元电流
- elementary current
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设计制作了中心场磁感应强度为3T的200A二元电流引线;
A200A binary current lead with a central magnetic induction strength of3T is designed .
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提出一种双种群遗传算法(DPGA)优化阵元电流幅度,以实现对阵列天线方向图的综合。
A double population genetic algorithm ( DPGA ) is presented and applied to synthesize the array antenna pattern by controlling only the current amplitudes .
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荧光显示基元电流分配系数的理论计算
Theoretical Calculation of Current Distributive Coefficient of Fluorescent Display Units
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二元电流引线是制冷机直接冷却低温超导磁体系统的关键技术之一。
The optimization of binary current leads is one of the key technology in the low temperature superconducting magnet system directly cooled by refrigerator .
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认为大电流运行下,传导热等于焦耳热的一半时,在二元电流连接点的热流最小。
When conductance heat is equal to half of Joule heat , the thermal flux at joint of binary current leads is minimum at large operating current .
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在使用矩量法的过程中,采用基于三角面元的RWG电流基函数;
The Rao-Wilton-Glisson basis function based on triangular patches is used in the moment method .
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线电流元和面电流元近区场的简化计算
Simplified calculations for near zone fields of linear current units and surface current patches
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利用Hamilton原理和有限元方法推导了电流变夹层梁的动力学方程。
Based on the Hamilton 's principle and finite element methodFEM the equations of motion of beam are derived .
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研究了基于矢量电位T的三维有限元法及源电流的T0表示方法,根据变压器绕组的特点,提出一种计算变压器绕组区T0的简单方法,并用于一台电力变压器漏磁场的计算。
The method of expressing source current by T_0 is also studied . By taking features of transformer windings , a simple method to compute T_0 in transformer winding regions is given . The method is used in calculating leakage field of a power transformer .
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δ-函数源对有限元计算线天线电流分布的影响
Effect of the Delta - Function Generator on Finite Element Calculations of Current Distributions on Wire Antennas
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本文以圆柱天线为计算对象,通过数值验证,分析研究δ-函数源对有限元计算线天线电流分布的影响。
The effect of the delta-function generator on finite element calculations of current distributions on wire antennas is investigated by means of analysis of the current distribution on a cylindrical antenna .
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为研究等离子体激元共振时这种奇异现象,我们计算了纳米粒子表面等离子体激元电流密度,电流方向是电磁场实部的方向,振幅是电磁场的模。
To further explore the mechanism of the surface plasmon resonance , the generated plasmon current density is calculated . The vector directions are determined by the real part of the electric field and the amplitude is the module of the electric field .