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1)  normal plane method
法、密平面法
2)  plane wave expansion method
平面波法
1.
The plane wave expansion method was employed to calculate the band gap structures of 2D triangular lattice phononic crystal composed of elliptical steel cylinders embedded in epoxy matrix.
用平面波法研究了椭圆钢柱与环氧树脂组成的二维三角晶格声子晶体的带隙结构。
2.
The plane wave expansion method was employed to calculate the band gap structures of two-dimensional phononic crystals composed of elliptical steel cylinders embedded in epoxy matrix.
用平面波法计算了椭圆钢柱与环氧树脂组成的二维正方晶格声子晶体的带隙结构。
3.
The plane wave expansion method was employed to calculate the band gap structures of 3D simple cubic lattice phononic crystal composed of elliptical steel cylinders embedded in epoxy matrix.
用平面波法研究了椭圆钢柱与环氧树脂组成的三维简立方晶格声子晶体的带隙结构。
3)  plane wave method
平面波法
1.
The bandgap structure of one-dimensional photonic crystal was calculated and derived with the plane wave method(PWM).
采用平面波法(PWM)计算一维光子晶体的带隙结构。
2.
The influences of the wave vectors off the periodic plane on the distribution of energy bands of triangular,honeycomb and square lattices are analyzed by plane wave method.
利用平面波法分析了由介电常数为13和1的两种介质分别构成圆形柱和背景组成的三角晶格、蜂巢状晶格和正方晶格,波矢偏离周期性平面对它们能带分布及应用的影响。
3.
With plane wave method,it is proved that the 1D-USPC shares the same bandgap character.
利用平面波法证明了一维超声光子晶体具有一般一维周期层叠结构光子晶体的禁带特征。
4)  PWM
平面波法
1.
An analysis on the band gap of 2D photonic crystal(PC) infiltrated with liquid crystal is presented by using the plane-wave expansion method(PWM).
利用平面波法分析了二维液晶光子晶体的带隙结构,着重对三角形和正方形空气孔光子晶体带隙随液晶旋转角的变化情况进行了分析和比较。
5)  normal plane
法平面
6)  magnetic plan
磁法平面
补充资料:法密部
【法密部】
 (流派)同法藏部。
说明:补充资料仅用于学习参考,请勿用于其它任何用途。
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