Repository: Freie Universität Berlin, Math Department

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Number of items: 20.

C

Craig, G.C. and Dörnbrack, A. (2008) Entrainment in Cumulus Clouds: What resolution is cloud resolving? J. Atmos. Sci., 65 . pp. 3978-3988. ISSN Online 1520-0469 Print 0022-4928

D

Doyle, J.D. and Grubišić, V. and Brown, W.O.J. and De Wekker, S.F.J. and Dörnbrack, A. and Jiang, Q. and Mayor, S.D. and Weissman, M. (2008) Observations and Numerical Simulations of Subrotor Vortices during T-REX. J. Atmos. Sci., 66 (5). ISSN Online 1520-0469 Print 0022-4928

Debrabant, K. and Lang, J. (2007) On Global Error Estimation and Control for Parabolic Equations, Report No. 2512. Appl. Num. Math. . (Submitted)

G

Gottermeier, B. and Lang, J. (2010) Adaptive two-step peer methods for thermally coupled incompressible flow. ., Proceedings of V. European Conference on Computational Fluid Dynamics ECCOMAS CFD 2010. (Unpublished)

Gerisch, A. and Lang, J. and Podhaisky, H. and Weiner, R. (2009) High-order linearly implicit two-step peer-finite element method for time-dependent PDEs. Applied Numerical Mathematics, 59 (3-4). 624-638 . ISSN 0168-9274

H

Hertel, C. and Fröhlich, J. (2010) Error reduction in LES via adaptive moving grids. In: Quality and Reliability of Large-Eddy Simulations II QLES2009, 9-11 September 2009, Pisa (Italy). (Submitted)

Hertel, C. and Fröhlich, J. (2010) Large-Eddy Simulation with adaptive refinement for the flow over periodic hills. In: DLES8, 07.-09.07.2010, Eindhoven, Niederlande. (In Press)

Huang, W. and Kamenski, L. and Lang, J. (2010) A new anisotropic mesh adaption method based upon hierarchical a posteriori error estimates. J. Comput. Phys., 229 . pp. 2179-2198.

Hickel, S. and von Terzi, D.A. and Fröhlich, J. (2009) An adaptive local deconvolution method for general curvilinear coordinate systems. Springer Proceedings Physics - Advances in Turbulence XII, 132 (11). pp. 783-786.

K

Kühnlein, C. and Smolarkiewicz, P. and Dörnbrack, A. (2012) Modelling atmospheric flows with adaptive moving meshes. Journal of Computational Physics, 231 (7). pp. 2741-2763. ISSN 0021-9991

Kühnlein, C. (2008) Adaptive meshes for meteorological applications. In: Atmospheric Boundary Layers: Concepts, Observations, and Numerical Simulations, Les Houches, Frankreich. (Unpublished)

Kühnlein, C. and Dörnbrack, A. (2008) Scalar advection with adaptive moving meshes. In: 1st International Workshop of EULAG Users, 7. Oktober 2008, Bad Tölz.

L

Löbig, S. and Dörnbrack, A. and Fröhlich, J. and Hertel, C. and Kühnlein, C. and Lang, J. (2009) Towards Large-Eddy Simulation on moving grids. PAMM · Proc. Appl. Math. Mech., 9 . 445 -446.

Lang, J. and Verwer, J. (2007) On Global Error Estimation and Control for Initial Value Problems. SIAM J. Sci. Comp., 29 (4). pp. 1460-1475. ISSN 1064-8275 (print) 1095-7197 (online)

T

Tack, A. (2010) Large Eddy Simulation horizontaler Konvektionswalzen in der atmosphärischen Grenzschicht. ., Interner Bericht, Institut für Strömungsmechanik, TU Dresden, in Kooperation mit dem Finnischen Meteorologischen Institut (FMI). (Unpublished)

Teleaga, , I. and Lang, J. (2008) Higher-order linearly implicit one-step methods for three-dimensional incompressible Navier-Strokes equations. Studia Babes-Bolyai Matematica, 53 . pp. 109-121.

Tomm, S. and von Terzi, D.A. and Fröhlich, J. (2008) Interaction of the filter and spatial discretisation operators for Large-Eddy Simulation using the Approximate Deconvolution Model. PAMM, 8 . pp. 10605-10606.

Tomm, S. (2007) Fehlererfassung für die Large Eddy Simulation auf gestreckten Gittern. Masters thesis, Universität Karlsruhe.

U

Ullman, S. and Lang, J. (2010) A POD-Galerkin reduced model with updated coefficients for smagorinsky LES. ., Proceedings of V. European Conference on Computational Fluid Dynamics ECCOMAS CFD 2010. (Submitted)

V

von Larcher, T. and Dörnbrack, A. (2014) Numerical simulations of baroclinic driven flows in a thermally driven rotating annulus using the immersed boundary method. Meteorologische Zeitschrift . ISSN 0941-2948

This list was generated on Wed Jan 16 03:48:27 2019 CET.