author: sheikholeslami

Hydrothermal Analysis in Engineering Using Control Volume Finite Element Method

... Darcy numbers Da1⁄410À1, 10À3, and 10À5 when the dimensionless amplitude varies from 0.1 to 0.3. Based on the definition of a Darcy number, the direct proportion of the Darcy number to permeability is clear. The permeability of a porous ...

Application of Control Volume Based Finite Element Method (CVFEM) for Nanofluid Flow and Heat Transfer

... 7–1 5-10's (0.T.d.)opoli. kp + 2 || – Kp 1 ppap k; k; Ó (4.9) g'(q), T, do) = (a. +a;Ln(d) + asLn(s) + agLn(0)|n(d) + aioln (d)) + Ln(T) (a + azLn(d) + as Ln(s) + aqLn(0)|n(d) + asLn (d)) R; + do/k, = dp/knoff, R = 4 × 10 °km ...

Applications of Nanofluid Transportation and Heat Transfer Simulation

... number are low, only one eddy exists in streamline and isotherms are parallel together. As Hartmann number increases, the main eddy converts to two smaller ones. As Darcy number increases, the convective heat transfer enhances and three ...

Applications of Nanofluid for Heat Transfer Enhancement

... (A.6) Ov O6 ov O6 0°6 . O'6 (A.7) dy ox 0x à, Too" of y = 0 for all walls 6 = 1 on. Appendix. Sample Codes for New Semianalytical and Numerical Methods 589 A4 - Codes for FLEX PDE A4.1 - MHD natural convection heat transfer in porous media.

Nanofluid Heat and Mass Transfer in Engineering Problems

... O3 in C2H6O2 O3 in C2H6O2-based nanofluids is reduced. O3 in C2H6O2 The influence of dissimilar particle shapes on the temperature of Al2O3 in H2O and C2H6O2based nanofluids is presented in Figures 27 and 28. The temperature of both ...

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