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1.
New Exact Travelling Wave Solutions to Kundu Equation   总被引:1,自引:0,他引:1  
Based on a first-order nonlinear ordinary differential equation with Six-degree nonlinear term, we first present a new auxiliary equation expansion method and its algorithm. Being concise and straightforward, the method is applied to the Kundu equation. As a result, some new exact travelling wave solutions are obtained, which include bright and dark solitary wave solutions, triangular periodic wave solutions, and singular solutions. This algorithm can also be applied to other nonlinear evolution equations in mathematical physics.  相似文献   

2.
In terms of the solutions of an auxiliary ordinary differential equation, a new algebraic method, which contains the terms of first-order derivative of functions f(ξ), is constructed to explore the new solitary wave solutions for nonlinear evolution equations. The method is applied to a compound KdV-Burgers equation, and abundant new solitary wave solutions are obtained. The algorithm is also applicable to a large variety of nonlinear evolution equations.  相似文献   

3.
A New Approach to Solve Nonlinear Wave Equations   总被引:3,自引:0,他引:3  
From the nonlinear sine-Gordon equation, new transformations are obtained in this paper, which are applied to propose a new approach to construct exact periodic solutions to nonlinear wave equations. It is shown that more new periodic solutions can be obtained by this new approach, and more shock wave solutions or solitary wave solutions can be got under their limit conditions.  相似文献   

4.
Volterra差分微分方程和KdV差分微分方程新的精确解   总被引:2,自引:0,他引:2       下载免费PDF全文
辅助方程法和试探函数法为基础,给出函数变换与辅助方程相结合的一种方法,借助符号计算系统Mathematica构造了Volterra差分微分方程和KdV差分微分方程新的精确孤立波解和三角函数解.该方法也适合求解其他非线性差分微分方程的精确解. 关键词: 辅助方程 函数变换 非线性差分微分方程 孤立波解  相似文献   

5.
Using trial equation method, abundant exact envelope traveling wave solutions of high-order dispersive cubic-quintic nonlinear Schr6dinger equation, which include envelope soliton solutions, triangular function envelope solutions, and Jacobian elliptic function envelope solutions, are obtained. To our knowledge, all of these results are new. In particular, our proposed method is very simple and can be applied to a lot of similar equations.  相似文献   

6.
陆斌  张鸿庆 《中国物理 B》2008,17(11):3974-3984
In this paper, a new auxiliary equation method is presented of constructing more new non-travelling wave solutions of nonlinear differential equations in mathematical physics, which is direct and more powerful than projective Riccati equation method. In order to illustrate the validity and the advantages of the method, (2+1)-dimensional asymmetric Nizhnik-Novikov-Vesselov equation is employed and many new double periodic non-travelling wave solutions are obtained. This algorithm can also be applied to other nonlinear differential equations.  相似文献   

7.
具5次强非线性项的波方程新的孤波解   总被引:11,自引:1,他引:10       下载免费PDF全文
提出一种新的函数变换法,并与直接积分法相结合简便地求出了Lienard方程、广义PC方程以及力学中重要的一类非线性波方程等几类具5次强非线性项的波方程的四类显示精确孤波解.本方法同样适用于求解其他具有更高次非线性项的非线性方程. 关键词: 函数变换法 孤波解 直接积分法 非线性波方程  相似文献   

8.
朱加民  郑春龙  马正义 《中国物理》2004,13(12):2008-2012
A general mapping deformation method is applied to a generalized variable coefficient KdV equation. Many new types of exact solutions, including solitary wave solutions, periodic wave solutions, Jacobian and Weierstrass doubly periodic wave solutions and other exact excitations are obtained by the use of a simple algebraic transformation relation between the generalized variable coefficient KdV equation and a generalized cubic nonlinear Klein-Gordon equation.  相似文献   

9.
用Riccati方程构造非线性差分微分方程新的精确解   总被引:3,自引:0,他引:3       下载免费PDF全文
把Riccati方程应用到非线性差分微分方程求解领域,并相结合与一种函数变换,借助符号计算系统Mathematica构造了修正的Volterra方程和一般格子方程新的精确孤立波解和三角函数解. 关键词: Riccati方程 函数变换 非线性差分微分方程 孤立波解  相似文献   

10.
非线性波方程求解的新方法   总被引:30,自引:0,他引:30       下载免费PDF全文
从Legendre椭圆积分和Jacobi椭圆函数的定义出发,得到了新的变换,并把它用于非线性演化方程的求解.用三个具体的例子,如非线性Klein-Gordon方程、Boussinesq方程和耦合的mKdV方程组,说明了具体的求解步骤.比较方便地得到非线性演化方程或方程组的新解析解,如周期解、孤子解等. 关键词: Jacobi椭圆函数 非线性方程 周期解 孤子解  相似文献   

