Hatano H
Dept. of Appl. Electron., Sci. Univ. of Tokyo.
IEEE Trans Ultrason Ferroelectr Freq Control. 1994;41(5):772-7. doi: 10.1109/58.308513.
A finite element approach was taken for the study of the sound field and positioning force in a tube-type acoustic levitator. An axisymmetric model, where a rigid sphere is suspended on the tube axis, was introduced to model a cylindrical chamber of a levitation tube furnace. Distributions of velocity potential, magnitudes of positioning force, and resonance frequency shifts of the chamber due to the presence of the sphere were numerically estimated in relation to the sphere's position and diameter. Experiments were additionally made to compare with the simulation. The finite element method proved to be a useful tool for analyzing and designing the tube-type levitator.
采用有限元方法研究管式声悬浮器中的声场和定位力。引入了一个轴对称模型,其中一个刚性球体悬浮在管轴上,用于模拟悬浮管式炉的圆柱形腔室。根据球体的位置和直径,数值估计了由于球体的存在而导致的腔室速度势分布、定位力大小和共振频率偏移。另外还进行了实验以与模拟结果进行比较。有限元方法被证明是分析和设计管式悬浮器的有用工具。