Multidimensional Flux-Form Semi-Lagrangian Transport Schemes
作者:Shian‐Jiann Lin, Richard B. Rood · 发表于:Monthly Weather Review · 年份:1996 · DOI:10.1175/1520-0493(1996)124<2046:mffslt>2.0.co;2 · 被引用次数:1282 · 研究领域:Computational Fluid Dynamics and Aerodynamics、Fluid Dynamics and Turbulent Flows、Meteorological Phenomena and Simulations
An algorithm for extending one-dimensional, forward-in-time, upstream-biased, flux-form transport schemes (e.g., the van Leer scheme and the piecewise parabolic method) to multidimensions is proposed. A method is also proposed to extend the resulting Eulerian multidimensional flux-form scheme to arbitrarily long time steps. Because of similarities to the semi-Lagrangian approach of extending time steps, the scheme is called flux-form semi-Lagrangian (FFSL). The FFSL scheme can be easily and efficiently implemented on the sphere. Idealized tests as well as realistic three-dimensional global transport simulations using winds from data assimilation systems are demonstrated. Stability is analyzed with a von Neuman approach as well as empirically on the 2D Cartesian plane. The resulting algorithm is conservative and upstream biased. In addition, it contains monotonicity constraints and conserves tracer correlations, therefore representing the physical characteristics of constituent transport.