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Impact of Locally Resonant Phononic Crystal Plates on Noise Reduction in Automotive Mufflers
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作者 ZHANG Mengyang ZHU Congyun +1 位作者 DING Guofang HUANG Qibai 《Journal of Donghua University(English Edition)》 2025年第5期558-565,共8页
This paper presents a locally resonant phononic crystal with excellent noise reduction in the low-frequency range as a soundproofing plate in mufflers.A locally resonant phononic crystal is established,and the bandgap... This paper presents a locally resonant phononic crystal with excellent noise reduction in the low-frequency range as a soundproofing plate in mufflers.A locally resonant phononic crystal is established,and the bandgap range of the phononic crystal is analyzed by using COMSOL software.Taking the partition plate in the muffler as the object,the acoustic-solid coupling is studied to analyze the sound insulation characteristics of the locally resonant phononic crystal.A phononic crystal plate-like structure is established to analyze its noise reduction performance in the muffler.The results indicate that the locally resonant phononic crystal exhibits favorable low-frequency sound insulation performance within a bandgap range below 200 Hz.At 160 Hz,the noise reduction is 15 dB higher than that of ordinary partition plates.As the number of layers of the phononic crystal plate increases,its noise reduction effect gradually enhances,while the magnitude of the noise reduction increment tends to diminish.At 160 Hz,the single-,double-and triple-layer plates achieve peak reductions of 47,53 and 57 dB,respectively.Compared with the double-layer phononic crystal plate,the composite of the locally resonant phononic crystal plate and the steel plate has an average noise reduction of 5 dB higher.Through research and analysis of the composite locally resonant phononic crystal plates,more feasible combined structures can be provided for future muffler structural design. 展开更多
关键词 acoustic-solid coupling muffler low-frequency noise reduction locally resonant phononic crystal bandgap characteristic
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COMPUTATIONAL FLUID DYNAMICS RESEARCH ON PRESSURE LOSS OF CROSS-FLOW PERFORATED MUFFLER 被引量:15
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作者 HU Xiaodong ZHOU Yiqi +2 位作者 FANG Jianhua MAN Xiliang ZHAO Zhengxu 《Chinese Journal of Mechanical Engineering》 SCIE EI CAS CSCD 2007年第2期88-93,共6页
The pressure loss of cross-flow perforated of physical modeling, simulation and data processing. muffler has been computed with the procedure Three-dimensional computational fluid dynamics (CFD) has been used to inv... The pressure loss of cross-flow perforated of physical modeling, simulation and data processing. muffler has been computed with the procedure Three-dimensional computational fluid dynamics (CFD) has been used to investigate the relations of porosities, flow velocity and diameter of the holes with the pressure loss. Accordingly, some preliminary results have been obtained that pressure loss increases with porosity descent as nearly a hyperbolic trend, rising flow velocity of the input makes the pressure loss increasing with parabola trend, diameter of holes affects little about pressure loss of the muffler. Otherwise, the holes on the perforated pipes make the air flow gently and meanly, which decreases the air impact to the wall and pipes in the muffler. A practical perforated muffler is used to illustrate the available of this method for pressure loss computation, and the comparison shows that the computation results with the method of CFD has reference value for muffler design. 展开更多
关键词 Perforated muffler Pressure loss Computational fluid dynamics (CFD) Porosity Flow velocity
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Theoretical Calculation and Analysis of Muffler Based on Multilayer Sound Absorbing Material 被引量:3
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作者 ZHU Congyun LIU Rongji 《Journal of Donghua University(English Edition)》 CAS 2022年第1期40-54,共15页
The multilayer impedance composite sound absorption structure of the new muffler is proposed by combining the microporous plate structure with the resonant sound absorption structure of the porous material.Firstly,the... The multilayer impedance composite sound absorption structure of the new muffler is proposed by combining the microporous plate structure with the resonant sound absorption structure of the porous material.Firstly,the acoustic impedance and acoustic absorption coefficient of the new muffler structure are calculated by acoustic electric analogy method,and then the noise attenuation is calculated.When the new muffler structure parameters change,the relationship among the noise frequency,the sound absorption coefficient and the noise attenuation is calculated by using MATLAB.Finally,the calculated results are compared with the experimental data to verify the correctness of the theoretical calculation.The variation of resonance peak,resonance frequency and attenuation band width of each structural parameter is analyzed by the relation curve.The conclusion shows that it is feasible to use multilayer sound absorbing materials as the body structure of the new muffler.And the influence relationship between the change of various parameters of the sound absorption structure with the sound absorption coefficient and noise attenuation is obtained. 展开更多
