• 제목/요약/키워드: pipe deformation

검색결과 295건 처리시간 0.023초

전자전단 간섭법을 이용한 플랜지 용접부 내부 결함 측정에 관한 연구 (A Study on the Measurement of the Internal Crack in Flange Welding Zone by Digital Shearography)

  • 김정필;강영준;박상규
    • 한국정밀공학회지
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    • 제26권1호
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    • pp.97-104
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    • 2009
  • There is a many kinds with nondestructive testing such as RT and UT representatively. Referred before two testing methods there is a limit which is spatial such as nuclear pipe, small vessel, sealing up vessel. So a new technique needs to overcome the limit which is spatial. shearography will be able to overcome the limit which is spatial. This paper introducing shearography which was known as non-contact full-field testing method and It is an interferometric technique for measurement of surface deformation such as displacement or displacement gradient. Also, a research about internal defect of the flange welding zone was accomplished. About variation with method pressurized with the Gaseous Nitrogen. Phase map where is various were measured according to changing a sheared direction, size of crack and loaded pressure. Consequently, crack quantitatively to be detected qualitatively was measured by using shearography.

지중매설관로의 거동특성 해석을 위한 관.지반 상호작용력의 산정 (Estimation of Pipeline.Soil Interaction Force for the Response Analysis of Buried Pipeline)

  • 김태욱;임윤묵;김문겸
    • 한국지진공학회논문집
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    • 제7권3호
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    • pp.57-67
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    • 2003
  • Response analysis of buried pipeline subjected to permanent ground deformation(PGD) due to liquefaction is mainly executed by use of numerical analysis or semi-analytical relationship, When applying these methods, so called interfacial pipelineㆍsoil interaction force plays an dominant part. Currently used interaction force is mode up of indispensable mechanical and physical components for the response analysis of buried pipeline. However, it has somewhat limited applicability to the liquefied region since it is based on the experimental results for the non-liquefied region. Therefore, in this study, improved type of pipelineㆍsoil interaction force is proposed based on the existing interaction force and experimental research accomplishments. Above all, proposed interaction force includes various patterns of PGD or spatial distributions of interaction force caused by the decrease of soil stiffness. Through the comparison of numerical results using the proposed and the existing interaction force, relative influences of interaction force on the response of pipeline are evaluated and noticeable considerations in the application of semi-analytical relationship are discussed. Moreover, analyses due to the change of pipe thickness and burial depth are performed.

실내실험에 의한 수평보강재로 보강된 터널막장의 거동 (Behavior of a tunnel face reinforced with longitudinal pipes - laboratory investigation)

  • 유충식;양기호
    • 한국터널지하공간학회 논문집
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    • 제4권2호
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    • pp.91-100
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    • 2002
  • 본 논문에서는 수평보강재로 보강된 터널막장의 거동에 관한 내용을 다루었다. 터널막장 보강공법에 있어서 보강조건이 막장의 수평변위 및 지표침하에 미치는 영향을 고찰하기 위해 축소 모형실험을 수행하였다. 실험결과 수평보강재로 터널막장을 보강할 경우 막장의 변위 및 지표침하가 현저히 감소하는 것으로 나타나 도심지 터널시공에 있어서 지반거동 억제를 위한 보조 공법으로서 효과적으로 적용될 수 있는 것으로 나타났다. 아울러 지반거동 억제 효과는 보강조건에 따라 현저히 차이를 보이는 것으로 나타났다. 본 고에서는 연구결과를 종합하여 실무 적용시 주안점을 고찰하였다.

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모래자갈과 암반의 복합지층에 시공한 저심도 터널의 사례연구 (Case Study of a Shallow Tunnelling Through Complex Strata of Sand-Gravel and Rock Mass)

  • 김치환
    • 터널과지하공간
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    • 제25권3호
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    • pp.244-254
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    • 2015
  • 모래와 자갈이 암반 위에 퇴적된 지층에서 터널의 윗부분이 지하수가 많은 모래자갈층을 통과하는 상황에서 터널을 시공하였다. 지상의 일부 곡선구간에 빌딩들도 있는 저심도 터널을 안전하게 시공하기 위하여 강도가 작고 지하수가 많은 터널천정부의 모래자갈이 터널 내로 낙하하는 유사현상(sand flow)을 예방해야 하였다. 이를 위하여 대구경강관다단그라우팅이나 제트그라우팅으로 터널주변 충적층을 굴착 전에 미리 보강한 후 터널을 시공하였다. 이와 같이 터널을 보강한 효과와 지상빌딩의 안전을 시공 중 계측을 통하여 확인하였다.

