孔力学
比奥数
声音传输等级
边值问题
传输损耗
弹性(物理)
传递矩阵
机械
声学
有限元法
多孔介质
数学分析
材料科学
结构工程
数学
多孔性
物理
计算机科学
工程类
复合材料
计算机视觉
作者
Roohollah Talebitooti,AM Choudari Khameneh,M.R. Zarastvand,Mohammad Kornokar
标识
DOI:10.1177/1099636217751562
摘要
The present work applies three-dimensional elasticity theory as well as extended full method based on Biot’s theory to inspect the effect of compressing porous material on sound transmission loss of the multilayered cylindrical shell subjected to porous core and air-gap insulation in the presence of external flow considering various boundary configurations. According to this fact, first, three-dimensional elasticity theory is employed for the double-walled laminated composite parts of the structure which leads to governing equations with no extra assumptions as well as considering extended full method for poroelastic section which models the structure in three directions with no need to identify the frequency domain (unlike the simplified method). Consequently, the obtained equations are solved applying state space method based on approximate laminate model beside transfer matrix approach. Likewise, the procedure is followed to obtain sound transmission loss in appropriate boundary condition. Second, the influence of compressing porous core on acoustic transmission of the current structure is cleared. Furthermore, this paper includes some configurations which compare the obtained results with those available in literature to indicate the accuracy, reliability and simplicity of the present method particularly in comparison with the simplified method. Finally, some configurations are appeared in numerical result section to show the effects of the various parameters on sound transmission loss.
科研通智能强力驱动
Strongly Powered by AbleSci AI