11.
一类非线性演化方程的新多级准确解   总被引:5,自引:0,他引:5       下载免费PDF全文
付遵涛  刘式适  刘式达 《物理学报》2003,52(12):2949-2953
在Lamé方程和新的Lamé函数的基础上,应用小扰动方法和Jacobi椭圆函数展开法求解一类非线性演化方程(如mKdV方程,非线性Klein-Gordon方程Ⅱ等),获得多种新的多级准确解 .这些多级准确解对应着不同形式的周期波解.这些解在极限条件下可以退化为多种形式的孤 立波解,如带状孤立子、钟形孤立子等. 关键词: Jacobi椭圆函数 Lam函数 多级准确解 非线性演化方程 扰动方法  相似文献   

12.
李画眉 《中国物理》2002,11(11):1111-1114
An extended mapping deformation method is proposed for finding new exact travelling wave solutions of nonlinear partial differential equations (PDEs). The key idea of this method is to take full advantage of the simple algebraic mapping relation between the solutions of the PDEs and those of the cubic nonlinear Klein-Gordon equation. This is applied to solve a system of variant Boussinesq equations. As a result, many explicit and exact solutions are obtained, including solitary wave solutions, periodic wave solutions, Jacobian elliptic function solutions and other exact solutions.  相似文献   

13.
非线性长波方程组和Benjamin方程的新精确孤波解   总被引:5,自引:0,他引:5       下载免费PDF全文
在齐次平衡法、双曲正切函数法和辅助方程法的基础上引入一个新的辅助方程,并借助符号计算系统Mathematica来构造了非线性长波方程组和Benjamin方程的新精确孤波解, 这种方法也可用于寻找其他非线性发展方程的新的孤波解. 关键词: 新的辅助方程 非线性长波方程组 Benjamin方程 孤波解  相似文献   

14.
陈怀堂  张鸿庆 《中国物理》2003,12(11):1202-1207
A new generalized Jacobi elliptic function method is used to construct the exact travelling wave solutions of nonlinear partial differential equations (PDEs) in a unified way. The main idea of this method is to take full advantage of the elliptic equation which has more new solutions. More new doubly periodic and multiple soliton solutions are obtained for the generalized (3+1)-dimensional Kronig-Penny (KP) equation with variable coefficients. This method can be applied to other equations with variable coefficients.  相似文献   

15.
Computer Algebra and Solutions to the Karamoto-Sivashinsky Equation   总被引:1,自引:0,他引:1  
The method of Riccati equation is extended for constructing travelling wave solutions of nonlinear partial differential equations. It is applied to solve the Karamoto-Sivashinsky equation and then its more new explicit solutions have been obtained. From the results given in this paper, one can see the computer algebra plays an important role in this procedure.  相似文献   

16.
Some new exact travelling wave and period solutions of discrete nonlinear Schrödinger equation are found by using a hyperbolic tangent function approach, which was usually presented to find exact travelling wave solutions of certain nonlinear partial differential models. Now we can further extend the new algorithm to other nonlinear differential-different models.  相似文献   

17.
A generalized F-expansion method is introduced and applied to (3+1 )-dimensional Kadomstev-Petviashvili(KP) equation. As a result, some new Jacobi elliptic function solutions of the equation are found, from which the trigonometric function solutions and the solitary wave solutions can be obtained. The method can also be extended to other types of nonlinear evolution equations in mathematical physics.  相似文献   

18.
A generalized F-expansion method is introduced and applied to (3 1)-dimensional Kadomstev-Petviashvili(KP) equation. As a result, some new Jacobi elliptic function solutions of the equation are found, from which the trigonometric function solutions and the solitary wave solutions can be obtained. The method can also be extended to other types of nonlinear evolution equations in mathematical physics.  相似文献   

19.
Solving Nonlinear Wave Equations by Elliptic Equation   总被引:5,自引:0,他引:5  
The elliptic equation is taken as a transformation and applied to solve nonlinear wave equations. It is shown that this method is more powerful to give more kinds of solutions, such as rational solutions, solitary wave solutions,periodic wave solutions and so on, so it can be taken as a generalized method.  相似文献   

20.
An extended hyperbola function method is proposed to construct exact solitary wave solutions to nonlinear wave equation based upon a coupled Riccati equation. It is shown that more new solitary wave solutions can be found by this new method, which include kink-shaped soliton solutions, bell-shaped soliton solutions and new solitary wave.The new method can be applied to other nonlinear equations in mathematical physics.  相似文献   

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