Details Details PDF BIBTEX RIS Title Acoustic Scattering of 3D Complex Systems Having Random Rough Surfaces by Scalar Integral Equations Journal title Archives of Acoustics Yearbook 2016 Volume vol. 41 Issue No 3 Authors Guel-Tapia, Juan Antonio ; Villa-Villa, Francisco ; Mendoza-Suarez, Alberto ; Pérez-Aguilar, Hector Keywords integral equations ; Helmholtz equation ; acoustic scattering Divisions of PAS Nauki Techniczne Coverage 461-472 Publisher Polish Academy of Sciences, Institute of Fundamental Technological Research, Committee on Acoustics Date 2016 Type Artykuły / Articles Identifier DOI: 10.1515/aoa-2016-0045 Source Archives of Acoustics; 2016; vol. 41; No 3; 461-472 References Tadeu (2001), Performance of the BEM solution in acoustic wave scattering, Adv Eng Soft, 32. ; Mendoza (2006), Numerical method based on the solution of integral equations for the calculation of the band structure and reflectance of one and two dimensional photonic crystals, J Opt Soc Am B, 23, 2249, doi.org/10.1364/JOSAB.23.002249 ; Jun (1985), Efficient evaluation of integrals of order using a gaussian quadrature, Eng Analysis, 2, 118, doi.org/10.1016/0264-682X(85)90014-0 ; Junger (2004), Sound structures and their Interaction MIT Press, USA. ; Mendoza (1977), Light scattering by a reentrant fractal surface, Appl Opt, 36. ; Morse (1968), Theoretical acoustics Princeton University Press, USA. ; Arfken (2013), Mathematical Methods for Physicists th edition Academic Press, USA. ; Mendoza (2015), Optical response of a photonic crystal wave guide that includes a dispersive left - handed material, Photonic Nanostruct, 14, 93, doi.org/10.1016/j.photonics.2015.02.002 ; Mendoza (2011), Optical response of a perfect conductor wave guide that behaves as a photonic crystal, Prog Electromagn Res, 121. ; Zaman (2000), A comprehensive review of boundary integral formulations of acoustic scattering problems Special Review, Sci Tech, 281. ; Mendoza (2007), Band structure of two - dimensional photonic crystals that include dispersive left - handed materials and dielectrics in the unit cell, J Opt Soc Am B, 24, 3091, doi.org/10.1364/JOSAB.24.003091 ; Hanninen (2006), Singularity substraction formulaes for surface integral equations with rwg rooftop and hybrid basis functions, Progr Electromag Res, 63. ; Li (2011), A new fast multipole boundary element method for two - dimensional acoustic problems, Comp Meth Appl Mech Eng, 200. ; Tong (2010), Novel approach for evaluating hyper singular and strongly singular surface integrals in electromagnetics, IEEE Trans Antenn Prop, 58. ; Burton (1971), The application of integral equation methods to the numerical solution of some exterior boundary - value problems, Proc Roy Soc Lond, 323. ; Mendoza (2004), Effects of wall random roughness on te and tm modes in a hollow conducting wave guide, Opt Commun, 238. ; Ursell (1973), On the exterior problems of acoustics, Proc Camb Phil Soc, 74. ; Ituraran (2007), Boundary element simulation of scattering of elastic waves by cracks, J Appl Gephys, 64. ; Piscoya (2014), Acoustical boundary elements : theory and virtual experiments Acoustics, Archives, 39. ; Perez (2013), Chaotic behavior of a quantum wave guide, Physica B, 411. ; Chowdhury (2004), scalar - formulation of IE - MEIfor acoustic scattering Antennas, IEEE Conf Soc Int Symp, 3, 2251. ; Maradudin (1990), Enhanced back scattering of light from a random grating, Ann Phys, 203. ; Huacasi (2003), A novel hyper singular formulation for three dimensional potential problems of the Braz of, Soc Mech Sci Eng, 25. ; Pointer (1998), Numerical modelling of seismic waves scattered by hydrofractures : application of indirect boundary element method, Geophys J Int, 135.