1) generalized diffraction integral
广义衍射积分方法
2) general diffraction integration
广义衍射积分
1.
By using the general diffraction integration method,the transformation property of Bessel-Gaussian(BG) beam in a fractional Fourier plane was studied,and closed-form transformation expression was derived for the BG beam through the LohmannⅡ optical system.
利用广义衍射积分方法,研究了Bessel-Gaussian(BG)光束的分数傅里叶变换特性,推导出了BG光束通过分数傅里叶变换光学系统后,光场分布的解析公式,利用该公式对BG光束经分数傅里叶变换后光强的分布规律进行了数值分析。
3) Generalized quadrature rule
广义积分方法
4) generalized differential quadrature method
广义微分积分方法
1.
Applying the generalized differential quadrature method(GDQ),the numerical simulation is made.
并采用广义微分积分方法(GDQ)来进行数值模拟。
2.
We use the generalized differential quadrature method(GDQ) to make the numerical simulation of flow field and verify the new model by the direct simulation of Monte Carlo approach(DSMC).
采用广义微分积分方法(GDQ)进行流场数值模拟,并用蒙特卡洛直接模拟方法(DSMC)来加以验证。
5) generalized Huygens-Fresnel diffraction integral
广义惠更斯-菲涅尔衍射积分
6) Generalized Huygens-Fresnel diffraction integral(Collins) formula
广义惠更斯-菲涅耳衍射积分(Collins)公式
补充资料:广义动量积分
见拉格朗日方程。
说明:补充资料仅用于学习参考,请勿用于其它任何用途。
参考词条