• 제목/요약/키워드: Pipeline transportation

검색결과 70건 처리시간 0.021초

Pipeline deformation caused by double curved shield tunnel in soil-rock composite stratum

  • Ning Jiao;Xing Wan;Jianwen Ding;Sai Zhang;Jinyu Liu
    • Geomechanics and Engineering
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    • 제36권2호
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    • pp.131-143
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    • 2024
  • Shield tunneling construction commonly crosses underground pipelines in urban areas, resulting in soil loss and followed deformation of grounds and pipelines nearby, which may threaten the safe operation of shield tunneling. This paper investigated the pipeline deformation caused by double curved shield tunnels in soil-rock composite stratum in Nanjing, China. The stratum settlement equation was modified to consider the double shield tunneling. Moreover, a three dimensional finite element model was established to explore the effects of hard-layer ratio, tunnel curvature radius, pipeline buried depth and other influencing factors. The results indicate the subsequent shield tunnel would cause secondary disturbance to the soil around the preceding tunnel, resulting in increased pipeline and ground surface settlement above the preceding tunnel. The settlement and stress of the pipeline increased gradually as buried depth of the pipeline increased or the hard-layer ratio (the ratio of hard-rock layer thickness to shield tunnel diameter within the range of the tunnel face) decreased. The modified settlement calculation equation was consistent with the measured data, which can be applied to the settlement calculation of ground surface and pipeline settlement. The modified coefficients a and b ranged from 0.45 to 0.95 and 0.90 to 1.25, respectively. Moreover, the hard-layer ratio had the most significant influence on the pipeline settlement, but the tunnel curvature radius and the included angle between pipeline and tunnel axis played a dominant role in the scope of the pipeline settlement deformation.

송유관 요율결정 지원시스템의 개발 및 활용 (Development and Application of a Decision Support System for the Oil Pipeline Transportation and Storage Rates)

  • 송성헌;김우제;이문배
    • 경영과학
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    • 제16권1호
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    • pp.51-61
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    • 1999
  • Pipeline is an important transportation mode for ail products. The popeline transportation and storage rates affect the popeline usage, and the popeline usage also affects the transportation revenue and operating costs of the popeline. The purpose of our study is to develop a decision support system simulating popeline transportation and storage rates for maximizing the utilization and profitability of the oil pipeline and apply it to the real situation. To do this, a simulation model to help the decision maker decide the rates of the oil pipeline is first proposed. Second, a simulation program is developed, which enables the user to evaluate the various scenarios of oil transportation and storage rates. Finally, this program is applied to the case study of oil industry in korea.

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CO2 배관의 연속연성파괴 분석 (Analysis on Dynamic Ductile Fracture of Transportation Pipeline for Carbon Dioxide Capture and Storage System)

  • 정효태;최병학;김우식;백종현
    • 한국가스학회지
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    • 제18권3호
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    • pp.13-19
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    • 2014
  • 이산화탄소 포집 및 저장 시스템(CCS, Carbon dioxide Capture and Storage system)의 수송배관에 대한 연속연성파괴(DDF, Dynamic Ductile Fracture)를 연구하기 위하여 Battlle Two Curve법(BTCM)으로 CCS수송배관의 연속연성파괴거동을 해석하여 천연가스 수송배관의 연속연성파괴거동과 비교하였다. 또한, $CO_2$배관에서의 배관두께 및 사용온도에 따른 연속연성파괴 민감도를 분석함으로써 연속연성파괴에 대한 사용기준을 해석하였다. 우리나라 기후조건에 따른 $CO_2$배관두께와 수송압력 사용기준을 분석하였으며, 상온의 경우에는 기존의 천연가스용 배관을 $CO_2$배관으로 사용하기 위해서는 배관두께가 7mm이상이어야 하고 수송압력은 54bar이하이어야 함을 해석하였다.