关键词 muffler micro-perforated plate multilayer sound absorbing material sound absorption coefficient noise attenuation
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PREDICTION OF ACOUSTIC PERFORMANCE IN EXPANSION CHAMBER MUFFLERS WITH MEAN FLOW BY FINITE ELEMENT METHOD 被引量:4
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作者 Liu YadongLi CongxinRuan XueyuNational Die & Mold CAD EngineeringResearch Center,Shanghai Jiaotong University,Shanghai 200030, China 《Chinese Journal of Mechanical Engineering》 SCIE EI CAS CSCD 2003年第3期292-295,304,共5页
The equation of wave propagation in a circular chamber with mean flow is obtained. Computational solution based on finite element method is employed to determine the transmission loss of expansive chamber. The effect ... The equation of wave propagation in a circular chamber with mean flow is obtained. Computational solution based on finite element method is employed to determine the transmission loss of expansive chamber. The effect of the mean flow and geometry (length of expansion chamber and expansion ratio)on acoustic attenuation performance is discussed, the predicted values of transmission loss of expansion chamber without and with mean flow are compared with those reported in the literature and they agree well. The accuracy of the prediction of transmission loss implies that finite element approximations are applicable to a lot of practical applications. 展开更多
关键词 Wave equation Finite element method Exhaust mufflers Acoustic characteristics
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Calculation and Analysis of Acoustic Characteristics of Straight-Through Perforated Pipe Muffler Based on Multilayer Sound Absorbing Material 被引量:1
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作者 刘镕基 朱从云 +1 位作者 丁国芳 院蕾 《Journal of Donghua University(English Edition)》 CAS 2023年第5期506-514,共9页
Using the multi-physical field simulation software COMSOL,the acoustic characteristics of the multilayer sound absorbing material straight-through perforated pipe muffler are studied by the finite element method.The r... Using the multi-physical field simulation software COMSOL,the acoustic characteristics of the multilayer sound absorbing material straight-through perforated pipe muffler are studied by the finite element method.The results show that the finite element calculation of the multilayer sound absorbing material straight-through the perforated pipe muffler agrees well with the experimental measurement results.The reliability of the finite element method for studying the acoustic performance of the straight-through perforated pipe muffler with multilayer sound absorbing materials is shown.Furthermore,the influence of some structural parameters of porous sound absorbing material and micro-perforated plate on the acoustic performance of the multilayer sound absorbing material straight-through perforated pipe muffler is analyzed.The muffler based on multilayer sound absorbing material is different from the traditional muffler.After applying the multilayer sound absorbing material to the straight-through perforated pipe muffler,the transmission loss value greatly increases,which provides new ideas and directions for future research on the muffler. 展开更多
关键词 porous sound absorbing material perforated tube finite element method muffler acoustic characteristics
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A novel multi-cavity Helmholtz muffler
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作者 Han-Bo Shao Huan He +1 位作者 Yan Chen Guo-Ping Chen 《Chinese Physics B》 SCIE EI CAS CSCD 2019年第5期150-157,共8页
