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Titlebook: Numerical Methods for Flows; FEF 2017 Selected Co Harald van Brummelen,Alessandro Corsini,Gianluigi Book 2020 Springer Nature Switzerland

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Density-Based Inverse Homogenization with Anisotropically Adapted Elements, here a standard density-based inverse homogenization technique with an anisotropic mesh adaptation procedure in the context of a finite element discretization. In this way, the optimized layouts are intrinsically smooth and ready to be manufactured.
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Lecture Notes in Computational Science and Engineeringhttp://image.papertrans.cn/n/image/669063.jpg
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High-Order Isogeometric Methods for Compressible Flows,ss the creation of oscillations and occurrence of non-physical values in the solution. This work provides early results for scalar conservation laws and lays the foundation for extending this approach to the compressible Euler equations in the next chapter.
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High-Order Isogeometric Methods for Compressible Flows, Springer, Berlin, 2012). The underlying principles are reviewed and it is shown that linearized FCT-type flux limiting (Kuzmin, J Comput Phys 228(7):2517–2534, 2009) originally derived for nodal low-order finite elements ensures positivity-preservation for high-order B-Spline discretizations.
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Andrzej Jaeschke,Matthias Möllerorithm provides fairly robust, accurate and precise estimates of the modal parameters, including damping ratios. This may potentially lead to a standardized, extensive characterization of modal damping ratios in structures, which is useful to gain knowledge about damping mechanisms in structures and to develop predictive models.
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