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爆炸载荷作用下埋地聚乙烯管的动力响应分析 被引量:1

Analysis on Dynamic Response of Buried Polyethylene Pipeline under Blasting Loads
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摘要 爆炸载荷作用下埋地管线的动力响应研究对管道附近的爆破施工设计和管道安全防护具有重要意义。数值模拟研究了4种相同标准尺寸比(管外径与壁厚的比值)的埋地聚乙烯(polyethylene,PE)管在爆炸载荷作用下的动态响应,初步揭示了PE管的振速、应变、应力和压力等指标参数的动响应规律。研究表明:PE管正对爆心截面处受横向振动影响最大,而管道正对爆心截面两侧受轴向振动影响最大;管道受压应变影响程度比拉应变大,易受压损伤;在误差允许范围内,4种相同标准尺寸PE管的动态响应参数(峰值振速、峰值环向压应变和峰值压力)可采用考虑场地系数和衰减系数的拟合公式进行预测分析。 Studying dynamic response of buried pipelines under blasting loads has great significance to the design of blasting construction near the pipelines and safety protection of the pipelines.Numerical study was used to reveal the dynamic response law of vibration velocity,strain,stress,and pressure of polyethylene(PE)pipelines with four kinds of the same standard dimension ratio(the ratio of outer diameter to thickness of pipe wall).The results show that the transverse vibration has the greatest influence on the cross section of PE pipe facing the explosion centre,and the axial vibration has the greatest influence on both sides of the cross section of PE pipe facing the explosion centre.The influence of compressive strain is greater than that of tensile strain,and the pipeline is easy to be damaged.Within the allowable error range,the dynamic response parameters(peak vibration velocity,peak circumferential compressive strain and peak pressure)of the four kinds of PE pipes with the same standard size can be predicted by the fitting formula considering site coefficient and attenuation coefficient.
作者 曲艳东 李正鹏 李帅清 吴敏 秦彦帅 张迪迪 QU Yan-dong;LI Zheng-peng;LI Shuai-qing;WU Min;QIN Yan-shuai;ZHANG Di-di(College of Civil Engineering, Dalian Nationalities University, Dalian 116650, China;School of Civil and Architectural Engineering, Liaoning University of Technology, Jinzhou 121001, China;Tianyuan Construction Group Co., Ltd., Linyi 276000, China)
出处 《科学技术与工程》 北大核心 2022年第17期6812-6817,共6页 Science Technology and Engineering
基金 国家自然科学基金(11302094) 辽宁省高等学校优秀人才项目(LJQ2014063) 辽宁省自然科学基金(20170540441)。
关键词 爆炸载荷 埋地管线 动力响应 数值模拟 blasting loads buried pipelines dynamic response numerical simulation
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