A novel multi-cavity Helmholtz muffler is proposed. The multi-cavity Helmholtz muffler is composed of steel structures and silicone membranes. With suitable construction, the Helmholtz muffler can be designed to exhib... A novel multi-cavity Helmholtz muffler is proposed. The multi-cavity Helmholtz muffler is composed of steel structures and silicone membranes. With suitable construction, the Helmholtz muffler can be designed to exhibit negative mass density in low frequency, and the muffling frequency can be adjusted when we change the internal structure of the cavity,which will be very attractive for noise control. In this paper, we investigate the influence of the membranes and the cavities on noise reduction characteristics with theoretical calculations and simulations. The results show that the numbers of membranes and the volumes of the cavities can have a great effect on the position of the muffling frequency. The number of cavities can have a great effect on the width of the muffling frequency(reduce the noise by 10 dB). With different combinations of the membranes and cavities, we can get different muffling frequencies, which can meet different muffling demands in practical applications and is more flexible than the traditional Helmholtz cavity. 展开更多
关键词 MULTI-CAVITY HELMHOLTZ muffler NEGATIVE MASS DENSITY noise reduction
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Research on Measurement Method of Muffler Performance under High Temperature and High-Speed Airflow Conditions
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作者 Liping Xie Chihua Lu +1 位作者 Zhien Liu Yawei Zhu 《Journal of Beijing Institute of Technology》 EI CAS 2020年第2期241-250,共10页
Ignoring the influence of flow velocity and flow temperature on muffling performance,performance tests were conducted without airflow in the development phase of the muffler which accounts to the difficulty of obtaini... Ignoring the influence of flow velocity and flow temperature on muffling performance,performance tests were conducted without airflow in the development phase of the muffler which accounts to the difficulty of obtaining a perfect match between the actual noise reduction effect and the design goal.Based on the two-load test theory,a set of high-temperature and high-speed airflow simulation measurement devices for the muffler has been built.In order to avoid the impact of high-temperature and high-speed airflow on the sensor,a high temperature resistant sensor holder has been designed for the test rig.The sound pressure has been measured in the pipe by using the lead-out measurement.In addition,a variable impedance load is placed at the end of the test tube to realize the switch between two different impedance loads by the wave handle of the variable impedance load.A sound source correction method is proposed to decrease the random fluctuation of the spectral characteristics of the output noise signal,which is caused by the acoustic impedance variation at the connection between the transition pipeline and the combined sound source system.Finally,an acoustic software has been used to calculate the transmission loss of the muffler in the presence of high temperature airflow.In comparing the experimental measurements and the simulation results,the small difference shows that:the bench not only can effectively simulate high-temperature and flow velocity environment of the engine but also accurately test the transmission loss of the muffler. 展开更多
关键词 muffler lead-out measurement variable load source correction transmission loss
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Reducing the Gas Pressure Drop in Suction Mufflers of Hermetic Reciprocating Compressors
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作者 Janatas Ferreira Lacerda Jose Luiz Gasche +1 位作者 Joao Fabio Parise de Lara Danilo Martins Arantes 《Journal of Energy and Power Engineering》 2014年第3期423-430,共8页
The suction muffler of hermetic reciprocating compressors is installed in order to attenuate the noise generated by the gas pulsation of the flow through the suction valve. However, the installation of the suction muf... The suction muffler of hermetic reciprocating compressors is installed in order to attenuate the noise generated by the gas pulsation of the flow through the suction valve. However, the installation of the suction muffler affects the operation of the compressor owing to gas pressure drop, which causes volumetric and energetic efficiency loss due to the gas specific volume augmentation. Therefore, there is a compromise between sound attenuation and pressure drop increase, which has to be taken into account by compressor designers. In this work, it presents a numerical solution to the flow through a suction muffler in order to analyze the pressure field and point out the main contributions to the overall pressure drop of the flow. A commercial CFD (computational fluid dynamics) code was used to perform the numerical simulations and the results were validated by using experimental data. After analyzing the pressure field, the geometry of the muffler was modified intending to decrease the flow pressure drop. The geometric modification produced a 28% reduction on the overall pressure drop, without influencing the sound attenuation. 展开更多
关键词 REFRIGERATION hermetic reciprocating COMPRESSOR muffler.
