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Titlebook: Continuum Mechanics and Applications in Geophysics and the Environment; Brian Straughan (Professor),Ralf Greve,Yongqi Wang Book 2001 Sprin

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,Kathinka Zitz-Halein (1801–1877),hods are compared; one method is clearly more accurate than the others, but requires twice as much computation time per time-step. A stable semi-implicit method for the ice-sheet equation is suggested by the stability analyses in this paper.
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https://doi.org/10.1007/978-3-476-02814-3 be run extensively to simulate various climatic scenarios, some compromises must be made to limit its complexity. A possible solution is to use a hierarchy of models of increasing complexity. In this respect the results from the different models are compared and discussed from the viewpoint of ice-sheet flow modelling.
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Modelling Iceberg Drift and Ice-Rafted Sedimentationisk of collision with maritime traffic or fixed offshore structures. In the Heinrich problem the objective is to predict the temporally-evolving spatial pattern of iceberg meltwater and the associated pattern and provenance of ice-rafted marine sedimentation.
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Notes on Basic Glaciological Computational Methods and Algorithmshods are compared; one method is clearly more accurate than the others, but requires twice as much computation time per time-step. A stable semi-implicit method for the ice-sheet equation is suggested by the stability analyses in this paper.
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Constitutive Modelling and Flow Simulation of Anisotropic Polar Ice be run extensively to simulate various climatic scenarios, some compromises must be made to limit its complexity. A possible solution is to use a hierarchy of models of increasing complexity. In this respect the results from the different models are compared and discussed from the viewpoint of ice-sheet flow modelling.
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Book 2001l. Professor Hutter graduated in Civil Engineering from the ETH Zurich, and then worked in industry-related consulting at the Institute of Mechanics and the Laboratory of Hydraulics and Soil Mechanics at the ETH, before embark­ ing on a PhD in Theoretical and Applied Mechanics in Cornell University.
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sion of his 60th birthday on 22 January 200l. Professor Hutter graduated in Civil Engineering from the ETH Zurich, and then worked in industry-related consulting at the Institute of Mechanics and the Laboratory of Hydraulics and Soil Mechanics at the ETH, before embark­ ing on a PhD in Theoretical a
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Vom Wohlfahrtsstaat zum Wettbewerbsstaatl continuum theory with internal degrees of freedom can be used to model such systems and that some predictions about streaming anisotropy can be made regardless of the scale of the system. Finally, the predictions obtained will be compared to experimental results.
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https://doi.org/10.1007/978-3-322-99973-3the “thermal inertia” introduced in previous papers for the second sound phenomena in crystals. This presentation permits to verify that the second sound is a common characteristic of liquid He II and crystals, and that it is a phenomenon of low temperatures.
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