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吸声系数管道脉冲法测量技术及其模型研究 被引量:4
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作者 孙亮 侯宏 +1 位作者 董丽英 万芳荣 《噪声与振动控制》 CSCD 北大核心 2008年第5期173-177,共5页
在先前的研究基础上,利用管道脉冲法测量材料的吸声系数。从测量结果来看,在200Hz到6000Hz频率范围内,测量结果与B&K4206阻抗管法测得的数据具有很好的一致性;而在200Hz以下,较之阻抗管来讲,数据更为可靠。利用测得的试验数据建立... 在先前的研究基础上,利用管道脉冲法测量材料的吸声系数。从测量结果来看,在200Hz到6000Hz频率范围内,测量结果与B&K4206阻抗管法测得的数据具有很好的一致性;而在200Hz以下,较之阻抗管来讲,数据更为可靠。利用测得的试验数据建立中低频范围内材料的低频反射系数模型,用来表示材料的吸声系数,从而可以更好地研究材料的低频吸声效果。而且本方法采用单传声器法,测量装置简单,可用于吸声系数的现场测量。 展开更多
关键词 声学 吸声系数 脉冲法 吸声系数模型 低频
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Dynamic flow resistivity based model for sound absorption of multi-layer sintered fibrous metals 被引量:3
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作者 MENG Han AO QingBo +2 位作者 TANG HuiPing XIN FengXian LU TianJian 《Science China(Technological Sciences)》 SCIE EI CAS 2014年第11期2096-2105,共10页
The sound absorbing performance of the sintered fibrous metallic materials is investigated by employing a dynamic flow resistivity based model,in which the porous material is modeled as randomly distributed parallel f... The sound absorbing performance of the sintered fibrous metallic materials is investigated by employing a dynamic flow resistivity based model,in which the porous material is modeled as randomly distributed parallel fibers specified by two basic physical parameters:fiber diameter and porosity.A self-consistent Brinkman approach is applied to the calculation of the dynamic resistivity of flow perpendicular to the cylindrical fibers.Based on the solved flow resistivity,the sound absorption of single layer fibrous material can be obtained by adopting the available empirical equations.Moreover,the recursion formulas of surface impedance are applied to the calculation of the sound absorption coefficient of multi-layer fibrous materials.Experimental measurements are conducted to validate the proposed model,with good agreement achieved between model predictions and tested data.Numerical calculations with the proposed model are subsequently performed to quantify the influences of fiber diameter,porosity and backed air gap on sound absorption of uniform(single-layer)fibrous materials.Results show that the sound absorption increases with porosity at higher frequencies but decreases with porosity at lower frequencies.The sound absorption also decreases with fiber diameter at higher frequencies but increases at lower frequencies.The sound absorption resonance is shifted to lower frequencies with air gap.For multi-layer fibrous materials,gradient distributions of both fiber diameter and porosity are introduced and their effects on sound absorption are assessed.It is found that increasing the porosity and fiber diameter variation improves sound absorption in the low frequency range.The model provides the possibility to tailor the sound absorption capability of the sintered fibrous materials by optimizing the gradient distributions of key physical parameters. 展开更多
关键词 sound absorption sintered fibrous material dynamic flow resistivity
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