TY - JOUR
T1 - Underwater unidirectional acoustic transmission through a plate with bilateral asymmetric gratings
AU - Song, Ailing
AU - Chen, Tianning
AU - Wang, Xiaopeng
AU - Xi, Yanhui
AU - Liang, Qingxuan
N1 - Publisher Copyright:
© 2018 World Scientific Publishing Company.
PY - 2018/4/20
Y1 - 2018/4/20
N2 - In this paper, a novel underwater unidirectional acoustic transmission (UAT) device consisting of a plate with bilateral asymmetric gratings is proposed and numerically investigated. The transmission spectra, the acoustic intensity field distributions, and the displacement field distributions are numerically calculated based on the finite element method. The transmission spectra show that the proposed device exhibits different UAT effects in three bands. The acoustic intensity field distributions demonstrate that the proposed device can realize UAT, which agree well with the transmission spectra. The mechanism is discussed by analyzing the displacement field distributions, and the UAT is attributed to the symmetric mode excited in brass plate. Furthermore, the effects of the lattice constant, the upper slit width, and the lower slit width on bands are discussed. Our design provides a good reference for designing underwater UAT devices and has potential applications in some fields, such as medical ultrasonic devices, acoustic barrier, and noise insulation.
AB - In this paper, a novel underwater unidirectional acoustic transmission (UAT) device consisting of a plate with bilateral asymmetric gratings is proposed and numerically investigated. The transmission spectra, the acoustic intensity field distributions, and the displacement field distributions are numerically calculated based on the finite element method. The transmission spectra show that the proposed device exhibits different UAT effects in three bands. The acoustic intensity field distributions demonstrate that the proposed device can realize UAT, which agree well with the transmission spectra. The mechanism is discussed by analyzing the displacement field distributions, and the UAT is attributed to the symmetric mode excited in brass plate. Furthermore, the effects of the lattice constant, the upper slit width, and the lower slit width on bands are discussed. Our design provides a good reference for designing underwater UAT devices and has potential applications in some fields, such as medical ultrasonic devices, acoustic barrier, and noise insulation.
KW - Bilateral asymmetric gratings
KW - diffraction
KW - symmetric mode
KW - unidirectional acoustic transmission
UR - https://www.scopus.com/pages/publications/85045094679
U2 - 10.1142/S0217984918501336
DO - 10.1142/S0217984918501336
M3 - 文章
AN - SCOPUS:85045094679
SN - 0217-9849
VL - 32
JO - Modern Physics Letters B
JF - Modern Physics Letters B
IS - 11
M1 - 1850133
ER -