Experimental Study On Pressure Pulsation and Acceleration Response of Fluid Conveying Pipeline Under Multi-Excitation

IF 1 4区 工程技术 Q4 ENGINEERING, MECHANICAL Journal of Pressure Vessel Technology-Transactions of the Asme Pub Date : 2023-06-16 DOI:10.1115/1.4062751
Yiming Cao, Hui Ma, Xumin Guo, Han Ge, Hui Li, Junzhe Lin
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Abstract

The fluid conveying pipelines are often subjected to internal fluid fluctuation excitation in hydraulic pump and external base excitation from aeroengine rotor. To investigate the acceleration response of pipeline and pressure pulsation response of fluid, the vibration tests of pipeline under base excitation, fluid fluctuation excitation and multi-excitation are conducted. A set of test bench and test scheme of pipeline system under multi-excitation are designed. The test data are collected by piezoelectric pressure sensor and three-direction acceleration sensor. By analyzing the test data, the following results can be obtained: Under base excitation, the internal fluid still has weak pressure pulsation response even without fluid fluctuation excitation. However, the pressure pulsation response remains unchanged with the increase of base excitation amplitude. Under fluid fluctuation excitation, the amplitudes of vibration responses at fluid fundamental frequency fp increase with the increase of pump pressure except at 9 MPa and 15 MPa. The natural frequency of pipeline is close to 3fp when the pump pressure is 9 MPa and 15 MPa respectively, and the pipeline system will have resonance. Under multi-excitation, the amplitudes of vibration responses are close to the superimposed amplitudes of two single source excitations at fb=175 Hz and fp=298 Hz. The vibration responses appear beat vibration at fb=298 Hz and fp=297.6 Hz. The relevant test scheme and test data analysis adopted in this paper have important reference value for the in-depth study of pipeline vibration under multi-excitation and engineering practice.
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多激励下流体输送管道压力脉动及加速度响应的实验研究
流体输送管道经常受到液压泵内部流体波动激励和航空发动机转子外部基座激励。为了研究管道的加速度响应和流体的压力脉动响应,对管道进行了基础激励、流体脉动激励和多重激励下的振动试验。设计了一套管道系统多激励试验台和试验方案。测试数据由压电压力传感器和三向加速度传感器采集。通过对试验数据的分析,可以得出以下结果:在基本激励下,即使没有流体波动激励,内部流体仍然具有较弱的压力脉动响应。然而,压力脉动响应随着基础激励振幅的增加而保持不变。在流体波动激励下,除了在9MPa和15MPa处,流体基频fp处的振动响应振幅随着泵压的增加而增加。当泵压分别为9MPa和15MPa时,管道的固有频率接近3fp,管道系统会发生共振。在多重激励下,在fb=175Hz和fp=298Hz下,振动响应的振幅接近两个单源激励的叠加振幅。振动响应在fb=298Hz和fp=297.6Hz处出现拍频振动。本文采用的相关试验方案和试验数据分析,对深入研究多激励下的管道振动和工程实践具有重要参考价值。
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来源期刊
CiteScore
2.10
自引率
10.00%
发文量
77
审稿时长
4.2 months
期刊介绍: The Journal of Pressure Vessel Technology is the premier publication for the highest-quality research and interpretive reports on the design, analysis, materials, fabrication, construction, inspection, operation, and failure prevention of pressure vessels, piping, pipelines, power and heating boilers, heat exchangers, reaction vessels, pumps, valves, and other pressure and temperature-bearing components, as well as the nondestructive evaluation of critical components in mechanical engineering applications. Not only does the Journal cover all topics dealing with the design and analysis of pressure vessels, piping, and components, but it also contains discussions of their related codes and standards. Applicable pressure technology areas of interest include: Dynamic and seismic analysis; Equipment qualification; Fabrication; Welding processes and integrity; Operation of vessels and piping; Fatigue and fracture prediction; Finite and boundary element methods; Fluid-structure interaction; High pressure engineering; Elevated temperature analysis and design; Inelastic analysis; Life extension; Lifeline earthquake engineering; PVP materials and their property databases; NDE; safety and reliability; Verification and qualification of software.
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