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外国人开发的电磁时域有限差分方法工具包
Electromagnetic Finite-Difference Time-Domain (EmFDTD)
is a basic two-dimensional FDTD code developed at the
School of Electrical Engineering, Sharif University of
Technology.
This code has been written based on th
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利用时域有限差分(FDTD)仿真三维(3D)电磁波的传播,吸收边界条件为完全匹配层(PML)。-The use of finite difference time domain (FDTD) simulation of three-dimensional (3D) electromagnetic wave transmission, absorbing boundary condition for the perfectly matched layer (PML).
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利用有限差分法 (Finite Differential Method, FDM)将场域离散为许多小网格,应用差分原理,将求解连续函数的泊松方程问题转换为求解网格节点上的差分方程组的问题。-The use of finite difference method (Finite Differential Method, FDM) will field for many small discrete grid, the application of differential principle, t
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利用时域有限差分(FDTD)仿真二维(2D)横电波(TE)的传播,吸收边界条件为完全匹配层(PML)。-The use of finite difference time domain (FDTD) simulation of two-dimensional (2D) transverse electric wave (TE) the spread of absorbing boundary conditions for the perfectly matched layer (PML).
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利用时域有限差分(FDTD)仿真二维(2D)横磁波(TM)的传播,吸收边界条件为完全匹配层(PML)。-The use of finite difference time domain (FDTD) simulation of two-dimensional (2D) transverse magnetic (TM) the spread of absorbing boundary conditions for the perfectly matched layer (PML).
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PML(Perfectly Matched Layer)_using_FDTD
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三维时域有限差分matlab程序,带完美匹配层-Three-dimensional finite-difference time-domain matlab program, with perfectly matched layer
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Unidimentionnal perfectly matched layer for signal transssion using the finite difference time domain
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区别于一阶速度应力声波方程PML边界,二阶声波方程PML边界,简单易用- Unsplit complex frequency shifted perfectly matched layer for second-order wave equation using auxiliary differential equations
Gaoet al.: JASA Express Letters
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是关于GPR正演模拟的FDTD-3D算法,加载完全匹配层吸收条件。。(It is the FDTD-3D algorithm for GPR forward modeling, loading the perfectly matched layer absorbing condition.)
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是关于GPR正演模拟的FDTD-2D算法,加载完全匹配层吸收条件。。(It is the FDTD-2D algorithm for GPR forward modeling, loading the perfectly matched layer absorbing condition.)
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是关于GPR正演模拟的FDTD-3D算法,加载UPML匹配层吸收条件。激励源是雷克子波(It is the FDTD-3D algorithm for GPR forward modeling, loading the UPML perfectly matched layer absorbing condition.)
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1下载:
是关于GPR正演模拟的FDTD-3D算法,加载完全匹配层吸收条件。。(It is the FDTD-3D algorithm for GPR forward modeling, loading the perfectly matched layer absorbing condition.)
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