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MmB DIFFERENCE SCHEMES FOR TWODIMENSIONAL HYPERBOLIC CONSERVATION LAWS
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作者 ZHENGHua-sheng ZHAONing 《Transactions of Nanjing University of Aeronautics and Astronautics》 EI 2004年第4期253-257,共5页
A new class of second order accuracy semidiscrete difference schemes is presented for the two-dimensional nonlinear scalar hyperbolic conservation laws. It is based on flux splitting, piecewise linear cell-averaged re... A new class of second order accuracy semidiscrete difference schemes is presented for the two-dimensional nonlinear scalar hyperbolic conservation laws. It is based on flux splitting, piecewise linear cell-averaged reconstruction and upwind property in the spatial discretization. By using TVD Runge-Kutta time discretization method, the full discrete scheme is obtained and its MmB property is proved. The extension to the two-dimensionalnonlinear hyperbolic conservation law systems is straightforward by using component-wise manner. The main advantage is simple: no Riemann problem is solved, and so field-by-field decomposition is avoided and the complicated computation is reduced. Numerical results of two-dimensional Euler equations of compressible gas dynamics verify the accuracy and robustness of the method. 展开更多
关键词 hyperbolic conservation laws MmB diffe-rence scheme flux splitting cell-averaged reconstruction
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Characteristic-Based Time Domain Method for Cylindrically Conformal Microstrip Patch Antennas
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作者 徐晓文 辛莉 《Journal of Beijing Institute of Technology》 EI CAS 2005年第4期386-390,共5页
The characteristics of a cylindrical conformal microstrip patch antenna are analyzed by using the characteristic-based time domain (CBTD) method. A governing equation in the cylindrical coordinate system is formulat... The characteristics of a cylindrical conformal microstrip patch antenna are analyzed by using the characteristic-based time domain (CBTD) method. A governing equation in the cylindrical coordinate system is formulated directly to facilitate the analysis of cylindrically conformal microstrip patch antennas. The algorithm has second-order accuracy both in time and space domain and has the potential to eliminate the spurious wave reflection from the numerical boundaries of the computational domain, Numerical results demonstrate the important merits and accuracy of the proposed technique in computational electromagnetics, 展开更多
关键词 characteristic-based time domain (CBTD) method conformal microstrip antenna DIAGONALIZATION flux splitting finite-difference time domain (FDTD) method
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