中国造船
中國造船
중국조선
SHIPBUILDING OF CHINA
2013年
4期
28-37
,共10页
夏齐强%陈志坚%林超友%王珺
夏齊彊%陳誌堅%林超友%王珺
하제강%진지견%림초우%왕군
复合阻波%粘弹性夹层%阻振质量%双层壳%托板%结构声学设计
複閤阻波%粘彈性夾層%阻振質量%雙層殼%託闆%結構聲學設計
복합조파%점탄성협층%조진질량%쌍층각%탁판%결구성학설계
composite wave attenuation%elastic interlayer%blocking mass%double cylindrical shell%brace%structure-borne sound design
为降低双层壳动力舱辐射噪声,对双层壳舷间托板进行阻波设计。基于Poisson-Kirchhoff薄板假设,采用波动理论分析含粘弹性夹层阻振质量板复合阻波特性;将复合阻波技术引入到双层壳托板结构声学设计中,提出了一种高传递损失的复合阻波托板结构。利用有限元、边界元法数值分析新型托板结构连接形式下的减振降噪性能,讨论设计参数变化对双层壳声辐射性能的影响。结果表明:含粘弹性夹层的阻振质量板对振动波具有较强的阻抑作用,采用复合阻波托板能显著降低外壳振动均方速度和辐射声功率,是一种较好的减振降噪方法。
為降低雙層殼動力艙輻射譟聲,對雙層殼舷間託闆進行阻波設計。基于Poisson-Kirchhoff薄闆假設,採用波動理論分析含粘彈性夾層阻振質量闆複閤阻波特性;將複閤阻波技術引入到雙層殼託闆結構聲學設計中,提齣瞭一種高傳遞損失的複閤阻波託闆結構。利用有限元、邊界元法數值分析新型託闆結構連接形式下的減振降譟性能,討論設計參數變化對雙層殼聲輻射性能的影響。結果錶明:含粘彈性夾層的阻振質量闆對振動波具有較彊的阻抑作用,採用複閤阻波託闆能顯著降低外殼振動均方速度和輻射聲功率,是一種較好的減振降譟方法。
위강저쌍층각동력창복사조성,대쌍층각현간탁판진행조파설계。기우Poisson-Kirchhoff박판가설,채용파동이론분석함점탄성협층조진질량판복합조파특성;장복합조파기술인입도쌍층각탁판결구성학설계중,제출료일충고전체손실적복합조파탁판결구。이용유한원、변계원법수치분석신형탁판결구련접형식하적감진강조성능,토론설계삼수변화대쌍층각성복사성능적영향。결과표명:함점탄성협층적조진질량판대진동파구유교강적조억작용,채용복합조파탁판능현저강저외각진동균방속도화복사성공솔,시일충교호적감진강조방법。
In order to reduce radiation of noise from power cabin with double cylindrical shells, wave attenuation of the brace was designed. Based on the thin plate supposition by Poisson and Kirchhoff, the attenuation of vibration wave propagated through a plate with elastic interlayer and blocking mass was analyzed. Composite wave attenuation technique was introduced into structure-borne sound design of the brace between double cylindrical shell and high transmission loss for the brace is summed up. Vibro-acoustic characteristics of the shell with a new type of brace connection were numerically analyzed with FEM/BEM and the effect of design parameters on shell’s vibro-acoustic characteristic was discussed. The results show that the plate with elastic interlayer and blocking mass greatly attenuate structure-borne sound. Application of composite wave attenuation brace could observably reduce vibration velocity of double cylindrical shell and sound radiation power. It provides a better method for vibration damping and noise reduction.