Dix, Martin R.}, The CSIRO conformal-cubic atmospheric GCM, 197-202 [Zbl 1074.76642] \textit{Nawri, N.}, On the origin of helical flow structures. An introduction to relativistic quantum fluid dynamics, 203-208 [Zbl 1074.76652] \textit{Reszka, Mateusz K.; Swaters, Gordon E.}, Baroclinic instability of bottom-dwelling currents, 209-214 [Zbl 1074.76558] \textit{Reznik, G. M.; Sutyrin, G. G.}, General properties of baroclinic modons over topography, 215-220 [Zbl 1074.76536] \textit{Rõõm, Rein; Männik, Aarne}, Acoustic filtration in pressure-coordinate models. Basic concepts and applications in nonhydrostatic modeling, 221-226 [Zbl 1074.76612] \textit{Sazonov, I. A.; Danilov, S. D.; Chernous'ko, Yu. L.; Kochina, V. G.}, Oscillatory regimes of forced zonal flow. Laboratory and numerical simulation, 227-232 [Zbl 1204.86007] \textit{Schiller, A.}, Improving climate simulations in the tropical oceans, 233-238 [Zbl 1204.86011] \textit{Sonechkin, D. M.}, Synchroneity of the low-frequency planetary wave dynamics and its use to create a model for the numerical monthly weather forecasting, 239-244 [Zbl 1204.86016] \textit{Sutyrin, G. G.; Ginis, I.; Frolov, S. A.}, Physical mechanisms of nonlinear equilibration of a baroclinically unstable jet over topographic slope, 245-250 [Zbl 1074.76559] \textit{Swaters, G. E.}, Evolution of near-singular jet modes, 251-258 [Zbl 1074.76544] \textit{Tailleux, Rémi; McWilliams, James C.}, Linear resonance, WKB breakdown, and the coupling of Rossby waves over slowly varying topography, 259-264 [Zbl 1074.76537] \textit{Thuburn, John; Haine, Thomas W. N.}, Nonoscillatory advection schemes with well-behaved adjoints, 265-270 [Zbl 1074.76581] \textit{Turkington, Bruce}, A statistical equilibrium model of zonal shears and embedded vortices in a Jovian atmosphere, 271-278 [Zbl 1074.76563] \textit{Vanneste, J.}, The impact of small-scale topography on large-scale ocean dynamics, 279-284 [Zbl 1074.76592] \textit{Yoden, S.; Taguchi, M.}, Numerical experiments on intraseasonal and interannual variations of the troposphere-stratosphere coupled system, 285-290 [Zbl 1204.86009]
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