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Symplectic analysis for elastic wave propagation in two-dimensional cellular structures 被引量:5
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作者 Xiu-Hui Hou Zi-Chen Deng +1 位作者 Jia-Xi Zhou Tie-Quan Liu 《Acta Mechanica Sinica》 SCIE EI CAS CSCD 2010年第5期711-720,共10页
On the basis of the finite element analysis, the elastic wave propagation in cellular structures is investigated using the symplectic algorithm. The variation principle is first applied to obtain the dual variables an... On the basis of the finite element analysis, the elastic wave propagation in cellular structures is investigated using the symplectic algorithm. The variation principle is first applied to obtain the dual variables and the wave propagation problem is then transformed into two-dimensional (2D) symplectic eigenvalue problems, where the extended Wittrick-Williams algorithm is used to ensure that no phase propagation eigenvalues are missed during computation. Three typical cellular structures, square, triangle and hexagon, are introduced to illustrate the unique feature of the symplectic algorithm in higher-frequency calculation, which is due to the conserved properties of the structure-preserving symplectic algorithm. On the basis of the dispersion relations and phase constant surface analysis, the band structure is shown to be insensitive to the material type at lower frequencies, however, much more related at higher frequencies. This paper also demonstrates how the boundary conditions adopted in the finite element modeling process and the structures' configurations affect the band structures. The hexagonal cells are demonstrated to be more efficient for sound insulation at higher frequencies, while the triangular cells are preferred at lower frequencies. No complete band gaps are observed for the square cells with fixed-end boundary conditions. The analysis of phase constant surfaces guides the design of 2D cellular structures where waves at certain frequencies do not propagate in specified directions. The findings from the present study will provide invaluable guidelines for the future application of cellular structures in sound insulation. 展开更多
关键词 Cellular structures Symplectic analysis Dispersion relation - phase constant surface Sound insulation
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亚轨道飞行器返回轨道设计研究 被引量:2
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作者 李海城 唐硕 《计算机仿真》 CSCD 2008年第3期56-58,82,共4页
返回轨道设计关系着亚轨道飞行器能否安区返回。亚轨道飞行器的返回过程不同于航天飞机的返回过程。针对亚轨道飞行器的返回轨道的特点和要求,将基准返回轨道分成常数倾斜角飞行段和解析表达式飞行段进行设计。在常数倾斜角飞行段,采用... 返回轨道设计关系着亚轨道飞行器能否安区返回。亚轨道飞行器的返回过程不同于航天飞机的返回过程。针对亚轨道飞行器的返回轨道的特点和要求,将基准返回轨道分成常数倾斜角飞行段和解析表达式飞行段进行设计。在常数倾斜角飞行段,采用常数倾斜角控制;在解析表达式飞行段,采用解析表达式来代替飞行高度速度剖面。已知返回点和末端能量管理入口的高度、速度,在满足飞行约束条件下,设计基准返回轨道,并对求得的基准轨道进行跟踪对比。算例表明,给出的亚轨道飞行器返回轨道设计方法是可行的。 展开更多
关键词 返回轨道 亚轨道飞行器 常数倾斜角飞行段 解析表达式飞行段
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