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胺液循环泵管道振动特性分析及减振研究 被引量:1
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作者 王洪 魏志刚 +2 位作者 袭文 党鹏飞 杨铮鑫 《机电工程》 北大核心 2025年第2期397-406,共10页
针对某石化公司气柜瓦斯脱硫装置管线异常振动问题,对该装置富胺液循环泵出口管线进行了研究。首先,建立了管道模态分析及颗粒阻尼器减振原理的理论模型;然后,利用ANSYS建立了管道数值模型,进行了流场仿真分析,并对管道进行了模态试验... 针对某石化公司气柜瓦斯脱硫装置管线异常振动问题,对该装置富胺液循环泵出口管线进行了研究。首先,建立了管道模态分析及颗粒阻尼器减振原理的理论模型;然后,利用ANSYS建立了管道数值模型,进行了流场仿真分析,并对管道进行了模态试验及振动测试,验证了模型的准确性;最后,利用EDEM离散元分析软件进行了仿真及现场试验,探究了不同填充率颗粒阻尼器的减振效果。研究结果表明:管道异常振动的主要原因是流体压力脉动激励频率接近管道固有频率,同时管道弯头处易受到共振产生的交变应力作用,造成其结构疲劳破坏;不同填充率的颗粒阻尼器均能有效降低管道振幅,其中70%填充率减振效果最优;与传统的减振方法相比,颗粒阻尼减振技术具有减振频带宽、适用性强等特点,在管道适当位置安装颗粒阻尼器,能有效降低管道振动,保障设备安全运行。 展开更多
关键词 富胺液循环泵 机械振动 管道模态分析 流场仿真分析 流固耦合 阻尼减振 颗粒阻尼器 EDEM离散元分析软件
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泵源定常激励下的管道模态特性分析
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作者 丁华 何宇廷 +2 位作者 曹克强 伍黎明 常红军 《机床与液压》 北大核心 2012年第7期40-43,46,共5页
根据管道轴向运动4-偏微分方程组和泵源边界条件,在L-MOC法的基础之上,求得偏微分方程组在拉氏域内的解析解。分析在泵源定常激励下的液压管道模态特性,并经计算与仿真,验证模态特性分析结果的准确性。
关键词 管道模态分析 L-MOC法 液压系统 仿真
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FEM modeling for 3D dynamic analysis of deep-ocean mining pipeline and its experimental verification 被引量:6
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作者 王刚 刘少军 李力 《Journal of Central South University of Technology》 EI 2007年第6期808-813,共6页
3D dynamic analysis models of 1000 m deep-ocean mining pipeline, including steel lift pipe, pump, buffer and flexible hose, were established by finite element method (FEM). The coupling effect of steel lift pipe and f... 3D dynamic analysis models of 1000 m deep-ocean mining pipeline, including steel lift pipe, pump, buffer and flexible hose, were established by finite element method (FEM). The coupling effect of steel lift pipe and flexible hose, and main external loads of pipeline were considered in the models, such as gravity, buoyancy, hydrodynamic forces, internal and external fluid pressures, concentrated suspension buoyancy on the flexible hose, torsional moment and axial force induced by pump working. Some relevant FEM models and solution techniques were developed, according to various 3D transient behaviors of integrated deep-ocean mining pipeline, including towing motions of track-keeping operation and launch process of pipeline. Meanwhile, an experimental verification system in towing water tank that had similar characteristics of designed mining pipeline was developed to verify the accuracy of the FEM models and dynamic simulation. The experiment results show that the experimental records and simulation results of stress of pipe are coincided. Based on the further simulations of 1 000 m deep-ocean mining pipeline, the simulation results show that, to form configuration of a saddle shape, the total concentrated suspension buoyancy of flexible hose should be 95%?105% of the gravity of flexible hose in water, the first suspension point occupies 1/3 of the total buoyancy, and the second suspension point occupies 2/3 of the total buoyancy. When towing velocity of mining system is less than 0.5 m/s, the towing track of buffer is coincided with the setting route of ship on the whole and the configuration of flexible hose is also kept well. 展开更多
关键词 deep-ocean mining pipeline modeling dynamic analysis finite element method
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