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Attenuation and Time-Frequency Characteristics of Explosion Ground Vibration of Shallow Buried OD1422-X80mm-12 MPa Pipeline Based on Prototype Experiment

机译:基于原型实验的浅埋OD14222-X80MM-12 MPA管道爆炸地面振动的衰减和时频特性

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In this paper, the explosion experiment of OD1422-X80mm-12 MPa natural gas pipeline was carried out to study the vibration hazards. The classic Sodev's empirical formula was improved to predict the vibration velocity of the gas pipeline explosion. At the same time, the fast Fourier-transform (FFT) was used to analyze the data. It was found that the vibration energy was mainly distributed in the range of 0-100 Hz, and there were several subfrequency centers. The Hilbert-Huang transform (HHT) method was used to decompose the vibration into time-frequency domain. It was shown that the pipeline explosion vibration presented multiple loading modes, and there were extremely low frequency (ELF) components that existed for a long time. The research results laid the foundation for further comprehensive analysis of the hazards of natural gas pipeline explosion, and provided reference for safety design of parallel pipeline and buildings. (C) 2019 American Society of Civil Engineers.
机译:本文采用OD1422-X80mm-12 MPa天然气管道的爆炸实验,以研究振动危险。 经典的SODEV的经验公式得到改进,以预测气体管道爆炸的振动速度。 同时,使用快速傅里叶变换(FFT)来分析数据。 结果发现,振动能量主要分布在0-100 Hz的范围内,并且有几个次频中心。 Hilbert-Huang变换(HHT)方法用于将振动分解为时频域。 结果表明,管道爆炸振动呈现多种加载模式,并且存在很长时间存在的极低频率(ELF)组件。 研究结果为进一步综合分析了天然气管道爆炸的危害,为平行管道和建筑物的安全设计提供了进一步综合分析的基础。 (c)2019年美国土木工程师协会。

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