217
Views
43
CrossRef citations to date
0
Altmetric
Articles

Numerical Testing of Dielectric Mixing Rules By Fdtd Method

, , &
Pages 67-87 | Published online: 03 Apr 2012

Keep up to date with the latest research on this topic with citation updates for this article.

Read on this site (3)

L B Kong, Z W Li, L Liu, R Huang, M Abshinova, Z H Yang, C B Tang, P K Tan, C R Deng & S Matitsine. (2013) Recent progress in some composite materials and structures for specific electromagnetic applications. International Materials Reviews 58:4, pages 203-259.
Read now
Ahmed Beroual & Hacene Houari. (2006) Assessment of cavities and water contents through the complex dielectric permittivity computed by the boundary integral equation method. Journal of Civil Engineering and Management 12:4, pages 277-283.
Read now
Rohan Abraham, Ruyan Guo & Amar S. Bhalla. (2005) Modeling Permittivity and Tangent Loss in Dielectric Materials Using Finite Element Method and Monte Carlo Simulation. Ferroelectrics 315:1, pages 1-15.
Read now

Articles from other publishers (40)

Juchen Zhang, Enrique Gomez & Hongtao Sun. (2023) Nano-Sized Polymer-Assisted Cold Sintering and Recycling of Ceramic Composites. SSRN Electronic Journal.
Crossref
Thomas G. Mayerhöfer, Oleksii Ilchenko, Andrii Kutsyk & Jürgen Popp. (2021) Beyond Beer’s Law: Quasi-Ideal Binary Liquid Mixtures. Applied Spectroscopy 76:1, pages 92-104.
Crossref
Artur Posenato Garcia & Zoya Heidari. (2021) Numerical modeling of multifrequency complex dielectric permittivity dispersion of sedimentary rocks. GEOPHYSICS 86:4, pages MR179-MR190.
Crossref
Sujith Reddy Varakantham & Herbert Kliem. (2021) Numerical Investigation of Dielectric Relaxation in Interacting Systems. IEEE Transactions on Dielectrics and Electrical Insulation 28:1, pages 58-65.
Crossref
Zhaohan Li, Parker R. Wray, Magel P. Su, Qiaomiao Tu, Himashi P. Andaraarachchi, Yong Jin Jeong, Harry A. Atwater & Uwe R. Kortshagen. (2020) Aluminum Oxide Nanoparticle Films Deposited from a Nonthermal Plasma: Synthesis, Characterization, and Crystallization. ACS Omega 5:38, pages 24754-24761.
Crossref
Felipe D. A. Dias, Eduardo N. dos Santos, Marco J. da Silva, Eckhard Schleicher, Rigoberto E. M. Morales, Buddhika Hewakandamby & Uwe Hampel. (2020) New Algorithm to Discriminate Phase Distribution of Gas-Oil-Water Pipe Flow With Dual-Modality Wire-Mesh Sensor. IEEE Access 8, pages 125163-125178.
Crossref
Qifan Li, Yajie Chen & Vincent G. Harris. (2019) Clustering effect on permeability spectra of magneto-dielectric composites with conductive magnetic inclusions. Journal of Applied Physics 125:18.
Crossref
Artur Posenato Garcia & Zoya Heidari. (2019) Multi-Frequency Modeling of Dielectric Measurements in the Presence of Complex Rock Fabric and Composition. Multi-Frequency Modeling of Dielectric Measurements in the Presence of Complex Rock Fabric and Composition.
Mohamed Abdelhafid Bouhamla & Ahmed Beroual. (2017) Experimental Characterisation of Concrete Containing Different Kinds of Dielectric Inclusions Through Measurements of Dielectric Constant and Electrical Resistivity. Procedia Environmental Sciences 37, pages 647-654.
Crossref
Michael I. Mishchenko, Janna M. Dlugach, Maxim A. Yurkin, Lei Bi, Brian Cairns, Li Liu, R. Lee Panetta, Larry D. Travis, Ping Yang & Nadezhda T. Zakharova. (2016) First-principles modeling of electromagnetic scattering by discrete and discretely heterogeneous random media. Physics Reports 632, pages 1-75.
Crossref
A. Gully, H. Liu, S. Srinivasan, A. K. Sethurajan, S. Schougaard & B. Protas. (2014) Effective Transport Properties of Porous Electrochemical Materials — A Homogenization Approach. Journal of The Electrochemical Society 161:8, pages E3066-E3077.
Crossref
Enis Tuncer. (2013) Dielectric mixtures-importance and theoretical approaches. IEEE Electrical Insulation Magazine 29:6, pages 49-58.
Crossref
Mehrdad Saviz & Reza Faraji-Dana. (2013) A THEORETICAL MODEL FOR THE FREQUENCY-DEPENDENT DIELECTRIC PROPERTIES OF CORNEAL TISSUE AT MICROWAVE FREQUENCIES. Progress In Electromagnetics Research 137, pages 389-406.
Crossref
Austin J. Pickles & Michael B. Steer. (2013) Effective Permittivity of 3-D Periodic Composites With Regular and Irregular Inclusions. IEEE Access 1, pages 523-536.
Crossref
Nawfal Jebbor & Seddik Bri. (2012) Effective permittivity of periodic composite materials: Numerical modeling by the finite element method. Journal of Electrostatics 70:4, pages 393-399.
Crossref
Jyh Sheen, Zuo-Wen Hong, Che-Wei Su & Heng-Chou Chen. (2010) MICROWAVE MEASUREMENTS OF DIELECTRIC CONSTANTS BY EXPONENTIAL AND LOGARITHMIC MIXTURE EQUATIONS. Progress In Electromagnetics Research 100, pages 13-26.
Crossref
Timothy E. Doyle, Adam T. Tew, Rahul Jain & David A. Robinson. (2009) Effects of aggregation on the permittivity of random media containing monodisperse spheres. Journal of Applied Physics 106:11.
Crossref
Viktor Myroshnychenko & Christian Brosseau. (2009) Effective complex permittivity and continuum percolation analysis of two-phase composite media. IEEE Transactions on Dielectrics and Electrical Insulation 16:4, pages 1209-1222.
Crossref
