代表性论文专著
推进器-艇体耦合系统:激励源和振动噪声主被动控制
1、Shuaikang Shi, Wanghao Tang, Xiuchang Huang*. Wake flow characteristics and unsteady performance of a pump-jet propulsor under hull condition. Physics of Fluids, 34 (2022), 127110.(艇后泵喷推进器流场特性和激励力特性)
2、Zhiwei Su, Zhiwei Zheng, Xiuchang Huang*, Hongxing Hua. Research on dynamic vibration absorber with negative stiffness for controlling longitudinal vibration of propulsion shafting system. Ocean Engineering, 264 (2022), 112375. (接地负刚度动力吸振对桨-轴一阶纵振的控制试验研究)
3、Shuaikang Shi, Wanghao Tang, Xiuchang Huang*, Xiaoqian Dong, Hongxing Hua. Experimental and numerical investigations on the flow-induced vibration and acoustic radiation of a pump-jet propulsor model in a water tunnel. Ocean Engineering, 258 (2022), 111736. (空泡水筒中泵喷推进器流致振动噪声仿真与试验)
4、Zhiwei Su, Shuaikang Shi, Xiuchang Huang*, Zhiqiang Rao, Hongxing Hua. Effects of the duct on the vibro-acoustic characteristics of the pump-jet–shaft–submarine system under pump-jet excitation. Ocean Engineering, 254 (2022), 111327. (导管对泵喷-艇体耦合系统振动噪声的影响)
5、Xiuchang Huang*, Shuaikang Shi, Zhiwei Su, Wanghao Tang, Hongxing Hua. Reducing underwater radiated noise of a SUBOFF model propelled by a pump-jet without tip clearance: Numerical simulation. Ocean Engineering, 243 (2022), 110277. (无间隙泵喷激励下泵-艇耦合系统降噪机理及效果)
6、Shuaikang Shi, Wanghao Tang, Xiuchang Huang*, Hongxing Hua. Effects of the stator prewhirl angle on the unsteady force under uniform and turbulent inflow for a pump-jet propulsor: a numerical study. Ships and Offshore Structures, 17(12) (2022), 2660-2673.(定子预旋角对泵喷宽带力的影响研究)
7、Shuaikang Shi, Xiuchang Huang, Zhiqiang Rao, Zhiwei Su, Hongxing Hua. Numerical analysis on flow noise and structure-borne noise of fully appended SUBOFF propelled by a pump-jet. Engineering Analysis with Boundary Elements,138(1) (2022), 140-158.(泵-轴-艇耦合系统在泵喷分布式脉动压力激励下的流噪声和结构噪声对比分析)
8、Zhiwei Su, Shuaikang Shi, Xiuchang Huang , Zhiqiang Rao, Hongxing Hua. Vibro-acoustic characteristics of a coupled pump-jet-Shafting system-SUBOFF model under distributed unsteady hydrodynamics by a pump-jet. Ocean Engineering, 235(8)(2021), 109429. (泵-轴-艇耦合系统在泵喷分布式脉动压力激励下的结构噪声特性分析)
9、Huang Xiuchang*, Su zhiwei, Zhang Zhenguo, Hua Hongxing. Application of a dynamic vibration absorber with negative stiffness for control of a marine shafting system. Ocean Engineering, 155(2018), 131-143.(负刚度动力吸振推力轴承的无谐振峰振动传递控制机理)
10、Huang Xiuchang*, Su zhiwei, Hua Hongxing. Vibration transmission suppression for propeller-shaft system by hub-embedded damping ring under broadband propeller force. Nonlinear Dynamics, 91(4) (2018), 2651-2666.(阻尼环对螺旋桨同相振动模态的阻尼控制机理)
11、Huang Xiuchang*, Ni Zhen, Zhang Zhenguo, Hua Hongxing. Stiffness optimization of marine propulsion shafting system by FRF-based substructuring method and sensitivity analysis. Ocean Engineering, 144(2017): 243-256.(桨轴船体耦合复杂系统轴承及隔振器刚度阻尼优化设计)
舰船及航天结构被动和半主动振动控制:负刚度动力吸振、负电容压电分流、高静低动隔振、干摩擦阻尼动力吸振
