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dc.contributor.author蔡怡芳en_US
dc.contributor.authorTsai, I-Fangen_US
dc.contributor.author金大仁en_US
dc.contributor.authorKam, Tai-Yanen_US
dc.date.accessioned2014-12-12T01:56:27Z-
dc.date.available2014-12-12T01:56:27Z-
dc.date.issued2012en_US
dc.identifier.urihttp://140.113.39.130/cdrfb3/record/nctu/#GT079914535en_US
dc.identifier.urihttp://hdl.handle.net/11536/49437-
dc.description.abstract本文主要探讨管道几何类型及尺寸与消音量关系,分为管壁吸音系数、外在基础管路几何形状设计及细部管路设计。研究方法主要分为两部分,第一部分以有限元素软体ANSYS模拟分析声音在开放空间及外接管路中辐射情况,验证扬声器及空气元素模型在声场流固耦合分析之可行性,开放空间中空气模型声压与距离的关系符合点音源衰减公式。在管路分析部分提出简化的分析模型,能有效降低时间,验证含空气有限元素模型之正确性。第二部分改变外接管路几何形状及管壁性质,提供具膨胀腔消音管几何尺寸设计依据。依据以上分析参数结果,归纳出设计参数对消音器之消音性能影响,以设计符合减噪频率之消音器。zh_TW
dc.description.abstractThis thesis studies the sound propagation in different hollow bodies and the factors that can reduce the sound pressure level inside or at the exits of the bodies. The contents of the thesis consist of two parts. In the first part, the finite element code ANSYS is used to simulate the sound radiation of a vibrating plate and sound propagation in open space or a hollow structure. The results of ANSYS are compared with the experimental data obtained in this study. It has been found that the simulation can predict the performance of the speaker well in open space and in muffler as well. In the analysis of sound propagation in pipes, we propose a simplified analytical model using surface impedance to simulate surface sound-absorbing phenomenon of the pipe. The proposed method can effectively reduce the computing time for solving the problem. Compared with the theoretical formula available in the literature, the accuracy of the present finite element model for sound propagation in pipes has been verified by the previous solutions. In the second part, the effects of the pipe geometry and the wall sound absorption coefficient on
the noise elimination of the pipes are studied. According to the results obtained in the ANSYS simulation, the parameters of the pipes that can have significant effects on the noise elimination of the pipes are identified.
en_US
dc.language.isozh_TWen_US
dc.subject有限元素法zh_TW
dc.subject流固耦合zh_TW
dc.subject消音器zh_TW
dc.subjectfinite element methoden_US
dc.subjectfluid-structure interactionen_US
dc.subjectmuffleren_US
dc.title扬声器于不同空间声传行为之研究zh_TW
dc.titleSound Radiation of Vibrating Plate in Different Hollow Bodiesen_US
dc.typeThesisen_US
dc.contributor.department机械工程学系zh_TW
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