A. Mejdoubi & C. Brosseau. (2009) Reflectance and absorbance of all-dielectric metamaterial composites with fractal boundaries: A numerical investigation. Journal of Applied Physics 105:2.
Crossref
Abdelilah Mejdoubi & Christian Brosseau. (2007) Controllable effective complex permittivity of functionally graded composite materials: A numerical investigation. Journal of Applied Physics 102:9.
Crossref
Cédric Blanchard, Jorge A. Portí, Juan A. Morente, Alfonso Salinas & Enrique A. Navarro. (2007) Determination of the effective permittivity of dielectric mixtures with the transmission line matrix method. Journal of Applied Physics 102:6.
Crossref
Dagang Wu, Ji Chen & Ce Liu. (2007) Numerical evaluation of effective dielectric properties of three-dimensional composite materials with arbitrary inclusions using a finite-difference time-domain method. Journal of Applied Physics 102:2.
Crossref
Dagang Wu, Rui Qiang, J. Chen, Ce Liu, Marina Koledintseva, J. Drewniak & Bruce Archambeault. (2007) Numerical Modeling of Periodic Composite Media for Electromagnetic Shielding Application. Numerical Modeling of Periodic Composite Media for Electromagnetic Shielding Application.
Emmanuel ToumelinCarlos Torres-Verdín. (2007) 2D pore-scale simulation of wide-band electromagnetic dispersion of saturated rocks. GEOPHYSICS 72:3, pages F97-F110.
Crossref
Abdelilah Mejdoubi & Christian Brosseau. (2006) Dielectric response of perforated two-dimensional lossy heterostructures: A finite-element approach. Journal of Applied Physics 100:9.
Crossref
Christian Brosseau. (2006) Modelling and simulation of dielectric heterostructures: a physical survey from an historical perspective. Journal of Physics D: Applied Physics 39:7, pages 1277-1294.
Crossref
Abdelilah Mejdoubi & Christian Brosseau. (2006) Finite-difference time-domain simulation of heterostructures with inclusion of arbitrarily complex geometry. Journal of Applied Physics 99:6.
Crossref
Abdelilah Mejdoubi & Christian Brosseau. (2006) Duality and similarity properties of the effective permittivity of two-dimensional heterogeneous medium with inclusion of fractal geometry. Physical Review E 73:3.
Crossref
Dagang Wu, Rui Qiang, Ji Chen & Ce Liu. (2006) Numerical evaluation of the effective dielectric property of multi?component three?dimensional mixtures using a finite?difference time?domain method. Numerical evaluation of the effective dielectric property of multi?component three?dimensional mixtures using a finite?difference time?domain method.
J. Martin-Herrero & J.F. Peon-Fernandez. (2005) Computation of longwave electromagnetic response of nonhomogeneous media. IEEE Transactions on Geoscience and Remote Sensing 43:7, pages 1479-1489.
Crossref
Viktor Myroshnychenko & Christian Brosseau. (2005) Finite-element modeling method for the prediction of the complex effective permittivity of two-phase random statistically isotropic heterostructures. Journal of Applied Physics 97:4.
Crossref
Viktor Myroshnychenko & Christian Brosseau. (2005) Finite-element method for calculation of the effective permittivity of random inhomogeneous media. Physical Review E 71:1.
Crossref
R. Rouveure, C. Bacconnet, M. Chanet & M.-O. Monod. (2003) Simulation of realistic soils for 3-D computational models. Simulation of realistic soils for 3-D computational models.
C. Brosseau & A. Beroual. (2003) Computational electromagnetics and the rational design of new dielectric heterostructures. Progress in Materials Science 48:5, pages 373-456.
Crossref
Christian Brosseau. (2002) Generalized effective medium theory and dielectric relaxation in particle-filled polymeric resins. Journal of Applied Physics 91:5, pages 3197-3204.
Crossref
K. Karkkainen, A. Sihvola & K. Nikoskinen. (2001) Analysis of a three-dimensional dielectric mixture with finite difference method. IEEE Transactions on Geoscience and Remote Sensing 39:5, pages 1013-1018.
Crossref
A. Beroual & C. Brosseau. (2001) Comparison of dielectric properties determined from a computational approach and experiment for anisotropic and periodic heterostructures. IEEE Transactions on Dielectrics and Electrical Insulation 8:6, pages 921-929.
Crossref
K.K. Karkkainen, A.H. Sihvola & K.I. Nikoskinen. (2000) Effective permittivity of mixtures: numerical validation by the FDTD method. IEEE Transactions on Geoscience and Remote Sensing 38:3, pages 1303-1308.
Crossref
K. Karkkainen, A. Sihvola & K. Nikoskinen. (2000) Effective permittivity of a random mixture with spherical inclusions. Effective permittivity of a random mixture with spherical inclusions.
K. Karkkainen, A. Sihvola, K. Nikoskinen & O. Pekonen. (1999) Limits for the effective permittivity of mixtures: numerical validation by the FDTD method. Limits for the effective permittivity of mixtures: numerical validation by the FDTD method.

Reprints and Corporate Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

To request a reprint or corporate permissions for this article, please click on the relevant link below:

Academic Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

Obtain permissions instantly via Rightslink by clicking on the button below:

If you are unable to obtain permissions via Rightslink, please complete and submit this Permissions form. For more information, please visit our Permissions help page.