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气动锚杆钻机的高噪声控制研究 被引量:2
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作者 阮学云 王旭东 +3 位作者 胡坤 邹敏敏 刘傲 许祥涛 《噪声与振动控制》 北大核心 2025年第2期298-304,共7页
以巷道支护常用的气动锚杆钻机为研究对象,针对其工作过程中的高噪声状况,首先研究气动锚杆钻机的工作原理,从原理出发总结出噪声的产生机理,分析主要噪声源,再基于采集的声源辐射噪声数据分析频谱图,找出噪声的频率带分布及主要部位,... 以巷道支护常用的气动锚杆钻机为研究对象,针对其工作过程中的高噪声状况,首先研究气动锚杆钻机的工作原理,从原理出发总结出噪声的产生机理,分析主要噪声源,再基于采集的声源辐射噪声数据分析频谱图,找出噪声的频率带分布及主要部位,提出噪声治理措施,最后进行气动马达排气口的消声器设计,并利用LMS Virtual Lab软件进行声学仿真,表明该结构的适用性,安装加工完成的消声器实物,铺设合适的吸声材料,开展降噪后的实验验证,测试得到改进后的数据,表明达到预期的效果,对于今后气动锚杆钻机的噪声治理方面具有一定的借鉴价值和指导意义。 展开更多
关键词 声学 气动锚杆钻机 噪声控制 消声器设计 声学仿真 实验验证
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回流扩张室参数对多腔消声器传递损失的影响与优化
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作者 陈洪月 戴忠桓 +1 位作者 刘先阳 蔡明航 《噪声与振动控制》 北大核心 2025年第2期250-256,272,共8页
为研究多腔消声器中回流扩张室结构参数对消声器声学特性的影响。利用LMS. Virtual Lab软件对消声器模型仿真求解,并通过实验验证仿真结果的准确性。采用隔板将回流扩张室分成3个腔室,分析其结构参数对消声器声学特性的影响。结果表明:... 为研究多腔消声器中回流扩张室结构参数对消声器声学特性的影响。利用LMS. Virtual Lab软件对消声器模型仿真求解,并通过实验验证仿真结果的准确性。采用隔板将回流扩张室分成3个腔室,分析其结构参数对消声器声学特性的影响。结果表明:扩张腔Ⅱ高度升高,降低低频段传递损失,提高窄频和中高频段传递损失,且每升高3mm,窄频段范围拓宽30 Hz;腔室间连接通孔直径变大,传递损失曲线向高频方向偏移,且消声能力降低;消声器进出口间隔板位置变化对消声频段范围影响较小,但传递损失峰值变化需要综合考虑回流扩张室中各腔室结构对消声特性的影响;内插管长度每增加5 mm,消声宽频范围缩短40 Hz左右。通过正交试验获取较优参数组合,与原消声器传递损失对比,消声器在500~3 000 Hz频段内平均传递损失可提高1.99倍。 展开更多
关键词 声学 消声器 传递损失 正交优化
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可变腔亥姆霍兹管型消声器的性能研究
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作者 郭林伟 李凡 +2 位作者 林基艳 许龙 任立庆 《榆林学院学报》 2025年第2期18-23,共6页
基于亥姆霍兹共鸣器原理,设计了一种可变腔亥姆霍兹管理消声器。采用等效电路法和声波方程对该消声器的共振频率、传声损失及消声频宽等关键参数进行理论推导,获得了其理论性能。进一步通过有限元分析法对消声器进行模态分析,并与理论... 基于亥姆霍兹共鸣器原理,设计了一种可变腔亥姆霍兹管理消声器。采用等效电路法和声波方程对该消声器的共振频率、传声损失及消声频宽等关键参数进行理论推导,获得了其理论性能。进一步通过有限元分析法对消声器进行模态分析,并与理论结果进行对比。研究发现,仿真与理论结果在低频段存在一定的偏差,推测是由于边界条件简化及材料阻尼未完全纳入理论模型所致。为提升实际应用适配性,设计了腔体容积可调机构,以适应不同工况下的噪声控制需求。 展开更多
关键词 亥姆霍兹消声器 等效电路法 有限元仿真 传声损失 低频噪声
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内插管数量对消声器声学及空气动力性能影响分析 被引量:1
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作者 何文强 邓稼源 +1 位作者 章桥新 余金桂 《噪声与振动控制》 北大核心 2025年第2期257-261,共5页
