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Micro- and Nanoscale Anemometry: Implication

Micro- and Nanoscale Anemometry Implication for Biomedical Applications... [Pg.1120]

Micro- and Nanoscale Anemometry Implication for Biomedical Applications, Fig. 2 The operating principle of hot-wire anemometry. The electrical current is passed to the hot wire via the electrodes. The changes in resistance of the hot wire in response to the fluid flow are calibrated for temperature, flow rate, and shear stress... [Pg.1781]

Micro- and Nanoscale Anemometry Implication for Biomedkal Applications, Fig. 3 Two-dimensional physics model for MHMSAianoscale anemometry. The fluid flow is demoted in the x-directi(Hi. At steady state. [Pg.1781]

Micro- and Nanoscale Anemometry Implication for Biomedical Applications, Fig. 8 (a) An array of MEMS sensors embedded in a 3D bifurcation model, (b) Computational fluid dynamics (CFD) solutions for skin friction coefficient (Cf) at a Reynolds number of 6.7. Cf represents local wall shear stress values normalized by the... [Pg.1785]

Micro- and Nanoscale Anemometry Implication for Biomedical Applications, Fig. 10 (a) Top view of transparent parylene skin with An wires connected to... [Pg.1786]

Micro- and Nanoscale Anemometry Implication for Biomedicai Appii-cations, Figure 7 (a) Cross-section of a flexible shear stress sensor,... [Pg.1278]

Micro- and Nanoscale Anemometry Implication for Biomedical AppiicaUens, Rgure 8 (a) An array of MEMS sensors embedded in a 3D bifurcation model, (b) Computational fluid dynamics (CFD) solutions for skin friction coefficient (Cf) at a R nolds number of 6.7. Cj represents local wall shear stress values normalized by the upstream dynamic pressure. Cj values are shown along the interior surface of bifurcation, (c) Comparison of the CFD On blue), experimental On green), and theoretical On red) skin friction for the 180° edge. x/D/cos(12.5) is the x distance normalized to the diameter of the inlet pipe and parallel to the centerline of the outlet pipes... [Pg.1279]

Micro- and Nanoscale Anemometry Implication for Biomedical Applications, Figure 10 (a) Top view of transparent parylene skin with An wires connected to a single silicon island, (b) Side view of flexed patylene skin with Au wires and silicon island, (c) Flexed parylene skin with platinum (Pt) wires... [Pg.1280]




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Micro- and Nanoscale Anemometry: Implication for

Micro- and Nanoscale Anemometry: Implication for Biomedical Applications

Nanoscale

Nanoscales

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