Strain demand prediction method for buried X80 steel pipelines crossing oblique-reverse faults

  • Liu, Xiaoben;Zhang, Hong;Gu, Xiaoting;Chen, Yanfei;Xia, Mengying;Wu, Kai
    • Earthquakes and Structures
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    • 제12권3호
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    • pp.321-332
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    • 2017
  • The reverse fault is a dangerous geological hazard faced by buried steel pipelines. Permanent ground deformation along the fault trace will induce large compressive strain leading to buckling failure of the pipe. A hybrid pipe-shell element based numerical model programed by INP code supported by ABAQUS solver was proposed in this study to explore the strain performance of buried X80 steel pipeline under reverse fault displacement. Accuracy of the numerical model was validated by previous full scale experimental results. Based on this model, parametric analysis was conducted to study the effects of four main kinds of parameters, e.g., pipe parameters, fault parameters, load parameter and soil property parameters, on the strain demand. Based on 2340 peak strain results of various combinations of design parameters, a semi-empirical model for strain demand prediction of X80 pipeline at reverse fault crossings was proposed. In general, reverse faults encountered by pipelines are involved in 3D oblique reverse faults, which can be considered as a combination of reverse fault and strike-slip fault. So a compressive strain demand estimation procedure for X80 pipeline crossing oblique-reverse faults was proposed by combining the presented semi-empirical model and the previous one for compression strike-slip fault (Liu 2016). Accuracy and efficiency of this proposed method was validated by fifteen design cases faced by the Second West to East Gas pipeline. The proposed method can be directly applied to the strain based design of X80 steel pipeline crossing oblique-reverse faults, with much higher efficiency than common numerical models.

극한지 천연가스 수송배관의 열유동적 특성 (Thermo-Fluid Characteristics of Pipeline Transportation of Natural Gas at Artic & Northern Ice Environments)

  • 김호연;김영표;김우식
    • 한국가스학회지
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    • 제19권5호
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    • pp.104-111
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    • 2015
  • 극한지 천연가스 수송배관망의 기술개발은 동토지역의 특수성을 고려해야 하는 매우 흥미롭고 도전적인 분야로서 본 연구는 수송배관의 핵심기술을 파악하기 위하여 극한지 애로기술에 대한 문헌조사와 주요 영향인자를 파악하였다. 특히, 열유동 고려사항에 대한 문헌조사를 통하여 극한지 천연가스 수송배관망 유동확보기술을 개발하기 위한 이론적 접근 주제를 정할 수 있었고, 또한 이론 해석을 통한 기본적인 결과를 도출할 수 있었다.

Anticorrosive Monitoring and Complex Diagnostics of Corrosion-Technical Condition of Main Oil Pipelines in Russia

  • Kosterina, M.;Artemeva, S.;Komarov, M.;Vjunitsky, I.;Pritula, V.
    • Corrosion Science and Technology
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    • 제7권4호
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    • pp.208-211
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    • 2008
  • Safety operation of main pipelines is primarily provided by anticorrosive monitoring. Anticorrosive monitoring of oil pipeline transportation objects is based on results of complex corrosion inspections, analysis of basic data including design data, definition of a corrosion residual rate and diagnostic of general equipment's technical condition. All the abovementioned arrangements are regulated by normative documents. For diagnostics of corrosion-technical condition of oil pipeline transportation objects one presently uses different methods such as in-line inspection using devices with ultrasonic, magnetic or another detector, acoustic-emission diagnostics, electrometric survey, general external corrosion diagnostics and cameral processing of obtained data. Results of a complex of diagnostics give a possibility: $\cdot$ to arrange a pipeline's sectors according to a degree of corrosion danger; $\cdot$ to check up true condition of pipeline's metal; $\cdot$ to estimate technical condition and working ability of a system of anticorrosive protection. However such a control of corrosion technical condition of a main pipeline creates the appearance of estimation of a true degree of protection of an object if values of protective potential with resistive component are taken into consideration only. So in addition to corrosive technical diagnostics one must define a true residual corrosion rate taking into account protective action of electrochemical protection and true protection of a pipeline one must at times. Realized anticorrosive monitoring enables to take a reasonable decision about further operation of objects according to objects' residual life, variation of operation parameters, repair and dismantlement of objects.