为探究内插管数量对应急电源车柴油发电机排气消声器综合性能的影响,采用有限元仿真软件COMSOL,分别对5种不同数量内插管组合的多级膨胀腔抗性消声器的声学性能和空气动力性能进行数值模拟计算,获得消声器的声压级幅值云图、传递损失以... 为探究内插管数量对应急电源车柴油发电机排气消声器综合性能的影响,采用有限元仿真软件COMSOL,分别对5种不同数量内插管组合的多级膨胀腔抗性消声器的声学性能和空气动力性能进行数值模拟计算,获得消声器的声压级幅值云图、传递损失以及压力损失,分析不同数量内插管组合对多级膨胀腔抗性消声器传递损失和压力损失的影响,并将内插管数量组合2的消声器制成样机进行试验验证。结果表明,内插管数量组合2的消声器在中低频段消声效果明显优于其他组合,并且随着腔室Ⅰ、腔室Ⅲ中内插管数量在一定范围内同时增大,抗性消声器在中高频段的传递损失逐渐增加,压力损失逐渐减小,可有效改善应急电源车排气消声器的综合性能。 展开更多
关键词 声学 抗性消声器 内插管 传递损失 压力损失
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嵌入式冰箱辐射噪声数值模拟与降噪研究
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作者 王仰超 徐玉峰 +3 位作者 万彦斌 杜华东 韩宝坤 王金瑞 《噪声与振动控制》 北大核心 2025年第4期7-13,共7页
以某款嵌入式冰箱为研究对象,通过简化结构,获得冰箱三维模型。采用LMS Virtual. Lab对冰箱两侧与橱柜不同距离时的辐射噪声及前场声指向性进行数值模拟,并通过实验对模拟结果进行验证,依据噪声指向性,在冰箱底部添加消声器。结果表明:... 以某款嵌入式冰箱为研究对象,通过简化结构,获得冰箱三维模型。采用LMS Virtual. Lab对冰箱两侧与橱柜不同距离时的辐射噪声及前场声指向性进行数值模拟,并通过实验对模拟结果进行验证,依据噪声指向性,在冰箱底部添加消声器。结果表明:嵌入状态下冰箱的噪声均高于自由状态,且冰箱底部传出的声音较大;通过实验结果可知,在两侧嵌入距离为6 mm时,噪声增加6.1 dB(A);数值模拟结果与实验结果吻合良好,方法的可行性得到验证;由数值模拟结果可知,底部加入消声器后,两侧嵌入距离为12 mm时,噪声降低6.56 dB(A)。通过在嵌入式冰箱底部添加消声器,可有效控制冰箱的辐射噪声,研究结果可为后续嵌入式冰箱降噪提供一定的参考。 展开更多
关键词 声学 嵌入式冰箱 嵌入距离 辐射噪声 声指向性 消声器
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囊式消声器压力脉动抑制特性研究
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作者 常文奇 罗小辉 聂硕琪 《机床与液压》 北大核心 2025年第20期133-141,共9页
疏水系统对于确保船舶的正常运行至关重要,其振动和噪声问题主要源自工作过程中管道产生的压力脉动,安装消声器是降低管道压力脉动的常见方式。对囊式消声器降低疏水系统压力脉动特性进行研究。分析囊式消声器的工作原理,并建立各工作... 疏水系统对于确保船舶的正常运行至关重要,其振动和噪声问题主要源自工作过程中管道产生的压力脉动,安装消声器是降低管道压力脉动的常见方式。对囊式消声器降低疏水系统压力脉动特性进行研究。分析囊式消声器的工作原理,并建立各工作模块的动力学方程,结合参数之间的关联,构建消声器整体数学模型。利用AMESim软件搭建疏水系统仿真模型,通过对比安装消声器前后的压力曲线,验证囊式消声器在抑制系统压力脉动方面的效果。搭建实验台架并以压力脉动率作为对比指标,进一步验证疏水系统仿真模型的准确性。对比仿真与实验结果,吻合度良好,仿真模型可较准确地计算疏水系统的压力特性。对比安装消声器前后管路压力脉动率,1、2、3 MPa工况最大可分别降低91.68%、86.50%、88.74%,压力脉动抑制效果良好。对比不同工作压力下预充气压对压力脉动抑制效果的影响,结果表明:不同工作压力下消声器的最佳充气压力不同,最佳充气压力范围为工作压力的80%~95%。 展开更多
关键词 疏水系统 囊式消声器 压力脉动 抑制特性
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新型阻抗复合式消声器性能研究
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作者 陈炜 曹浩 +3 位作者 胡胜 卢铃 王一凡 张万福 《能源研究与信息》 2025年第2期75-81,共7页
为研究新型阻抗复合式消声器的消声性能和空气动力性能,运用COMSOL Multiphysics多物理场有限元软件模拟消声器内部声场和流场,对消声特性进行仿真模拟。在此基础上,分析了8种消声器的压力损失和插入损失,比较了不同消声器的消声性能。... 为研究新型阻抗复合式消声器的消声性能和空气动力性能,运用COMSOL Multiphysics多物理场有限元软件模拟消声器内部声场和流场,对消声特性进行仿真模拟。在此基础上,分析了8种消声器的压力损失和插入损失,比较了不同消声器的消声性能。结果表明:新型阻抗复合式消声器在低、中、高频下均有良好的消声效果;在频率为0~500 Hz时消声效果更好,插入损失相较于其他类型消声器的约增大175%~2000%。 展开更多
关键词 消声器 压力损失 插入损失 气流速度
