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- W2019977695 abstract "We study non-Newtonian effects on the layout and geometry of flow channels using a material distribution based topology optimization approach. The flow is modeled with the single-relaxation hydrodynamic lattice Boltzmann method, and the shear dependence of viscosity is included through the Carreau–Yasuda model for non-Newtonian fluids. To represent the viscosity of blood in this model, we use non-Newtonian similarity. Further, we introduce a scaling to decrease the effects of the non-Newtonian model in porous regions in order to stabilize the coupling of the LBM porosity and non-Newtonian flow models. For the resulting flow model, we derive the non-Newtonian sensitivity analysis for steady-state conditions and illustrate the non-Newtonian effect on channel layouts for a 2D dual-pipe design problem at different Reynolds numbers." @default.
- W2019977695 created "2016-06-24" @default.
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- W2019977695 date "2010-04-01" @default.
- W2019977695 modified "2023-10-02" @default.
- W2019977695 title "Optimal design for non-Newtonian flows using a topology optimization approach" @default.
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- W2019977695 doi "https://doi.org/10.1016/j.camwa.2009.08.044" @default.
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