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Simulation of Large Vertically Polarized EMP Radiating Wave Simulator with Discrete Resistors Using Parallel FDTD Method
ZHU Xiangqin, CHEN Zaigao, WU Wei, MA Liang, CHENG Yinhui, JIA Wei
CHINESE JOURNAL OF COMPUTATIONAL PHYSICS 2019, 36 (
3
): 349-356. DOI:
10.19596/j.cnki.1001-246x.7846
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284
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Parallel FDTD method, by setting resistors as lossy media across grids, is used in time-domain simulation of large vertically polarized electromagnetic pulse(EMP) radiating-wave simulator with discrete resistors. Radiation fields in time-domain with different load-type of discrete resistors are given. Effect of different resistor load is shown. Electric fields in time domain of simulator with discrete resistors and a cylinder effector are presented. It shows that loading discrete resistors improve effectively waveform of radiated electric fields by reducing reflection from simulator's top. However, radiation performance may be weaken as simulators with resistors load. Energy entering into the effector through a square hole is much as the side with hole is near to simulator and parallel with polarized orientation of simulator. The method has general application, and can be used in simulation of time-domain fields of other large vertically polarized EMP radiating-wave simulators with discrete resistors, including simulation of coupling fields as the ground and effectors existing.
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Self-consistent Method in Calculation of High-altitude Electromagnetic Pulse Environment
CHENG Yinhui, LI Jinxi, MA Liang, GUO Jinghai, ZHAO Mo, WU Wei
CHINESE JOURNAL OF COMPUTATIONAL PHYSICS 2017, 34 (
4
): 403-408.
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446
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Modeling of high-altitude electromagnetic pulse (HEMP) consists of one self-consistent process. Current density produced by Compton effects of gamma rays not only is the source in Maxwell's equation to produce electromagetic pulse, but also is influenced by electric fields. In this paper, analytical relation of Compton current and local electric field was deduced with reasonable hypotheses in one dimension model. It shows that self-consistent process is equivalent to an effective conductivity and can be combined with original non-self-consistent model. Analytical relation between Compton current and electric filed was verified using particle in cell and finite-difference time-domain methods. Finally, an example of HEMP environments calculated by this means was shown.
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A Two-dimensional Monotonicity-and Conservation-preserving Interpolation Operator
MA Libin, HU Xiaoyan, MO Zeyao
CHINESE JOURNAL OF COMPUTATIONAL PHYSICS 2010, 27 (
5
): 633-640.
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274
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We propose a two-dimensional(2D) monotonicity-and conservation-preserving interpolation operator based on a one-dimensional monotonicity-and conservation-preserving interpolation operator.With several numerical examples we conclude that our interpolation operator is effective.Furthermore,we take it as a refinement interpolation operator in a structured adaptive mesh refinement(SAMR) algorithm to solve numerical examples governed by 2D Euler equation.Results show that our method is effective in SAMR.
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A Monotonicity- and Conservation-Preserving Interpolation Operator
MA Libin, HU Xiaoyan, MO Zeyao
CHINESE JOURNAL OF COMPUTATIONAL PHYSICS 2009, 26 (
6
): 821-830.
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298
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We propose a monotonicity- and conservation-preserving interpolation operator, named PQIM. Its order of convergence, conservation-preserving and monotonicity-preserving properties are demonstrated. The interpolation operator is proved to restrain oscillation caused by interpolation effectively.
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CHARACTERISTIC IMPEDANCE OF COUPLED OFFSET CYLINDRICAL BARS TRANSMISSION LINE BETWEEN PARALLEL PLATES
ZHENG Qin-hong, QIAN Shuang-ping, XIE Fu-yao, MA Li, JIANG Shao-quan
CHINESE JOURNAL OF COMPUTATIONAL PHYSICS 2000, 17 (
6
): 655-658.
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340
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A new approach,conformal transformation combined with the boundary element method(BEM),is presented for computation of the characteristic impedance of coupled offset cylindrical bars transmission line between parallel plates.By this new method,the numerical results are obtained from three fundamental offset structures.These impedance data not only permit the exact design of various offset configurations of slab lines,but also provide a known accuracy for manufacturing various coaxial configurations of slab lines.
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