Breather Wave Solutions for the (3+1)-D Generalized Shallow Water Wave Equation with Variable Coefficients
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[1] M. Gorji,et al. Lumps and interactions, fission and fusion phenomena in multi solitons of extended Shallow Water Wave Equation of (2+1)-dimensions , 2023, Chaos, Solitons & Fractals.
[2] Binzhen Zhou,et al. Experimental study on the interactions between wave groups in double-wave-group focusing , 2023, Physics of Fluids.
[3] Syed Maqsood Zia,et al. Bilinear method and semi-inverse variational principle approach to the generalized (2+1)-dimensional shallow water wave equation , 2023, Results in Physics.
[4] D. Ning,et al. Wave attenuation and amplification by an abreast pair of floating parabolic breakwaters , 2023, Energy.
[5] J. Manafian,et al. Different forms of optical soliton solutions to the Kudryashov’s quintuple self-phase modulation with dual-form of generalized nonlocal nonlinearity , 2023, Results in Physics.
[6] Qifeng Zhang,et al. The energy method for high-order invariants in shallow water wave equations , 2023, Appl. Math. Lett..
[7] T. Sulaiman,et al. Propagation of M-truncated optical pulses in nonlinear optics , 2022, Optical and Quantum Electronics.
[8] T. Sulaiman,et al. On the study of optical soliton solutions to the three-component coupled nonlinear Schrödinger equation: applications in fiber optics , 2022, Optical and Quantum Electronics.
[9] D. Ning,et al. Power performance and motion response of a floating wind platform and multiple heaving wave energy converters hybrid system , 2022, Energy.
[10] H. Rezazadeh,et al. On the multiple explicit exact solutions to the double‐chain DNA dynamical system , 2022, Mathematical Methods in the Applied Sciences.
[11] Wei Jiang,et al. Optimal economic scheduling of microgrids considering renewable energy sources based on energy hub model using demand response and improved water wave optimization algorithm , 2022, Journal of Energy Storage.
[12] Li Zhen. Research on mathematical teaching innovation strategy and best practices based on deep learning algorithm , 2022, Journal of Commercial Biotechnology.
[13] Onur Alp Ilhan,et al. A Mathematical Study of the (3+1)-D Variable Coefficients Generalized Shallow Water Wave Equation with Its Application in the Interaction between the Lump and Soliton Solutions , 2022, Mathematics.
[14] U. Younas,et al. Construction of optical pulses and other solutions to optical fibers in absence of self-phase modulation , 2022, International Journal of Modern Physics B.
[15] M. S. Ullah,et al. Application of the unified method to solve the Biswas-Arshed model , 2022, Results in Physics.
[16] A. Yokuş,et al. Stability analysis and solutions of (2 + 1)-Kadomtsev–Petviashvili equation by homoclinic technique based on Hirota bilinear form , 2022, Nonlinear Dynamics.
[17] N. Ghadimi,et al. Optimal modeling of combined cooling, heating, and power systems using developed African Vulture Optimization: a case study in watersport complex , 2022, Energy Sources, Part A: Recovery, Utilization, and Environmental Effects.
[18] Lili Ren,et al. Polymer types regulation strategy toward the synthesis of carbonized polymer dots with excitation-wavelength dependent or independent fluorescence , 2022, Chinese Chemical Letters.
[19] N. Ghadimi,et al. Optimal model evaluation of the proton-exchange membrane fuel cells based on deep learning and modified African Vulture Optimization Algorithm , 2022, Energy Sources, Part A: Recovery, Utilization, and Environmental Effects.
[20] Yupei Du,et al. A Practical and Economical Ultra-wideband Base Station Placement Approach for Indoor Autonomous Driving Systems , 2022, Journal of Advanced Transportation.
[21] M. S. Ullah,et al. Collision phenomena between lump and kink wave solutions to a (3+1)- dimensional Jimbo–Miwa-like model , 2022, Partial Differential Equations in Applied Mathematics.
[22] Zhong-Zhou Lan,et al. Novel trial functions and rogue waves of generalized breaking soliton equation via bilinear neural network method , 2022, Chaos, Solitons & Fractals.
[23] S. Duran. An investigation of the physical dynamics of a traveling wave solution called a bright soliton , 2021, Physica Scripta.
[24] Zixuan Feng,et al. Design and Simulation of Human Resource Allocation Model Based on Double-Cycle Neural Network , 2021, Comput. Intell. Neurosci..
[25] Junchao Chen,et al. A new class of nonlinear superposition between lump waves and other waves for Kadomtsev-Petviashvili I equation , 2021, Commun. Nonlinear Sci. Numer. Simul..
[26] D. Kaya,et al. Breaking analysis of solitary waves for the shallow water wave system in fluid dynamics , 2021, The European Physical Journal Plus.
[27] Zhong-Zhou Lan,et al. Generalized lump solutions, classical lump solutions and rogue waves of the (2+1)-dimensional Caudrey-Dodd-Gibbon-Kotera-Sawada-like equation , 2021, Appl. Math. Comput..
[28] Y. Ling,et al. Tuning the shell thickness of core-shell α-Fe2O3@SiO2 nanoparticles to promote microwave absorption , 2021, Chinese Chemical Letters.
