资源列表
AERODYN
- 这是采用Fortran语言编写的用于风力机性能预测的动量叶素理论的程序,大家可以一起研究下。-It is written using Fortran for performance prediction of wind turbine blade element momentum theory of the process, we can study together the next.
LU-SGS
- 利用时域有限差分求解CFD问题,其中差分格式为LUSGS,是求解流体问题的理论基础-Solved using finite-difference time-domain CFD problems, in which the differential form LUSGS
fem_bathe
- Bathe教授的有限元计算程序,包括子空间迭代法-Iterate method in fem field from Professor Bathe.
nextnano3_2004_08_24_source
- K.P方法计算多种量子机构的能带图,包括超晶格结构,量子阱,RTDs, MOSFETs,,高电子迁移率器件等等。-simulating quantum dots, quantum wires, quantum wells, RTDs, MOSFETs, HEMTs, etc.
tetgen
- 三维任意区域的四面体网格剖分,本代码为开源的Tetgen生成的代码,可以方便大家在三位有限元数值算例时计算复杂的区域-The tetrahedral mesh 3D any area of the code code open source Tetgen generation cases when the computational complexity of the area, you can easily three finite element numerica
huhaiyan
- <胡海岩-应用非线性动力学>全书共分8章。第1章阐述非线性动力系统的理论与实验建模方法,第2章和第3章分别介绍单自由度自治系统的定性和定量分析方法,第4章和第5章侧重于分析单自由度非自治系统和多自由度系统的非线性动力学行为。第6章介绍非线性系统的运动稳定性及分叉理论。第7章阐述混沌现象及混沌的控制。第8章阐述如何运用数值方法分析非线性动力系统的行为,特别是系统的周期运动、分叉与混沌。书末附录阐述了如何借助计算机代数软件MAPLE分析非线性动力学问题。-Book is divided
Euler.tar
- 一个非结构Euler方程的求解器,对于结构网格将点的坐标安((i=1,imax),k=1,kmax)输入后就可以了,适用于任何结构C型网格,但解法是非结构的哦!-A unstructural Euler equations solver, for unstructured grid coordinates of the point An ((i = 1, imax), k = 1, kmax) can be entered after, and apply to any structure, C
SIMPLE
- 各种流场和温度场的数值计算算法simple源程序-Flow field and temperature field numerical calculation algorithm for simple source
PROGRAM1
- 机械振动分析 的作业 自己编写关于机械振动建模 从物理模型到数学分析模型-vibration homework to establish the physical model to math model
SPH
- 用SPH方法编写的激波管程序,开发语言C-SPH method used to prepare the shock tube procedures, the development of the language C
Prony_FFT
- Prony方法,一种带吸收衰减因子的“傅立叶”变换。可直接求取信号(如地震数据)的衰减因子,用于油气预测,异常检测等。 Very usefull.-Prony method, a kind of absorption attenuation factor of the
paramesh4.0
- 做网格的好程序,PARAMESH is a package of Fortran 90 subroutines designed to provide an application developer with an easy route to extend an existing serial code which uses a logically cartesian structured mesh into a parallel code with adaptive mesh refinem