Please use this identifier to cite or link to this item: http://repositsc.nuczu.edu.ua/handle/123456789/22231
Title: Investigation of Diffraction of Electromagnetic Microwaves on Explosive Materials
Authors: Кулаков, Олег Вікторович
Кустов, Максим Володимирович
Басманов, Олексій Євгенович
Карпов, Артем Андрійович
Keywords: dielectric loss angle tangent
dielectric permittivity
diffraction
electric field
electromagnetic microwave
explosive material
magnetic field
reflection coefficient
transmission coefficient
wave length
wave vector
Issue Date: 9-Sep-2024
Publisher: Trans Tech Publications Ltd
Citation: Advances in Science and Technology, ISSN: 1662-0356, 2024, Vol. 156, pp 91-102. DOI: 10.4028/p-Cg2mbV
Abstract: A mathematical model of diffraction of electromagnetic microwaves on explosive materials with different physical and electromagnetic parameters has been developed. The model was constructed by solving Maxwell's equation for two surfaces separating three dielectric materials, in particular air, explosive material, and the substrate on which the explosive material is located. Different types of soil and wood are considered as the substrate material, which meets the conditions for demining large areas of the locality. The results of the numerical calculation showed that 67 % to 92 % of the energy of electromagnetic radiation is concentrated in the explosive material. In this case, trinitrotoluene, which is placed on dry sand, has the highest absorption rates, while wet wood, due to its high coefficient of dielectric permittivity, successfully transmits electromagnetic microwaves through its surface. The obtained models and numerical results are considered as theoretical basis for predicting the effectiveness of remote methods of detection and disposal of explosive materials using electromagnetic microwaves. The obtained results showed that this method will be least effective for explosive materials placed on wet wood. In this case, the lowest reflection coefficient is observed that complicates the search for explosive material and the lowest absorption coefficient that complicates the artificial detonation of explosive material due to its heating under the influence of electromagnetic microwaves
URI: http://repositsc.nuczu.edu.ua/handle/123456789/22231
ISSN: 1662-0356
Appears in Collections:Науково-технічний журнал «Техногенно-екологічна безпека» 2017

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