基于压电纤维复合材料的波浪冲击压力传感器研究
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1.海南大学南海海洋资源利用国家重点实验室 海口 570228; 2.武汉理工大学三亚科教创新园 三亚 572025; 3.湖南大学土木工程学院 长沙 410083

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TN98

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武汉理工大学三亚科教创新园开放基金(2022KF0032)项目资助


Research on wave impact pressure sensor based on piezoelectric fiber composites
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1.State Key Laboratory of Marine Resource Utilization in South China Sea,Hainan University, Haikou 570228, China; 2.Sanya Science and Education Innovation Park,Wuhan University of Technology, Sanya 572025, China; 3.College of Civil Engineering, Hunan University, Changsha 410083, China

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    摘要:

    波浪冲击压力是海洋工程中重要的物理量之一,采用压力传感器测量波浪冲击压力的传统方法测量结果单一、稳定性差,因此需要寻找一种代替压力传感器的新测量元件。本文针对波浪对直立板的冲击模型,利用MFC对该模型的波浪冲击压力进行测量。为了验证该测量方法的可行性和准确性,将MFC测量波浪冲击压力的实测值与海洋工程中常用的经验公式的计算值进行对比。实验结果表明,MFC的测量结果与我国规范的计算结果较吻合;与我国规范相比,5种入射波高产生的所有有效数据中,仅5 cm入射波高平均误差超过10%,为18.25%,12 cm入射波高平均误差最小,最小为2.56%。

    Abstract:

    Wave impact pressure is one of the important physical quantities in ocean engineering. The traditional method of measuring wave impact pressure using pressure sensors has single measurement results and poor stability. Therefore, it is necessary to find a new measuring element to replace pressure sensors. In this paper, MFC is used to measure the wave impact pressure of the model for a wave impact on a vertical plate. In order to verify the feasibility and accuracy of this measurement method, the measured values of wave impact pressure measured by MFC were compared with the calculated values of empirical formulas commonly used in ocean engineering. The experimental results show that the measurement results of MFC are in good agreement with the calculation results of our country′s specifications; compared with our country′s specifications, among all the effective data generated by the five incident wave heights, only the average error of the incident wave height of 5 cm exceeds 10%, which is 18.25%. The average error of the incident wave height of 12 cm is the smallest, with the smallest being 2.56%.

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黄禾艺,李正农,任志刚,范楠贵.基于压电纤维复合材料的波浪冲击压力传感器研究[J].电子测量技术,2024,47(14):26-34

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  • 在线发布日期: 2024-11-22
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