유량 밸런스 특성을 활용한 송유관 누유 감지 시스템의 오알람 필터링 알고리즘 개발 (False Alarm Filtering Algorithm Development of Pipeline Leak Detection System using Flow Volume Balance)

  • 김민성;김희식;정해균
    • 전자공학회논문지
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    • 제53권10호
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    • pp.95-102
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    • 2016
  • 육상에서 석유 제품의 수송에 가장 많이 활용되는 방법이 송유관을 이용하는 방법이다. 그러나 누유 혹은 도유로 인한 대형사고 및 환경 재해의 위험이 있기 때문에 일반적으로 누유 감지 시스템 (Leak Detection System)을 활용하여 이에 대처하고 있다. 장거리 송유관에 많이 활용되는 방법은 저압확장파((Negative Pressure Wave)를 활용한 누유 감지 기법인데 저압확장파 기반의 시스템은 감지 성능이 뛰어나지만 높은 오알람 발생률로 인하여 누유 알람의 신뢰성이 저하되는 단점이 있다. 본 논문에서는 송유관 양단의 유량 차이 (Volume Balance) 비교를 추가로 활용하여 저압확장파 기반 누유 감지 시스템의 오알람을 필터링하는 알고리즘과 실험 결과를 제시한다.

Analysis of Properties Influencing CO2 Transport Using a Pipeline and Visualization of the Pipeline Connection Network Design: Korean Case Study

  • Lee, Ji-Yong
    • International Journal of Contents
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    • 제13권1호
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    • pp.45-52
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    • 2017
  • Carbon Capture and Storage (CCS) technologies involve three major stages, i.e., capture, transport, and storage. The transportation stage of CCS technologies has received relatively little attention because the requirements for $CO_2$ transport differ based on the industry-related conditions, geological, and demographical characteristics of each country. In this study, we analyzed the properties of $CO_2$ transport using a pipeline. This study has important implications for ensuring the stability of a long-term CCS as well as the large cost savings, as compared to the small cost ratio as a percentage of the entire CCS system. The state of $CO_2$, network topologies, and node distribution are among the major factors that influence $CO_2$ transport via pipelines. For the analysis of the properties of $CO_2$ transport using a pipeline, the $CO_2$ pipeline connections were visualized by the simulator developed by Lee [11] based on the network topologies in $CO_2$ transport. The case of Korean CCS technologies was applied to the simulation.

튜브운송시스템 경제성과 성능요구조건 (Economic Feasibility and Basic Technical Requirements for Tube Transportation System)

  • 이진선;임관수;남두희;권혁빈;김정렬
    • 한국철도학회논문집
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    • 제11권5호
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    • pp.513-518
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    • 2008
  • 새로운 운송시스템은 기술개발뿐 아니라, 경제성 확보가 필수적인 요소이며, 튜브운송시스템은 현재 개발 초기 단계로서 다양한 기술이 제안피고는 있으나 세계적으로 상용화된 사례는 없는 실정이다. 따라서 튜브운송 시스템의 개념설계 단계에서부터 경제성을 고려한 성능조건을 설정하고 이를 설계 요구조건에 반영함으로써 사회적으로 유의미한 기술의 개발이 가능할 것으로 생각된다. 국내에서 과거 대중교통문제를 해결하기 위하여 신 교통수단을 도입하였으나 도입당시 기술적 문제 및 경제성을 고려하지 않음으로 경쟁력 있는 교통수단이 되고 있지 못한 실정이다. 그러므로 본 연구에서는 튜브운송시스템의 개념설계를 위한 설계 요구조건 확립을 위하여 경제성을 고려한 튜브운송시스템의 성능조건을 도출고자 하였다. 이에 우선적으로 타당성 분석방법론을 검토하고 이에 따른 비용/편익을 산출하였으며 수단간 비교분석 및 사례분석을 통하여 화물운송을 위한 튜브운송시스템 최소 성능조건을 도출하였다.