JN江南·(官方)官网入口-江南 SPORTS

机电工程与自动化学院
School of Mechatronic Engineering and Automation

唐天全 特聘青年研究员

学历学位:博士学位

导师类别:硕士生导师

研究方向:1.超声声悬浮:有声学基础,熟悉单片机; 2.流体力学:侧重叶轮(旋转)机械;除了以上,掌握机器学习优先。

联系方式:tianquan122@163.com

学习与工作经历

2011-2015 西北工业大学 学士
2015-2018 西北工业大学 硕士
2018-2022 香港大学 博士
2022-2023 香港大学 博士后
2023-至今 JN江南官方 特聘青年研究员

科研项目

《不规则接触面多层介质中不规则微粒所受声辐射力和扭矩的调控理论与应用研究》 广东省基础与应用基础研究区域联合基金-青年基金 10万 主持

论文成果

近年来发表论文:*代表通讯作者
声场中介质耗散与声辐射效应:
[1]. T. Tang*, L. Huang. Mie particle assembly by a converging ultrasound field and acoustic interaction forces [J]. Applied Acoustics, 2021, 180, 108123. (JCR-Q1)
[2]. T. Tang*, B. Dong, B., L. Huang. Agglomeration of particles by a converging ultrasound field and their quantitative assessments [J]. Ultrasonics sonochemistry, 2021, 75, 105590. (JCR-Q1 TOP)
声镊平台声辐射力和扭矩理论模型:
[3]. T. Tang*, L. Huang. Acoustic radiation force for multiple particles over a wide size-scale by multiple ultrasound sources [J]. Journal of Sound and Vibration, 2021, 509, 116256. (JCR-Q1 TOP 声学公认顶刊)
[4]. T. Tang*, L. Huang. An efficient semi-analytical procedure to calculate acoustic radiation force and torque for axisymmetric irregular bodies [J]. Journal of Sound and Vibration, 2022, 532, 117012. (JCR-Q1 TOP 声学公认顶刊)
[5]. T. Tang*, L. Huang. Theoretical framework to predict the acoustophoresis of axisymmetric irregular objects above an ultrasound transducer array [J]. Physical Review E, 2022, 105(5), 055110. (JCR-Q1 流体力学领域公认三大顶刊之一)
[6]. T. Tang*, L. Huang. Soundiation: A software in evaluation of acoustophoresis driven by radiation force and torque on axisymmetric objects [J]. Journal of the Acoustical Society of America, 2022, 152(5), 2934–2945. (JCR-Q1 声学公认顶刊)
声镊平台动平衡稳定操控理论和实验:
[7]. T. Tang*, G. T. Silva, L. Huang, X. Han. Acoustic levitation of axisymmetric Mie objects above a transducer array by engineering the acoustic radiation force and torque [J]. Physical Review E, 2022, 106(4), 045108. (JCR-Q1 流体力学领域公认三大顶刊之一)
[8]. T. Tang*, C. Shen, L. Huang*. Acoustic rotation of non-spherical micro-objects: Characterization of acoustophoresis and quantification of rotational stability [J]. Journal of Sound and Vibration, 2023, 554, 117694. (JCR-Q1 TOP 声学公认顶刊)
分层介质的声场传播模型:
[9]. T. Tang*, C. Shen, L. Huang. Propagation of acoustic waves and determined radiation effects on axisymmetric objects in heterogeneous medium with irregular interfaces [J]. Physics of Fluids, 2024, 36(1). (JCR-Q1 流体力学领域公认三大顶刊之一)
[10].
叶轮机械(气动)相关:
[11]. T. Tang*, B. Liu. The genetic algorithm-radial basis function neural network to quickly predict aerodynamic performance of compressors [J]. Proceedings of the Institution of Mechanical Engineers, Part G: Journal of Aerospace Engineering, 2021, 235(5), 537–552. (JCR-Q2)
[12]. B. Dong, Y. Zhao, T. Tang, F. He. Flow effects of microperforated-panel casing treatments in a contra-rotating fan [J]. International Journal of Mechanical Sciences, 2023, 239, 107879.(JCR-Q1 TOP)
[13]. X. Mao, B. Liu, T. Tang, H. Zhao. The impact of casing groove location on the flow instability in a counter-rotating axial flow compressor [J]. Aerospace Science and Technology, 2018, 76, 250–259. (JCR-Q1 TOP)
[14]. X. Mao, B. Liu, T. Tang. Effect of casing aspiration on the tip leakage flow in the axial flow compressor cascade [J]. Proceedings of the Institution of Mechanical Engineers, Part A: Journal of Power and Energy, 2018, 232(3), 225–239.(JCR-Q2)
[15]. X. Mao, B. Liu, T. Tang. Control of tip leakage flow in axial flow compressor cascade by suction on the blade tip [J]. Journal of Applied Fluid Mechanics, 2018, 11(1), 137–149.(JCR-Q3)

学生培养

具备丰富的数学建模竞赛经验,分别获得:
国际数学建模竞赛二等奖:1次;
全国本科生数学建模竞赛一等奖,二等奖:2次,1次;
全国研究生数学建模竞赛特等奖,三等奖:1次,1次。
丰富的本科毕业设计培养经验:
2024年:优秀本科毕业论文 1份。

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