Volume 62 | Number 1 | Year 2018 | Article Id. IJMTT-V62P502 | DOI : https://doi.org/10.14445/22315373/IJMTT-V62P502
Mr.M.V.Surseh, Dr.P.Sekar, "MHD Effects on Blood Flow in a Stenosis," International Journal of Mathematics Trends and Technology (IJMTT), vol. 62, no. 1, pp. 8-13, 2018. Crossref, https://doi.org/10.14445/22315373/IJMTT-V62P502
[1] K. R. Cramer and S. I. Pai. Magnetofluid dynamics for engineers and applied physicists. Scripta Publishing Company, Washington D.C., 1973.
[2] P. A. Davidson. An introduction to magnetohydrodynamics. Cambridge Texts in Applied Mathematics. Cambridge University Press, Cambridge, 2001.
[3] R. Feng, M. Xenos, G. Girdhar, J. W. Davenport, Y. Deng, and D. Bluestein. Vis- cous flow simulation in a stenosis model using discrete particle dynamics: A com- parison between DPD and CFD. Biomech. Model. Mechan., 11(1–2):119–129, 2012.
[4] J. H. Ferziger and M. Peric´. Computational methods for fluid dynamics. Springer, Berlin, 3rd edition, 2002.
[5] R. A. Frewer. The electrical conductivity of flowing blood. Bio–Med. Eng., 9(12):552–554, 1974.
[6] S. Gabriel, R. W. Lau, and C. Gabriel. The dielectric properties of biological tissues: III. parametric models for the dielectric spectrum of tissues. Phys. Med. Biol., 41(11):2271–2293, 1996.
[7] F. H. Harlow and J. E. Welch. Numerical calculation of time-dependent viscous incompressible flow of fluid with free surface. Phys. Fluids, 8(12):2182–2190, 1965.
[8] S. V. Patankar. Numerical heat transfer and fluid flow. McGraw–Hill, New York, 1980.
[9] T. J. Pedley. The Fluid Mechanics of Large Blood Vessels. Cambridge University Press, Cambridge, 1980.
[10] S. H. Rambhia, X. Liang, M. Xenos, Y. Alemu, N. Maldonado, A. Kelly,S. Chakraborti, S. Weinbaum, L. Cardoso, S. Einav, and D. Bluestein. Microcalci- fications increase coronary vulnerable plaque rupture potential: A patient-based Micro-CT fluid-structure interaction study. Ann. Bio–Med. Eng., 40(7):1443– 1454, 2012.
[11] R. E. Rosensweig. Ferrohydrodynamics. Cambridge University Press, 1985.
[12] G. W. Sutton and A. Sherman. Engineering magnetohydrodynamics. McGraw– Hill Inc., New York, 1965.
[13] J. F. Thompson, Z. U. A. Warsi, and C. W. Mastin. Numerical grid generations. Foundations and applications. North-Holland Publishing Co., New York, 1985.
[14] E. E. Tzirtzilakis. A mathematical model for blood flow in magnetic field. Phys. Fluids, 17(7), 2005. 077103, 15pp.
[15] E. E. Tzirtzilakis. Biomagnetic fluid flow in a channel with stenosis. Physica D, 237(1):66–81, 2008.
[16] E. E. Tzirtzilakis and M. A. Xenos. Biomagnetic fluid flow in a driven cavity. a Meccanica, 48(1):187–200, 2013.