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首页> 外文期刊>Journal of Explosives Engineering >Direct Stress Monitoring of Pipelines and Development of Limitations-A Case Study
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Direct Stress Monitoring of Pipelines and Development of Limitations-A Case Study

机译:直接应力监测管道和局限性的发展 - 以案例研究

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摘要

A segment of high-pressure steel petroleum pipeline needed to be replaced on a hillside and beneath a waterway within an existing right-of-way containing multiple petroleum pipelines.The pipeline replacement required excavation of sedimentary rock to allow placement of the new pipe.As a result of an existing right-of-way limitation,steep slopes,and hard rock,blasting would be required as close as 7.8 meters(25 feet)from two operating pipelines.Existing pipeline company standards would have effectively precluded the construction of the replacement pipe by blasting rock.To facilitate the required construction and evaluate actual pipe stress during blasting to ensure pipeline integrity,a comprehensive evaluation methodology was developed by a team of pipeline,mechanical,geotechnical,instrumentation,and blasting engineers.A total of 60 strain gauges were affixed to the steel pipe and seismographs were buried at the surface near the blasting area.Test blasting allowed pipe stresses with corresponding ground motion to be monitored.A conservative analysis approach evaluated individual peak strains and revealed that only small pipeline strains,and therefore stresses,were induced in the pipeline as a result of blasting.This evaluation allowed specific procedures to be developed to inform the blasting operation of maximum explosive loading and minimum charge distances.Additionally,this effort provided the pipeline operator with appropriate pipeline operating pressures during blasting activities to limit total stresses in the pipeline to be below allowable stresses imposed by code,regulators,and company operational limitations.Recommendations were developed to measure the blast generated ground vibrations with seismographs buried at the depth of the pipe,near the pipe,and limit the ground vibrations from blasting to 150 mm/s(6 in/s).If ground vibration intensities of 120 mm/s(4 in/s)or more were observed,additional engineering review is recommended.Finally,all blasting would be suspended and all activities reviewed at peak ground vibration intensities of 230 mm/s(9 in/s).The evaluation effort resulted in effective and efficient construction of the pipeline replacement and allowed the pipeline operator to better understand blasting induced stresses on their assets.
机译:需要在山坡上替换的高压钢油钢油管道,并在含有多个石油管道的现有途中更换。管道更换需要抛弃岩石以允许放置新的管道。现有的通行方式,陡坡和硬岩,爆破的结果是从两个操作管道的7.8米(25英尺)的爆破。提示管道公司标准将有效地排除了更换的建设通过爆破岩石管道。为了确保管道完整性,促进所需的施工并评估实际的管道应力,通过管道,机械,岩土,仪表和爆破工程师组建综合评估方法。总共60个应变仪被粘贴在钢管,地震仪埋在爆破区域附近的表面上。最终爆破允许的管道胁迫响应要监测的接地运动。保守分析方法评估单个峰菌株,并显示出在管道中仅在管道中诱导小型管道菌株,因此应力。此评估允许开发特定程序以告知爆破最大爆炸性装载和最小电荷距离的运行。加法,这项工作提供了管道运营商在爆破活动期间具有适当的管道操作压力,以限制管道中的总压力,低于代码,监管机构和公司运营限制的允许应力。被开发用于测量爆破管道深处埋在管道深处的地震仪的爆破产生的地面振动,并将地面振动限制在爆破至150 mm / s(6英寸/ s).if振动强度为120 mm /观察到(4 IN / S)或更多,建议额外的工程审查。最后,所有爆破都会b e暂停,所有活动均在230 mm / s(9英寸/秒)的峰值地面振动强度。评估工作导致管道更换的有效和有效的建设,并允许管道运营商更好地了解爆破诱导的资产压力。

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