磁矢量的英文
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"磁矢量"怎么读用"磁矢量"造句
英文翻译手机版
- magnetic vector
- "磁"英文翻译 squeak; chirp; peep
- "矢量"英文翻译 vector; complexor
- "横磁矢量" 英文翻译 : transverse magnetic vector
- "磁矢势" 英文翻译 : magnetic potential
- "电磁矢势" 英文翻译 : electromagnetic vector potential
- "矢量" 英文翻译 : [数学] [物理学] vector; complexor◇矢量分析 vector analysis; 矢量空间 vector space; 矢量图 vectogram; vector diagram; arrow diagram
- "并矢量" 英文翻译 : dyad
- "波矢量" 英文翻译 : wave vector
- "补矢量" 英文翻译 : complement vector
- "场矢量" 英文翻译 : field vector
- "等矢量" 英文翻译 : isovector
- "点矢量" 英文翻译 : point vector
- "电矢量" 英文翻译 : electric vector
- "分矢量" 英文翻译 : component of a vector; resolute; vector component
- "风矢量" 英文翻译 : wind vector
- "负矢量" 英文翻译 : negative vector
- "光矢量" 英文翻译 : light vector
- "合矢量" 英文翻译 : resultant vector; vectorial resultant
- "基矢量" 英文翻译 : base vector
- "极矢量" 英文翻译 : polar vector
- "键矢量" 英文翻译 : bond vector
- "力矢量" 英文翻译 : force vector; vector of force
- "列矢量" 英文翻译 : column vector
- "零矢量" 英文翻译 : null vector; zero vector; zero-vector
- "切矢量" 英文翻译 : tangent vector
例句与用法
- In this thesis , studies are made on the problem of time - harmonic electromagnetic fields excited by an arbitrary current dipole in spherical conductor . the problem is presented in eddy - current nondestructive test and geophysical prospecting . under the condition of magnetic quasi - static state , the boundary - value problem about modified magnetic vector potential is solved and the analytical solution is obtained
本论文针对涡流无损检测和地球物理勘探领域用到的球导体中时谐电流元的电磁问题做了研究,在磁准静态近似下,求解了修正磁矢量位的边值问题,获得了问题的解析解,并利用通用有限元分析软件做了数值验证。 - Firstly , in spherical coordinate system , the sovp formulation for the time - harmonic electromagnetic fields of the current dipole in conductive infinite - space is derived , using reciprocity theorem and transforming relations between special functions . then , selecting appropriate coordinate system , using superposition principle , the boundary - value problem of modified magnetic vector potential on the problem of a time - harmonic current dipole in spherical conductor is solved and analytical solution is obtained . finally , by means of the addition formulas of legendre polynomial and spherical harmonics function of degree n and order 1 , the analytical solution in spherical coordinate system specially located is transformed into that in spherical coordinate system arbitrarily located
首先利用特殊函数间的转化关系和互易定理推导得到了无限大导体空间中球坐标下时谐电流元电磁场的二阶矢量位形式:然后利用叠加原理,选择合适坐标系,求解了导体球中时谐电流元的修正磁矢量位边值问题,得到了问题的解析解;最后依据不同坐标系下电磁场解的转化原理,借助勒让德多项式和n次1阶球谐函数的加法公式,将坐标系特殊安放时的电磁场解析解变换到坐标系一般安放时的解析解,给出了球内电场和球外磁场的并矢格林函数。 - The addition formula of spherical harmonics function of degree n and order 1 is derived using the relations between coordinate varieties after coordinate rotating and the property of the associated legendre polynomial . the relations among the magnetic vector potential , the modified magnetic vector potential and the second - order vector potential ( sovp ) are shown going forward one by one . it is explained that the solutions of electromagnetic fields in different coordinate systems can be transformed and an example having analytical solution is given
利用坐标旋转后球坐标变量间的关系和连带勒让德多项式的性质推导得到了n次1阶球谐函数的加法公式;以递进的方式说明磁矢量位、修正磁矢量位与二阶矢量位的关系,写出了引入二阶矢量位的过程;以时谐场矢量边值问题为例,阐明了不同坐标系下电磁场解的相互转化原理,给出了一个解析解的转化例子;在球坐标下,引入了较球矢量波函数更普遍的两类矢量函数,给出了其在球面上的正交关系。 - From the model , we can solve and gain the values and change orders of charging current , charging voltage , discharging current , discharging voltage and inductive current . after that , the electromagnetic fields can be created from two circuits " currents , and their magnetic rector and flux can be simulated from ansys solver
用ansys multiphysics模块求解出充电电流、充电电压、放电电流、放电电压和感应电流以及这些参数随时间变化的规律:然后利用两个回路的电流耦合出电磁场,并仿真出磁矢量、磁通密度。
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