광섬유 간섭계 센서를 이용한 콘크리트 구조물의 내부 스트레인 측정 (The measurement of the internal strain of a concrete specimen using optical fiber interferometric sensors)

  • 이경진;박재희;강신원
    • 센서학회지
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    • 제10권6호
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    • pp.304-309
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    • 2001
  • 콘크리트 구조물의 내부 변형률을 측정할 수 있는 광섬유 간섭계 센서가 개발되어졌다. 광섬유 간섭계 센서는 11 mm 길이의 광섬유 Fabry-Perot 간섭계를 2 mm 지름의 스텐레스 강관 내부에 접착제로 고정하여 만들었다. 제작된 변형률 센서들은 $100{\times}100{\times}500\;mm^3$ 크기의 콘크리트 구조물 내부에 삽입되어 외부에서 구조물에 압력을 인가했을 때 구조물 내부의 변형률을 측정하였다. 센서들의 출력은 변형률 변화에 따라 선형적으로 변화하였다. 이를 바탕으로 실제 교량에 적용하여 변형률 센서의 광출력 특성을 살펴본 결과 우수한 변형 감지 특성을 보였으며, 실제 구조물에서 원거리측정에 이용도 가능하였다.

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장수명주택 벽배관 시스템의 양변기 하중저항성에 대한 실험적 연구 (An Experimental Study on the Load Resistance of Toilet Bowl in Long-Life Housing Infill System)

  • 이종호;서동구;김은영;황은경
    • 한국건축시공학회:학술대회논문집
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    • 한국건축시공학회 2019년도 춘계 학술논문 발표대회
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    • pp.211-212
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    • 2019
  • It is possible to realize the concept of long-life housing by utilizing the wall piping infill system. However, when using the wall piping infill system, there is no detailed standard in Korea. Problems may occur in actual use. In this study, we use the results obtained from the performance test method as a basic data. Since the load resistance test of the toilet is not available in Korea, GB 6952 (Sanitary wares) of China is applied. According to the experiment of load resistance of the toilet in this study, the strain recovery ability was good. However, it is not possible to exclude the possibility of permanent deformation of the toilet seat due to long - term repeated loading. Therefore, it is necessary to consider the stiffness enhancement of the wall (steel frame) to the fixing part when installing the toilet in the wall pipe infill system.

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Low-cycle fatigue evaluation for girth-welded pipes based on the structural strain method considering cyclic material behavior

  • Lee, Jin-Ho;Dong, Pingsha;Kim, Myung-Hyun
    • International Journal of Naval Architecture and Ocean Engineering
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    • 제12권1호
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    • pp.868-880
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    • 2020
  • One of the main concerns in the structural integrity of offshore pipelines is mechanical damage from external loads. Pipelines are exposed to fatigue failure in welded joints due to geometric discontinuity. In addition, fatigue loads such as currents, waves, and platform motions may cause significant plastic deformation and fracture or leakage within a relatively low-cycle regime. The 2007 ASME Div. 2 Code adopts the master S―N curve for the fatigue evaluation of welded joints based on the mesh-insensitive structural stress. An extension to the master S―N curve was introduced to evaluate the low-cycle fatigue strength. This structural strain method uses the tensile properties of the material. However, the monotonic tensile properties have limitations in describing the material behavior above the elastic range because most engineering materials exhibit hardening or softening behavior under cyclic loads. The goal of this study is to extend the cyclic stress-strain behavior to the structural strain method. To this end, structural strain-based procedure was established while considering the cyclic stress-strain behavior and compared to the structural strain method with monotonic tensile properties. Finally, the improved prediction method was validated using fatigue test data from full-scale girth-welded pipes.

