龙格库塔,runge-kutta
1)runge-kutta龙格库塔
1.The recurrence formula was constituted using the algorithm of the fourth-order Runge-Kutta method.通过分析得出非线性水库方程的一般格式,运用四阶龙格库塔算法建立求解数值解的递推关系式,并且通过变步长链提高算法的效率,保证递推关系式的收敛和稳定。
英文短句/例句

1.Improved Multi-resolution Time Method in Two-dimension Photonic Crystal二维光子晶体的龙格库塔多分辨分析
2.Computation of the Eigenvalues of the Schr(?)dinger Equation by Symplectic Partitioned Runge-Kutta Methods辛块龙格库塔方法在薛定谔方程数值解研究中的应用
3.Diagonally-Implicit Runge-Kutta Methods and Its Exponential Fitting;对角隐式龙格—库塔法及其指数拟合
4.Research on the Numerical Results of Runge-Kutta Method of 2-freedom Linear System;二自由度线性系统龙格-库塔解法的研究
5.General Purpose Simulation Program Based on Runge-Kutta Method for Linear Control System;基于龙格—库塔法的线性控制系统通用仿真程序
6.The Application of Runge-kutta Method to Radar Ray Tracing龙格-库塔方法在雷达射线描迹中的应用
7.Application of the Runge-Kutta Algorithm in Real-time Estimating Aerocraft Fall Point“龙格—库塔”算法在航天器实时落点计算中的应用
8.Characterizations and Construction of Symplectic and Symmetric Multi-revolution Implicit Runge-Kutta Methods of High Order;高阶隐式辛和对称的多旋转龙格—库塔方法的特征与构造
9.RKCVDFEM for One-dimensional Hyperbolic Conservation Laws一维双曲守恒律的龙格-库塔控制体积间断有限元方法
10.method of runge kutta type朗格 库塔型的方法
11.In view of fourth-oder Runge-Kutta Method,a way of obtaining an optimum stepsize is Presented, which can assure the accuracy and stability of convergence.针对四阶龙格—库塔法,提出能保证精度及收敛稳定性的步长的求测方法.
12.The numerical values of the one order differential equations are obtained by Runge-Kutta method with variable step.软件采用了变步长的经典龙格—库塔方法求解一阶微分方程组的数值解。
13.The Characteristics and Style of Sculpture of Sheli Pagoda Nago in Qixia Temple of Nanjing;南京栖霞寺舍利塔龙纹造像的特点与风格
14.SUCCESSION OF THE CAMBRIAN TRILOBITE FAUNAS IN KURUKTAG, XINJIANG新疆库鲁克塔格寒武纪三叶虫动物群序列
15.SOME EARLY CAMBRIAN TRILOBITES FROM THE XIDASHAN FORMATION OF KURUKTAG, XINJIANG新疆库鲁克塔格早寒武世西大山组的三叶虫
16.Morphologic parameters of“featherlike longitudinal ridge”of Kumtag Desert;库姆塔格沙漠“羽毛状沙丘”形态的示量特征
17.THE MATCHING RELATIONSHIP BETWEEN STRUCTURAL DEFORMATION STAGE AND HYDROCARBON GENERATION STAGE IN EASTERN QIULITAGE TECTONIC BELT OF KUQA DEPRESSION库车东秋里塔格构造变形期与生烃期匹配关系
18.Characteristics of Sand Granularity from Kumtag Desert and Its Environmental Significance库姆塔格沙漠粒度分布特征及环境意义
相关短句/例句

Runge-Kutta龙格-库塔
1.The paper has brought out functions of the reentry trajectory of TBM in case of the predigest model of atmosphere and solved them by the Runge-Kutta method.文中在简化的大气模型下建立TBM的再入段方程,并采用龙格-库塔法来求解,通过仿真,可以看出模型符合仿真需要。
3)Runge-Kutta龙格-库塔法
1.A Simple Application of Runge-kutta in Fuzzy Control;龙格-库塔法在模糊控制中的优化应用
2.The Improvement of the Variational Step Method Based on Runge-Kutta;基于龙格-库塔法的变步长策略改进
3.The 4th order Runge-Kutta and differential approaches combined with spline or polynomial fit were used to work out these parameters, and the effects of deviation and amount of experimental data on the calculated results were analyzed in detail.阐述了四阶龙格-库塔法、样条插值和多项式拟合的微分法等,求解动力学参数的原理和步骤。
4)Runge-Kutta method龙格-库塔法
1.How to use Runge-Kutta method to resolve second-order ordinary differential equation of electrochemistry is presented with the source code of Visual Basic 6.该文采用龙格-库塔法求解,给出了模拟电化学二阶线性常微分方程求解方法及VB 6。
2.Four-order-Runge-Kutta method is used to compute the differential equations.该软件中对微分方程组的求解采用四阶龙格-库塔法。
3.In order to research the factors which influence the sliding behavior of active fault,the single degree freedom of springblock model and the rate-state dependent friction law are introduced,the static force equation of spring-block is built,and the Runge-Kutta method is used to solve the nonlinear equations.为进一步探索活动断层滑动性质及断层系统演化过程的影响因素,基于单自由度弹簧-滑块模型,引入速率-状态依赖摩擦本构关系,建立了单自由度弹簧-滑块系统的静力平衡方程,采用龙格-库塔法解非线性方程组,重点研究了滑动速率及系统刚度对断层滑动性质、系统演化过程的影响。
5)Runge-Kutta龙格库塔法
1.The characteristic method and the classical Runge-Kutta method were adopted for simulation.计算方法采用带内插的特征线方法和四阶龙格库塔法。
6)Runge-Kutta Method龙格库塔法
1.The difference of Runge-Kutta method, the method of multiple scales, the first method of interpolate perturbation, the.分析了龙格库塔法、多尺度法、插值摄动第一法、插值摄动第二法等4种方法在计算一类非线性振动问题时的差异,给出了每一种方法对应的时程图和相位图,编写了每种方法的Matlab程序。
延伸阅读

龙格-库塔法  见常微分方程初值问题数值解法。