TY - JOUR
T1 - Multiple rogue waves solutions for a (3 + 1)-dimensional nonlinear wave in liquid with gas bubbles via Hirota bilinear equation method
AU - Awad, Mohamed M.
AU - Elsadany, A. A.
AU - Elboree, Mohammed K.
N1 - Publisher Copyright:
© 2025
PY - 2025/12
Y1 - 2025/12
N2 - In this study, we employ a symbolic computation approach to construct various rogue wave solutions of the (3+1)-dimensional nonlinear wave equation modeling wave propagation in a liquid medium containing gas bubbles. Through the application of the Hirota bilinear method, we systematically derive first-order, second-order, and third-order rogue wave solutions. By selecting appropriate parameter values, we generate graphical illustrations that reveal the structural features and interaction dynamics of these rogue waves. A variety of soliton solutions were obtained from the analysis. Upon plotting these solutions, several rogue wave solutions emerged and periodic waveforms. These results are visually represented through two-dimensional, three-dimensional, and contour plots to highlight the different features and behaviors of each solution. The analysis enhances our understanding of rogue wave behavior within the context of the modeled physical system.
AB - In this study, we employ a symbolic computation approach to construct various rogue wave solutions of the (3+1)-dimensional nonlinear wave equation modeling wave propagation in a liquid medium containing gas bubbles. Through the application of the Hirota bilinear method, we systematically derive first-order, second-order, and third-order rogue wave solutions. By selecting appropriate parameter values, we generate graphical illustrations that reveal the structural features and interaction dynamics of these rogue waves. A variety of soliton solutions were obtained from the analysis. Upon plotting these solutions, several rogue wave solutions emerged and periodic waveforms. These results are visually represented through two-dimensional, three-dimensional, and contour plots to highlight the different features and behaviors of each solution. The analysis enhances our understanding of rogue wave behavior within the context of the modeled physical system.
KW - (3 + 1)-dimensional nonlinear wave in liquid with gas bubbles
KW - Bilinear form
KW - Rogue waves
KW - Symbolic computation approach
UR - https://www.scopus.com/pages/publications/105017158970
U2 - 10.1016/j.exco.2025.100202
DO - 10.1016/j.exco.2025.100202
M3 - Article
AN - SCOPUS:105017158970
SN - 2666-657X
VL - 8
JO - Examples and Counterexamples
JF - Examples and Counterexamples
M1 - 100202
ER -