1、Xiaodong He, Sen Wang, Zhiwei Zheng, Xiuchang Huang*, Xinsheng Wei, Yong Wang, Hongxing Hua. Numerical and experimental investigations on a friction ring damper for a flywheel. Nonlinear Dynamics,111(2023), 2327-2351. (飞轮阻尼环干摩擦阻尼动力吸振机理)
2、Huang Xiuchang*, Su Zhiwei, Wang Sen, Wei Xinsheng, Wang Yong, Hua Hongxing. High-frequency disturbance force suppression mechanism of a flywheel equipped with a flexible dynamic vibration absorber,Journal of Vibration and Control, 26(23-24) (2020),2113-2124.(飞轮的阻尼环动力吸振机理与设计)
3、Huang Xiuchang*, Su zhiwei, Zhang Zhenguo, Hua Hongxing. Mechanism of a periodic chiral lattice coating on sound radiation suppression at the strong radiation mode of a stiffened hull plate. International Journal of Mechanical Sciences, 175(2020), 105512.(手性周期结构覆盖层波形转换低频棱角模态控制)
4、Huang Xiuchang*, Su zhiwei, Hua Hongxing. Optimal parameters for dynamic vibration absorber with negative stiffness in controlling force transmission to a rigid foundation. International Journal of Mechanical Sciences, 152(2019), 88-98. (简谐和随机激励下以传递力为优化目标的负刚度动力吸振器最优参数解析解)
5、Huang Xiuchang*, Zhang Zhenguo, Sun Jingya, Zhang Zhiyi, Hua Hongxing. Analytical stiffness model of a fluid-filled U-shaped bellows based three-parameter fluid damper for micro-vibration suppression. Aerospace Science and Technology, 69 (2017), 357-369.(三参数阻尼器的波纹管解析解)
6、Huang Xiuchang*, Sun Jingya, Hua Hongxing, Zhang Zhiyi. The isolation performance of vibration systems with general velocity-displacement-dependent nonlinear damping under base excitation: numerical and experimental study. Nonlinear Dynamics, 87(2016), 777-796. (广义的速度-位移依赖型非线性阻尼机理及基于速度反馈的主动控制阻尼器)
7、Huang Xiuchang*, Liu Xingtian, Sun Jingya, Zhang Zhiyi, Hua Hongxing. Shock isolation performance of a nonlinear isolator using Euler buckled beam as negative stiffness corrector: theoretical and experimental study. Journal of Sound and Vibration, 345(2015), 178- 196. (欧拉屈曲梁准零刚度隔振器冲击响应特性分析)
8、Huang Xiuchang*, Liu Xingtian, Hua Hongxing.Effects of stiffness and load imperfection on the isolation performance of a high-static –low-dynamic-stiffness nonlinear isolator under base displacement excitation. International Journal of Non-Linear Mechanics, 65(2014),32-43.(质量和刚度不完美时基础激励下欧拉屈曲梁高静低动减振器的复杂动力学特性)
9、Huang Xiuchang*, Liu Xingtian, Sun Jingya, Zhang Zhiyi, Hua Hongxing. Vibration isolation characteristics of a nonlinear isolator using Euler buckled beam as negative stiffness corrector: a theoretical and experimental study. Journal of Sound and Vibration, 333(4) (2014), 1132-1148.(欧拉屈曲梁高静低动减振器的复杂动力学特性理论与试验研究)
10、Huang Xiuchang*, Liu Xingtian, Sun Jingya, Zhang Zhiyi, Hua Hongxing. Effect of the system imperfections on the dynamic response of a high-static-low-dynamic stiffness vibration isolator. Nonlinear Dynamics, 76(2014), 1157-1167.(质量和刚度不完美时力激励下欧拉屈曲梁高静低动减振器的复杂动力学特性)
11、Huang Xiuchang*, Su Jinpeng, Ren Longlong, Hua Hongxing. Development of curved beam periodic structure in broadband resonance suppression for cylindrical shell structure. Journal of Vibration and Control, 2017, 23(8):1267-1284.(周期结构振动传递控制)