1. 年度高水平论文、著作、专利
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2024年度
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1Yaozeng Hu , Jianze Liu , Zhuang Wang , Jingming Zhang , Jiang Liu ;Research on Electric Oil-Pneumatic Active Suspension Based on Fractional-Order PID Position Control;Sensors;DOI:10.3390/s24051644
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2马欣源, 武倩倩, 刘碧龙;大力值电磁作动器电磁热耦合分析与性能优化;青岛理工大学学报;2024年第一期,P96-102。
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3Wu, Qianqian; Liu, Zhihui; An, Fengyan; Liu, Bilong.Self-tuning PID Feedback Control Method for Magnetic Suspension Active Vibration Isolation System with Parameters Uncertainty.Journal of Vibration and Control.2024.01.17,10.1177/10775463241228018.
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2023年度
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1Xilong Zhang, Bilong Liu *, Min Li, Heat transfer and flow resistance performance of non-uniform distributed serrated fins, Numerical Heat Transfer, Part A: Applications.DOI:10.1080/10407782.2023.2176384
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2Zhigang Cao; Xin Li; Bilong Liu;Broadband sound absorption of a hybrid absorber with shunt loudspeaker and perforated plates,Applied Acoustics.DOI:10.1016/j.apacoust.2022.109185
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3韦大朋,刘好胜,刘碧龙;分散式速度反馈控制流激薄板声振响应的模态解及特性;声学学报
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2022年度
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1An, Fengyan; Wu, Qianqian ; Liu, Bilong;”Feedback Controller Optimization for Active Noise Control Headphones Considering Frequency Response Mismatch between Microphone and Human Ear“,APPLIED SCIENCES-BASEL,10.3390/app12030977
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2An, Fengyan;Liu, Bilong;”Cascade biquad controller design for feedforward active noise control headphones considering incident noise from multiple directions“APPLIED ACOUSTICS,10.1016/j.apacoust.2021.108430
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3Li, Xin;Liu, Bilong;Wu, Qianqian;”Enhanced Low-Frequency Sound Absorption of a Porous Layer Mosaicked with Perforated Resonator“POLYMERS,10.3390/polym14020223
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2021年度
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1Tong Zhang, Ludi Kang, Xin Li, Hongbo Zhang and Bilong Liu, “ Sound Transmission Prediction of Sandwich Plates With Honeycomb and Foam Cores and an Emphatic Discussion on Radiation Terms”, International Journal of Acoustics and Vibration, Vol. 26, No. 1, pp. 70-79,2021.
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2Jianze Liu, Jiang Liu , Xilong Zhang, and Bilong Liu ,"Transmission and energy-harvesting study for a novel active suspension with simplified 2-DOF multi-link mechanism", Mechanism and Machine Theory,160 (2021), 104286.
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3Xiaofeng Wang, Honbo Zhao and Bilong Liu ,"A note on the sound transmission of a spherical sound wave through a double plate structure", JASA Express Letter 1, 045601 (2021); https://doi.org/10.1121/10.0004223
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2020年度
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1Bing Zhou, Jiangong Zhang,Xin Li,and Bilong Liu,“An Investigation on the Sound Absorption Performance of Granular Molecular Sieves under Room Temperature and Pressure”, Materials 13(8):1936,April 2020.
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2Dengke Li, Daoqing Chang, and Bilong Liu,"Diffuse Sound Absorptive Properties of Parallel-Arranged Perforated Plates with Extended Tubes and Porous Materials", Materials 13(5):1091, March 2020.
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3Xilong Zhang, Yongliang Zhang, Chenggang Lu, Flow and Noise Characteristics of Centrifugal Fan in Low Pressure Environment, Processes, 2020, 8(8), 985.
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2019年度
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1Bilong Liu, Xin Li, “Noise transmission and absorption of lightweight structures: an overview and experience”, distinguished plenary lecture, ICSV26, Montreal. 8-11July 2019
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2Fengyan An, Yin Cao, Ming Wu, Hongling Sun, Bilong Liu, Jun Yang. “Robust Wiener controller design acoustics feedback for active noise control systems”, The Journal of the Acoustical Society of America 145(4): EL291-296, 2019.
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3H.B.Zhang, B.Liu, XL.Zhang, QQ Wu , XG Wang, Zone folding induced tunable topological interface states in one-dimensional phononic crystal plates. https://doi.org/10.1016/j.physleta.2019.05.045
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2018年度
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1D.Chang, F.Lu, W.Jin,Bilong.Liu,“Low-frequency sound absorptive properties of double-layer perforated plate under grazing flow”, Applied Acoustics, 130: 115–123,2018.
