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MedicineMedicine and Medical Research

Penetration of Microwaves Through Dispersive Concrete Using a Three- Dimensional Finite-Difference Time-Domain Code

Authors: S. J. Yakura; David Dietz; AIR FORCE RESEARCH LAB KIRTLAND AFB NMDIRECTED ENERGY DIRECTORATE
 
Abstract: In this paper, we present a new formulation of a three-dimensional Finite-Difference Time-Domain (FDTD) algorithm that is applicable for studying the penetration of microwave pulses in conductive and dispersive materials, such as concrete. We investigate the effects of microwaves penetrating into conductive and dispersive concrete using the newly formulated algorithm incorporated into a three-dimensional FDTD code. Because of the dispersive properties of concrete, both conductivity and polarization terms are taken to be frequency-dependent. We model the electric polarization terms and the electric conductivity to exhibit linear dispersive behavior via first-order, time- dependent, electric susceptibility and conductivity functions. Sample one- dimensional FDTD calculations show that the penetration of wide-band and ultrawide-band microwave pulses must be simulated using the fully dispersive FDTD algorithm to obtain the proper response from dispersive concrete. On the other hand, the use of the fully dispersive FDTD algorithm is not essential in simulating the penetration of narrow-band microwave pulses through concrete because of the non-dispersive nature of the narrow-band (single frequency) effect.

Limitations: APPROVED FOR PUBLIC RELEASE
Description: Final rept. 1 Jan-30 Jun 99
Pages: 27
Report Date: 30 JUN 1999
Report Number: A209763
Keywords relating to this report:
*CONCRETE
*MAXWELLS EQUATIONS
*MICROWAVES
ELECTRIC FIELDS
ELECTRICAL CONDUCTIVITY
ELECTROMAGNETIC SUSCEPTIBILITY
FINITE DIFFERENCE THEORY
PERMEABILITY_MAGNETIC_
POLARIZATION
TIME DEPENDENCE
TIME DOMAIN
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