Risk mapping for oil-gas pipeline under mining-induced subsidence through analytical methods
Jiandong Ren1
Yixin Zhao2
Zhongbo Sun1
Shimin Liu3
1.Inner Mongolia Research Institute,China University of Mining and Technology-Beijing,Ordos 017001,China;School of Energy and Mining Engineering,China University of Mining and Technology-Beijing,Beijing 100083,China2.Inner Mongolia Research Institute,China University of Mining and Technology-Beijing,Ordos 017001,China;School of Energy and Mining Engineering,China University of Mining and Technology-Beijing,Beijing 100083,China;State Key Laboratory of Coal Resources and Safe Mining,China University of Mining and Technology-Beijing,Beijing 100083,China3.Department of Energy and Mineral Engineering,Energy Institute and G3 Center,The Pennsylvania State University,University Park,PA 16802,USA
摘要:Mining-induced surface subsidence often causes buried oil-gas pipelines deform,and the potential leakage risk can pose a safety hazard.In this work,a novel model for predicting the influence range of potential leakage risk from deformed pipelines was developed.First,the pipe instability deformation limit was corrected by the multi-indicator optimized screening method proposed in this paper.Then,the leakage risk influence radius of the pipe segment was defined by the failure probability.Next,the pipe segment' deformation and strength were assessed sequentially using the ratio and point methods.Combining the fuzzy logic inference method with the assessment results as input variable,and the failure probabilities as output vari-able,a quantitative assessment model for the pipeline leakage risk was established.Accordingly,the risk range and level of adjacent coal mines and surfaces were divided,and the verification method and forward countermeasures were proposed.Finally,an engineering case was used for analysis and verification.The results show that the gas pipeline with 650 m length was divided into seven regions and four risk levels.The influence radius of the risk levels from low to high were 12.75 m,25.5 m,38.25 m,and 51m,and the influence widths on the surface were 25.28 m,49.84 m,76.34 m,and 101.84 m,corre-spondingly.The nearest distances from the risk area to the mine and village were 212.65 m and 329.08 m.The assessment of potentially threatened areas is significantly simplified by the assessment model combined with pipeline deformation,which has great practical importance for risk management and disaster prevention in adjacent space.
机标关键词:pipelinethroughmappingriskanalyticalmethodsmining-inducedsubsidence
论文发表日期:2025-08-31
在线出版日期:2026-01-30(本平台首次上网日期,不代表文献的发表时间)
页数:23( 48-70 )
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国际煤炭科学技术学报(英文版)

国际煤炭科学技术学报(英文版)

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ISSN:2095-8293
年,卷(期):2025,12(4)
所属栏目:Research Articles