Runge-Kutta法,Runge-Kutta method
1)Runge-Kutta methodRunge-Kutta法
1.The mass evolvement of system with negative heat capacity in background radiation and the numerical simulation using Runge-Kutta method;背景辐射中负热容量系统的质量演化讨论及Runge-Kutta法数值模拟
2.The numerical results show that Haar wavelet method has higher efficiency in aspects of calculation time and accuracy compared with the conventional Runge-Kutta method.通过与传统的Runge-Kutta法进行比较可以看出,Haar小波方法在车桥耦合动力响应计算方面,具有计算时间少、计算准确性高的优势。
3.Then the Runge-Kutta method was used to solve the system equations.利用小波配点法对空间域进行离散,建立起对时间的常微分方程组,然后采用Runge-Kutta法对该方程组求解,从而简化了计算。
英文短句/例句

1.The Building of Runge-Kutta in Four Step Order Method of the First Category一类四阶Runge-Kutta法算法的构造
2.Runge-Kutta Method And Numerical Simulation For Pleiades Problem;Pleiades问题的Runge-Kutta法求解与其平面轨迹
3.Dissipativity of Multistep Runge-Kutta Method for Multi-delay Differential Equations多延迟微分方程多步Runge-Kutta法的散逸性
4.Stability Analysis of Runge-Kutta Methods for Linear Neutral Delay-integro-differential Equations;中立型延迟积分微分方程Runge-Kutta法的渐近稳定性
5.Stability Analysis of Continuous Runge-Kutta Methods for Nonlinear Stiff Delay Differential Equations of Neutral Type;非线性刚性中立型延迟微分方程连续Runge-Kutta法稳定性分析
6.The Research on Gauss-type Runge-Kutta Method高斯型Runge-Kutta方法研究
7.Some New Properties and Order Results of Runge-Kutta-Nystr(?)m Methods;Runge-Kutta-Nystr(?)m方法的若干新性质与阶结果
8.Multi-Symplectic Runge-Kutta Methods for Landau-Ginzburg-Higgs EquationLandau-Ginzburg-Higgs方程的多辛Runge-Kutta方法
9.Fourth Order Runge-Kutta Method with Minimized Error Constant极小化误差常数的4阶Runge-Kutta方法
10.Runge-Kutta methods for numerical solutions of stochastic ordinary differential equations随机微分方程的Runge-Kutta数值解法
11.The stability of Runge-Kutta method for the second order delay differential equations二阶延迟微分方程Runge-Kutta方法的稳定性
12.Dissipativity of Runge-Kutta Methods for Integro-Differential Equations积分微分方程Runge-Kutta方法的散逸性
13.Pouzet-Runge-Kutta Methods for Singularly Perturbed Delay-Integro-Differential Equadtions;奇异摄动延迟积分微分方程的Pouzet-Runge-Kutta方法
14.The Application of Parallel Diagonal Implicit Runge-Kutta Methods for Differential Equations;并行对角隐式Runge-Kutta算法在微分方程中的应用
15.The Study of Runge-Kutta Type Landweber Iteration for Nonlinear Ill-Posed Problems;非线性不适定算子方程的Runge-Kutta型Landweber迭代法研究
16.Diagonally Implicit Runge-Kutta Methods for Stiff Problems with Oscillatory Solutions求解刚性振荡问题的对角隐式Runge-Kutta方法
17.Runge-Kutta type iterative methods for nonlinear equations一类求解非线性问题的Runge-Kutta型迭代法(英文)
18.Order and Stability Analysis for a Class of Three-stage Diagonally-implicit Runge-Kutta Method一类三级对角隐式Runge-Kutta方法的阶与稳定性分析
相关短句/例句

Runge-KuttaRunge-Kutta法
1.The Building of Runge-Kutta in Four Step Order Method of the First Category一类四阶Runge-Kutta法算法的构造
2.Explicit Runge-Kutta method is adopted and the corresponding dynamic responses are solved.采用柔性多体系统建模方法建立了喷气织机四连杆打纬机构的微分-代数动力学控制方程组,并将其转化为常微分方程组,采用传统的显式Runge-Kutta法求解,效果较理想。
3.The dynamic model of rubber isolator was established and the effectiveness of parameter identification was validated for single load condition via both Runge-Kutta method and the curve reconstruction method.建立了橡胶减振器的动力学模型,运用Runge-Kutta法和模型曲线重构法论证了模型对单一工况参数识别的有效性。
3)Runge-Kutta methodsRunge-Kutta法
4)Runge Kutta methodRunge-Kutta法
5)Runge-Kutta algorithmRunge-Kutta算法
1.The model was solved numerically using a fourth-order Runge-Kutta algorithm and the model parameters were validated by monitoring d.为了考察生物反应器填埋场中有机物质量浓度的动态变化及其影响因素,根据质量守恒和有机物降解动力学原理,建立了填埋场渗滤液中有机物质量浓度动态变化模型,采用四阶经典Runge-Kutta算法对模型进行了求解,通过室内模拟试验数据对模型中的参数进行了率定。
2.METHODS By four stages Runge-Kutta algorithm and Microsoft Excel,the program of dosage regimen design was written on the basis of pharmacokinetic parameters.方法根据四阶Runge-Kutta算法,采用Excel软件编写基于药动学参数的给药方案设计程序。
3.Methods According to the fourstage Runge-Kutta algorithm,we used Microsoft Excel to make a program based on the pharmacokinetic parameters.方法根据四阶Runge-Kutta算法,采用Excel软件编写基于药动学参数的血药浓度近似解表格程序。
6)Runge Kutta methodRunge-Kutta方法
延伸阅读

Paschen-Runge mounting分子式:CAS号:性质:光栅光电光谱仪和真空光电光谱仪用的凹面光栅装置。狭缝、光栅及照相暗盒均固定在罗兰圆上。它们的位置可按光栅公式计算,以便得到所需波段。它的摄谱范围宽,可同时安装多个出射狭缝,以便多元素同时测定;像散小;光能传递损失少。