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- W2000440617 abstract "Three-dimensional steady and unsteady flows through the bifurcation of the porcine renal artery were analyzed numerically using the finite-element method. As the bifurcation geometry plays a primary role in determining the hemodynamical variables, the present bifurcation geometry was precisely developed in accordance with the measured data. In the present calculations, the arterial wall was assumed to be rigid and the non-Newtonian effect of blood was not taken into consideration. The calculated results showed that the present difurcation geometry had an effect of suppressing the flow separation. In addition, it was shown that the present bifurcation geometry flattened the spatial distributions of wall shear stress, which has important implications for the concept of Wall Shear Stress Gradient." @default.
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- W2000440617 date "1998-01-01" @default.
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- W2000440617 title "Numerical Study on the Unsteady Flows through the Bifurcation of the Porcine Renal Artery." @default.
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- W2000440617 doi "https://doi.org/10.1299/jsmeb.41.262" @default.
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