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基于SYSNOISE共振腔消声器声学和阻力特性分析
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作者 王凯 王丹丹 王彦婷 《机械设计与制造》 北大核心 2025年第10期170-173,共4页
针对共振腔消声器的结构原理和消声特性进行分析,获取影响特性的关键参数,对关键参数进行设计。根据分析,获得性能评价指标;基于有限元模型,导入SYSNOISE建立不同类型的分析模型,对性能进行分析;对不同因素的影响进行分析,获取影响规律... 针对共振腔消声器的结构原理和消声特性进行分析,获取影响特性的关键参数,对关键参数进行设计。根据分析,获得性能评价指标;基于有限元模型,导入SYSNOISE建立不同类型的分析模型,对性能进行分析;对不同因素的影响进行分析,获取影响规律;搭建消声器消声测试系统,对理论分析参数的消声性能进行分析,以验证理论和模型分析的准确性。结果可知:对于只发出特定频率的声源有很好的消声效果,可以通过串联多个消声器达到扩大频率范围的目的;由于共振腔处在和空气流向相垂直的方向,产生的空气阻力较小;实测消声器的传递损失集中在(190~205)Hz范围内,与理论分析200Hz范围的结果基本一致。表明理论和模型分析结果很好的反应了消声器内部传递损失的变化趋势,获得的极值频率结果是准确的。 展开更多
关键词 共振腔消声器 声学 空气阻力 分贝 有限元模型
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科考船主机低频排气噪声分析与控制
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作者 李轩 艾子涛 +2 位作者 钟震宇 蔡晓涛 黄志武 《噪声与振动控制》 北大核心 2025年第6期234-239,共6页
针对某科考船主机排气造成开敞区域噪声异常问题进行诊断和优化。通过实船测试排查,逐步找出开敞区域噪声异常的具体原因,主要是主机发火频率处的低频排气噪声。基于工程化需求提出优化方案,根据共振腔消声器原理,针对特定的低频点,在... 针对某科考船主机排气造成开敞区域噪声异常问题进行诊断和优化。通过实船测试排查,逐步找出开敞区域噪声异常的具体原因,主要是主机发火频率处的低频排气噪声。基于工程化需求提出优化方案,根据共振腔消声器原理,针对特定的低频点,在原有的消声器基础上设计和优化改造,增设一段低频消声器进行实船验证,确认方案的有效性。研究结果表明,针对特定的低频点设计的低频消声器可以有效降低主机排气导致的开敞区域噪声,排气口附近1米噪声声压级总值降到75 dB(A)以下,满足开敞娱乐区域的限值要求。该研究有助于主机排气噪声异常时的判断、识别以及治理。 展开更多
关键词 声学 科考船 低频噪声 排气噪声 消声器 噪声测试与诊断
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复材蜂窝消声帽智能制备及植入系统设计
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作者 张超 李洋 +3 位作者 樊楚一 艾士博 李扬 孙鼎昀 《机床与液压》 北大核心 2025年第10期193-198,共6页
为了实现航空发动机用复材蜂窝板中消声帽的自动批量植入,开发了基于机器人视觉识别的蜂窝消声帽制备技术。通过集成转盘式裁切单元、机器人、末端执行机构、视觉识别系统等,搭建一套复材蜂窝消声帽智能制备及植入系统。其中,采用加热... 为了实现航空发动机用复材蜂窝板中消声帽的自动批量植入,开发了基于机器人视觉识别的蜂窝消声帽制备技术。通过集成转盘式裁切单元、机器人、末端执行机构、视觉识别系统等,搭建一套复材蜂窝消声帽智能制备及植入系统。其中,采用加热与隔热设计末端执行机构,提高了制备过程的自动化和智能化水平;视觉系统集成高精度相机,通过标定和校正确保图像准确无误,实现了亚像素级识别精度,为精准定位和操作提供了保障;同时,应用手眼标定技术将相机获取的图像信息准确转化为机器人坐标系下的位置与姿态信息,进一步提升了自动化操作的精度和效率。实验结果表明:该制备系统提高了制备精度和效率,降低了人工成本,为消声材料的自动化生产制备、植入提供了新方案。 展开更多
关键词 复材蜂窝板 消声帽 自动化植入 机器视觉 降噪
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双层小孔喷注消声器在地面试验高压排放系统中的应用
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作者 王洪福 孟博丁 +2 位作者 董丽双 刘鑫 刘妺 《噪声与振动控制》 北大核心 2025年第3期279-283,301,共6页