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2Fengyan An, Yin Cao, Bilong Liu. Optimized Decentralized Adaptive Control of Noise and Vibration for Periodic Disturbances[J]. The Journal of the Acoustical Society of America, 2018, 144(4): EL275-EL28
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3Anders.Nilsson, Bilong Liu,“Prediction of some vibro-acoustic properties of sandwich plates with honeycomb and foam cores”,The Journal of the Acoustical Society of America,144(3),1600-1614,Sep.2018, 4.
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2017年度
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1Xilong Zhang, Yichun Wang. Investigation on heat transfer and flow characteristics of heat exchangers with different trapezoidal ducts, International Journal of Heat and Mass Transfer 110 (2017) 863-872.
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2Xilong Zhang, Yichun Wang. Improved flow and heat transfer characteristics for heat exchanger by using a new humped wavy fin, Applied Thermal Engineering 124 (2017) 510-520.
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3D.Li, D, Chang,B.Liu,“Enhanced low- to mid-frequency sound absorption using parallel arranged perforated plates with extended tubes and porous material” Applied Acoustics, 127: 316–323,2017.
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2. 代表性论文
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1B.Liu, L. Feng, and A.C. Nilsson, “Sound transmission through curved aircraft panels with stringer and ring frame attachments”. J SOUND VIB. Vol. 300, 949-973, 2007
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2B.Liu, L.Feng, A.C.Nilsson, and M.Aversano, Predicted and measured plate velocities induced by turbulent boundary layers, J SOUND VIB. Vol.331, 5309 –5325, 2012.
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3B.Liu, “Noise radiation of aircraft panels subjected to boundary layer pressure fluctuations”, J SOUND VIB. Vol.314, 693 –711, 2008.
3. 代表性著作
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1A.C.Nilsson and B.Liu, VIBRO-ACOUSTICS, Vol. I, Springer-Verlag, Berlin Heidelberg, second edition,2015.
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2A.C.Nilsson and B.Liu, VIBRO-ACOUSTICS, Vol. II, Springer-Verlag, Berlin Heidelberg, second edition, 2016.
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3A.C.Nilsson and B.Liu,VIBRO-ACOUSTICS,Vol. III, Springer-Verlag, Berlin Heidelberg, second edition, 2016.
4. 代表性专利
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1数字式水声换能器单元、阵列、装置及控制方法
发明人:安峰岩;刘碧龙
【摘要】本发明涉及一种数字式水声换能器单元,一所述外壁两端面均设一密封膜,各活塞辐射面均固定于密封膜的内侧面,活塞辐射面通过弹性件固定于外壁上,两活塞辐射面通过一连接杆连接并固定;一永磁体固定于活塞辐射面的内侧面上,永磁体与活塞辐射面接触的一面具有相同的极性;铁芯的中间具有一通孔,连接杆贯穿通孔,线圈绕设于铁芯的外侧面,电磁铁通过固定连接件固定于外壁上,铁芯的端面与永磁体的位置相对应,换能器单元的内部充满油性液体。本发明还涉及一种数字式低频宽带水声换能器单元阵列、装置以及控制方法。本发明的优点在于提供一种体积小、重量轻、功耗低的数字式水声换能器单元、阵列、装置,可实现水下低频大功率声辐射。 -
2设于通风管口且能够声学交互的有源降噪装置及控制方法
发明人:安峰岩;刘碧龙
【摘要】本发明涉及一种设于通风管口且能够声学交互的有源降噪装置,包括一壳体、一扬声器、一参考传声器、复数个误差传声器、一控制器以及一散流器;所述扬声器设于所述壳体内;所述参考传声器设于所述壳体顶部且所述参考传声器的声学输入端朝向所述壳体的外部;各所述误差传声器均设于所述壳体的底面上且设于靠近所述底面边缘的位置;所述控制器设于所述壳体内,所述扬声器、参考传声器以及各误差传声器均引线连接至所述控制器;所述散流器的中心位置开设一第三通孔,所述壳体的底面设于所述第三通孔内。本发明还提供一种能够声学交互的有源降噪控制方法。本发明结构简单,体积小,且能够在有源降噪的同时,通过有源降噪装置实现声学交互。 -
3一种应用于多层玻璃窗的主动降噪装置及控制方法
发明人:安峰岩;刘碧龙
【摘要】本发明涉及一种应用于多层玻璃窗的主动降噪装置,属于噪声控制技术领域;包括外壳、电磁铁、加速度传感器、处理器和永磁体;所述外壳为一底面封闭的筒状壳体,所述外壳通过一吸附装置吸附在多层玻璃窗的内层玻璃的内表面,所述电磁铁固定设置在外壳内且电磁铁的一端面紧贴内层玻璃的内表面;所述电磁铁的另一端面与所述加速度传感器固定连接;所述处理器设置在外壳内并分别与所述电磁铁和加速度传感器电连接;所述永磁体为一片状结构,所述永磁体放置于所述多层玻璃窗的外层玻璃的外表面,与窗体内电磁铁的相对设置,并受电磁铁的磁力吸附固定。