Three-dimensional numerical parametric study of tunneling effects on existing pipelines

  • Shi, Jiangwei;Wang, Jinpu;Ji, Xiaojia;Liu, Huaqiang;Lu, Hu
    • Geomechanics and Engineering
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    • 제30권4호
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    • pp.383-392
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    • 2022
  • Although pipelines are composed of segmental tubes commonly connected by rubber gasket or push-in joints, current studies mainly simplified pipelines as continuous structures. Effects of joints on three-dimensional deformation mechanisms of existing pipelines due to tunnel excavation are not fully understood. By conducting three-dimensional numerical analyses, effects of pipeline burial depth, tunnel burial depth, volume loss, pipeline stiffness and joint stiffness on bending strain and joint rotation of existing pipelines are explored. By increasing pipeline burial depth or decreasing tunnel cover depth, tunneling-induced pipeline deformations are substantially increased. As tunnel volume loss varies from 0.5% to 3%, the maximum bending strains and joint rotation angles of discontinuous pipelines increase by 1.08 and 9.20 times, respectively. By increasing flexural stiffness of pipe segment, a dramatic increase in the maximum joint rotation angles is observed in discontinuous pipelines. Thus, the safety of existing discontinuous pipelines due to tunnel excavation is controlled by joint rotation rather than bending strain. By increasing joint stiffness ratio from 0.0 (i.e., completely flexible joints) to 1.0 (i.e., continuous pipelines), tunneling-induced maximum pipeline settlements decrease by 22.8%-34.7%. If a jointed pipeline is simplified as a continuous structure, tunneling-induced settlement is thus underestimated, but bending strain is grossly overestimated. Thus, joints should be directly simulated in the analysis of tunnel-soil-pipeline interaction.

On the snap-buckling phenomenon in nanocomposite curved tubes

  • Dan Chen;Jun Shao;Zhengrong Xu;Hadi Babaei
    • Structural Engineering and Mechanics
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    • 제89권1호
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    • pp.13-22
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    • 2024
  • The nonlinear snap-through buckling of functionally graded (FG) carbon nanotube reinforced composite (CNTRC) curved tubes is analytically investigated in this research. It is assumed that the FG-CNTRC curved tube is supported on a three-parameter nonlinear elastic foundation and is subjected to the uniformly distributed pressure and thermal loads. Properties of the curved nanocomposite tube are distributed across the radius of the pipe and are given by means of a refined rule of mixtures approach. It is also assumed that all thermomechanical properties of the nanocomposite tube are temperature-dependent. The governing equations of the curved tube are obtained using a higher-order shear deformation theory, where the traction free boundary conditions are satisfied on the top and bottom surfaces of the tube. The von Kármán type of geometrical non-linearity is included into the formulation to consider the large deflection in the curved tube. Equations of motion are solved using the two-step perturbation technique for nanocomposite curved tubes which are simply-supported and clamped. Closed-form expressions are provided to estimate the snap-buckling resistance of FG-CNTRC curved pipes rested on nonlinear elastic foundation in thermal environment. Numerical results are given to explore the effects of the distribution pattern and volume fraction of CNTs, thermal field, foundation stiffnesses, and geometrical parameters on the instability of the curved nanocomposite tube.

저토피고 대단면 정거장터널의 설계 (Design on the large section of station tunnel under shallow overburden)

  • 정윤영;최해준;김병주;유봉운;김용일;오성진
    • 한국터널지하공간학회 논문집
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    • 제9권2호
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    • pp.171-182
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    • 2007
  • 도심지 개착구간의 교통 및 환경적인 영향을 최소화하기 위하여 단면적 $200\;m^2$ 이상의 정거장터널이 퇴적암반 중에 계획되었으나 토피고가 13 m 이하인 설계조건에 직면하게 되었다. 본 연구에서는 패턴설계가 아닌 시공사례와 아칭효과 발현을 기초로 세 가지 요소 - 단면형상의 영향, 작용하중의 적용방법, 지보방안과 터널안정성분석 - 를 중심으로 설계방향이 논의되었다. 단면형상의 역학적인 영향에 기초하여 기본설계안과 연구단면안이 유도되었고, 지보방안은 터널천반부의 침하방지 및 역학적인 평형상태를 유지하기위한 파이프루프 보조공법과 NATM의 지보원리를 활용하였다. 두 설계안의 비교분석으로부터, 터널라이닝을 개착구조물의 연장선상에서 제약한 설계조건과 터널안정성 및 철근배근의 시공성에 대해 기본설계안이 적합한 방안임을 확인할 수 있었다. 그리고 동일한 건축한계로 아치부의 응력집중이 발생되지 않는 안정적인 응력분포를 나타내는 연구단면안의 분석결과에서 보듯이 향후 대단면터널 설계기술의 향상을 위해 단면형상의 영향과 이완하중의 적용방안이 심도 있게 검토되어야 함을 알 수 있다.

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