在氢氧火箭发动机阀门地面试验系统中,高压排放系统常产生喷注噪声。基于喷注噪声理论、小孔喷注移频原理,为阀门地面用高压排放系统设计小孔消声器。为了达到高降噪的效果,探究双层小孔喷注消声器的设计及理论计算方法。采用仿真软件... 在氢氧火箭发动机阀门地面试验系统中,高压排放系统常产生喷注噪声。基于喷注噪声理论、小孔喷注移频原理,为阀门地面用高压排放系统设计小孔消声器。为了达到高降噪的效果,探究双层小孔喷注消声器的设计及理论计算方法。采用仿真软件对小孔消声器的结构强度及降噪效果进行仿真,从理论上验证方案的可行性。加工消声器并测试噪声,结果表明双层小孔消声器降噪效果理想。理论分析与实测所得的双层小孔消声器的消声量分别为30.7、30.4 dB(A),仿真与实测所得的噪声频谱验证了小孔消声器的移频原理。通过对比双层小孔消声器的理论分析、仿真、测试结果,验证了双层小孔消声器应用于氢氧火箭发动机地面试验高压排放系统的可行性,同时为小孔消声器的设计提供了新的方法。 展开更多
关键词 声学 喷注噪声 小孔喷注消声器 高压排放系统 传递损失 声学特性
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The Study on Effect of Exhaust Performance According to Active Muffler Valve Spring as Followed Spring Constant
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作者 Seuk Cheun Choi Tae Woo Kong +2 位作者 Han Shik Chung Hyo Min Jeong Young Heung Chun 《Journal of Thermal Science》 SCIE EI CAS CSCD 2002年第4期372-377,共6页
This study represents the influence on exhaust performance by active muffler valve spring.The main experimental parameters were engine speeds and torsion coil spring constants in the active muffler.When the muffler va... This study represents the influence on exhaust performance by active muffler valve spring.The main experimental parameters were engine speeds and torsion coil spring constants in the active muffler.When the muffler valve spring has a low spring constant of k=0.75,the sound pressure level was low at the region of engine speed 2000 to 2500 r/min,and the velocity of exhaust gas was high at spring constant k=0.75.When the engine speed was under 1500 r/min,the mean concentration of CO was high in case without muffler valve.When the engine speed in the range of 1600 to 2600 r/min with spring constant k=0.75,the mean HC concentration showed the lowest value.Without muffler valve,the temperature in the muffler was higher than the case with muffler valve.This research represented that the performance of the active muffler valve spring constant k=0.75 was higher than that without muffler valve and valve spring constant k=0.70.Among the three cases of experimental condition,with a spring constant k=0.75,0.70 and without muffler valve,the exhaust performance was high in case active muffler valve spring constant k=0.70. 展开更多
关键词 active muffler torsion coil spring spring constant sound pressure level
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