[29] M. Mehrpooya,et al. Numerical investigation of a new combined energy system includes parabolic dish solar collector, Stirling engine and thermoelectric device , 2021, International Journal of Energy Research.
[30] Harun-Or-Roshid,et al. Novel dynamics of wave solutions for Cahn–Allen and diffusive predator–prey models using MSE scheme , 2021 .
[31] Md Fazlul Hoque,et al. Collision phenomena among lump, periodic and stripe soliton solutions to a (2 + 1)-dimensional Benjamin–Bona–Mahony–Burgers Model , 2021, The European Physical Journal Plus.
[32] Mahdi Mir,et al. Application of hybrid forecast engine based intelligent algorithm and feature selection for wind signal prediction , 2020, Evol. Syst..
[33] Vahid Nourani,et al. An integrated simulation-optimization framework to optimize the reservoir operation adapted to climate change scenarios , 2020 .
[34] S. Duran. Exact Solutions for Time-Fractional Ramani and Jimbo—Miwa Equations by Direct Algebraic Method , 2020 .
[35] Onur Alp Ilhan,et al. M lump and interaction between M lump and N stripe for the third-order evolution equation arising in the shallow water , 2020, Advances in Difference Equations.
[36] D. Lu,et al. Propagation of kink and anti-kink wave solitons for the nonlinear damped modified Korteweg–de Vries equation arising in ion-acoustic wave in an unmagnetized collisional dusty plasma , 2020 .
[37] Tao Zhang,et al. Energy management of wind-PV-storage-grid based large electricity consumer using robust optimization technique , 2020 .
[38] Karzan Wakil,et al. Optimal bidding and offering strategies of compressed air energy storage: A hybrid robust-stochastic approach , 2019 .
[39] Aly R. Seadawy,et al. Applications of propagation of long-wave with dissipation and dispersion in nonlinear media via solitary wave solutions of generalized Kadomtsev-Petviashvili modified equal width dynamical equation , 2019, Comput. Math. Appl..
[40] Huanhe Dong,et al. Lump Solutions and Interaction Solutions for the Dimensionally Reduced Nonlinear Evolution Equation , 2019, Complex..
[41] Aly R. Seadawy,et al. Nonlinear wave solutions of the Kudryashov–Sinelshchikov dynamical equation in mixtures liquid-gas bubbles under the consideration of heat transfer and viscosity , 2019, Journal of Taibah University for Science.
[42] Jian‐Guo Liu,et al. Characteristics of lump solutions to a (3 + 1)-dimensional variable-coefficient generalized shallow water wave equation in oceanography and atmospheric science , 2019, The European Physical Journal Plus.
[43] Jian-Guo Liu,et al. Breather wave solutions for the generalized shallow water wave equation with variable coefficients in the atmosphere, rivers, lakes and oceans , 2019, Comput. Math. Appl..
[44] D. Lu,et al. Applications of nonlinear longitudinal wave equation in a magneto-electro-elastic circular rod and new solitary wave solutions , 2019, Modern Physics Letters B.
[45] Runfa Zhang,et al. Bilinear neural network method to obtain the exact analytical solutions of nonlinear partial differential equations and its application to p-gBKP equation , 2019, Nonlinear Dynamics.
[46] Noradin Ghadimi,et al. Robust optimization based optimal chiller loading under cooling demand uncertainty , 2019, Applied Thermal Engineering.
[47] M. Abdelrahman,et al. On the Shallow Water Equations , 2017 .
[48] Rui Liu,et al. Some new nonlinear wave solutions for two (3+1)-dimensional equations , 2015, Appl. Math. Comput..
[49] Wenxiu Ma,et al. Bilinear equations, Bell polynomials and linear superposition principle , 2013 .
[50] Mohammad Taghi Darvishi,et al. Application of Multiple Exp-Function Method to Obtain Multi-Soliton Solutions of (2 + 1)- and (3 + 1)-Dimensional Breaking Soliton Equations , 2012 .
[51] Khaled A. Gepreel,et al. The (G′/G)-expansion method for finding traveling wave solutions of nonlinear partial differential equations in mathematical physics , 2009 .
[52] H. Roshid,et al. Optical soliton solutions to the Fokas–Lenells model applying the ' 6 ‑model expansion approach , 2023 .
[53] N. Ghadimi,et al. Model identification of proton-exchange membrane fuel cells based on a hybrid convolutional neural network and extreme learning machine optimized by improved honey badger algorithm , 2022, Sustainable Energy Technologies and Assessments.
[54] M. Ali Akbar,et al. Soliton solutions and fractional effects to the time-fractional modified equal width equation , 2022, Alexandria Engineering Journal.
[55] R. A. Moghadam. Design and Analysis of a Torsional Mode MEMS Disk Resonator for RF Applications , 2021 .
[56] Kaibo Shi,et al. State Damping Control: A Novel Simple Method of Rotor UAV With High Performance , 2020, IEEE Access.
[57] Yi-Tian Gao,et al. Bilinear Bäcklund transformation, soliton and periodic wave solutions for a ( 3 + 1 ) -dimensional variable-coefficient generalized shallow water wave equation , 2016 .
[58] W. Ma. Generalized Bilinear Differential Equations , 2012 .
[59] M. Najafi,et al. Some New Exact Solutions of the (3+1)-dimensional Breaking Soliton Equation by the Exp-function Method , 2011 .