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991.
ZhongWeffang WuYongdong WuGuorong LiangYide 《Acta Mechanica Solida Sinica》2003,16(3):262-268
The acoustical scattering by a cracked elastic structure is studied. The mixed method of boundary element and fractal finite element is adopted to solve the cracked structure-acoustic coupling problem. The fractal two-level finite element method is employed for the cracked structure, which can reduce the degree of freedoms (DOFs) greatly, and the boundary element method is used for the exterior acoustic field which can automatically satisfy Sommerfeld‘s radiation condition. Numerical examples show that the resonance frequency is lower with the crack‘s depth increase, and that the effect on the acoustical field by the crack is particularly pronounced in the vicinity of the crack tip. This mixed method of boundary element and finite element is effective in solving the scattering problem by a cracked structure. 相似文献
992.
讨论了温升时所研制的大型精密离心机液体静压轴承工作模式、光栅测量系统、失准角的影响,并对离心机热源进行了计算。在理论分析和实验研究的基础上,给出了温升问题的解决方法,并提出了今后精密离心机的改进建议。 相似文献
993.
《中国颗粒学报》2006,4(5):257-257
The 2006 Annual Conference of Chinese Society of Particuology cum Symposium on Particle Technology across Taiwan Straits, held in Beijing from August 18 to 21, 2006, was hosted by Chinese Society of Particuology and organized jointly by Institute of Process Engineering, CAS, and State Key Laboratory of Heavy Oil Processing, China University of Petroleum. This conference was record-breaking for its attendance by 284 registered participants from across the country, including 47 from … 相似文献
994.
《中国颗粒学报》2006,4(5):258-258
Professor Eric Forssberg of Lulea University of Technology in Sweden visited the key laboratory of Powder Technology of the Beijing University of Aeronautics and Astronautics (BUAA), Beijing General Research Institute of Mining and Metallurgy (BGRIMM) and the particle/powder technology group of South China University of Technology (SCUT), after attending the 8^th General Assembly of the Chinese Academy of Engineering, June 7-9, 2006. Prof. Forssberg who chairs the European Committee of Comminution and Classification is an expert in the preparation of inorganic powder materials, separation of fine particles, characterization/processing of solid waste and modelling of material processing. 相似文献
995.
讨论对称性研究中发生的两个问题. 一是
X (1) (L)中出现的q能否用微分方程消去, 结果表明对Noether
对称性应慎用. 二是Noether对称性在调整规范函数时其他对称性有否变化, 结果
表明对形式不变性会有变化. 相似文献
996.
997.
定量开采条件下径向渗流的液固耦合问题 总被引:2,自引:0,他引:2
考虑到多孔介质渗透率随孔隙度变化的特点,建立了力学模型,研究定量抽放问题;对于广义平面应力状态下的非线性渗流耦合问题,提出了解的构造方法和解耦方法;求出了耦合条件下的孔隙压力,多孔介质总应力、总应变和总位移的解析解;进行了实例计算,并与Biot理论进行了对比,结果表明两种理论的差别很大。因此在渗透系数有较明显变化的场舍下不能采用Biot理论进行分析。 相似文献
998.
JieLi J.A.M.Kuipers 《中国颗粒学报》2004,2(1):1-12
The occurrence of heterogeneous flow structures in gas-particle flows seriously affects the gas-solid contacting and transport processes in high-velocity gas-fluidized beds. Particles do not disperse uniformly in the flow but pass through the bed in a swarm of clusters. The so-called “core-annulus“ structure in the radial direction and “S“ shaped axial distribution of solids concentration characterize the typical flow structure in the system. A computational study, using the discrete particle approach based on molecular dynamics techniques, has been carried out to explore the mechanisms underlying formation of the clusters and the core-annulus structure. Based on energybudget analysis including work done by the drag force, kinetic energy, rotational energy, potential energy, and energy dissipation due to particle-particle and particle-wall collisions, the role of gas-solid interaction and inelastic collisions between the particles are elucidated. It is concluded that the competition between gas-solid interaction and particle-particle interaction determines the pattern formation in high-velocity gas-solid flows: if the gas-solid interaction (under elevated pressure) dominates, most of particle energy obtained by drag from the gas phase is partitioned such that particle potential energy is raised, leading to a uniform flow structure. Otherwise, a heterogeneous pattern exists, which could be induced by both particle -particle collisions and gas-solid interaction. Although both factors could cause the flow instability, the non-linear drag force is demonstrated to be the necessary condition to trigger heterogeneous flow structure formation. As gas velocity increases and goes beyond a critical value, the fluid-particle interaction suppresses particle collisional dissipation, and as a consequence a more homogeneous flow regime is formed. 相似文献
999.
1000.
利用摄动方法讨论了一类耦合二自由度非线性系统,在小强度白噪声参数激励下系统运动模态的稳定性,获得了系统扩散过程的稳态概率密度的渐近表达式,由此获得了系统运动模态几乎必然稳定的充分必要条件。 相似文献