• 제목/요약/키워드: Pipeline Transient Analysis

검색결과 47건 처리시간 0.03초

단부 경계조건을 고려한 매설관의 동적응답 해석 (II) (Analysis of Seismic Response of the Buried Pipeline with Pipe End Conditions (II))

  • 이병길;박병호;정진호
    • 한국지반공학회:학술대회논문집
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    • 한국지반공학회 2005년도 춘계 학술발표회 논문집
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    • pp.328-337
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    • 2005
  • This work reports results of our study on the dynamic responses of the buried pipelines both along the axial and the transverse directions under various boundary end conditions. We have considered three cases, i.e., the free ends, the fixed ends, and the fixed-free ends for the axial direction, and three more cases including the guided ends, the simply supported ends, and the supported-guided ends for the transverse direction. In order to investigate the effect of the boundary end conditions for the dynamic responses of the buried pipeline, we have devised a computer program to find the solutions of the formulae on the dynamic responses (displacements, axial strains, and bending strains) under the various boundary end conditions considered in this study. The dynamic behavior of the buried pipelines for the forced vibration is found to exhibit two different forms, a transient response and a steady state response, depending on the time before and after the transfer of a seismic wave on the end of the buried pipeline. The former is identified by a slight change in its behavior before the sinusoidal-shaped seismic wave travels along the whole length of the pipeline whereas the latter by the complete form of a sinusoidal wave when the wave travels throughout the pipeline. The transient response becomes insignificant as the wave speed increases. We have observed a resonance when the mode wavelength matches the wavelength of the seismic wave, where the mode number(k) of resonance for the axial direction is found to be $\overline{\omega}/{\pi}V+1/2$ for the fixed-free ends, $\overline{\omega}/{\pi}V+1$ for the free ends, and $\overline{\omega}/{\pi}V$ for the fixed ends, respectively. By adding 10 more modes to the mode number(k) of resonance, we were able to study all the dynamic responses of the buried pipeline for the axial direction. On the other hand, we have not been able to observe a resonance in the analysis for the transverse direction, because the dynamic responses are found to vanish after the seventh mode. From the results of the dynamic responses at the many points of the pipeline, we have found that the responses appeared to be dependent critically on the boundary end conditions. Such effects are found to be most prominent especially for the maximum values of the displacement and the strain and its position.

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Analysis of the fluid-solid-thermal coupling of a pressurizer surge line under ocean conditions

  • Yu, Hang;Zhao, Xinwen;Fu, Shengwei;Zhu, Kang
    • Nuclear Engineering and Technology
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    • 제54권10호
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    • pp.3732-3744
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    • 2022
  • To investigate the effects of ocean conditions on the thermal stress and deformation caused by thermal stratification of a pressurizer surge line in a floating nuclear power plant (FNPP), the finite element simulation platform ANSYS Workbench is utilized to conduct the fluid-solid-thermal coupling transient analysis of the surge line under normal "wave-out" condition (no motion) and under ocean conditions (rolling and pitching), generating the transient response characteristics of temperature distribution, thermal stress and thermal deformation inside the surge line. By comparing the calculated results for the three motion conditions, it is found that ocean conditions can significantly improve the thermal stratification phenomenon within the surge line, but may also result in periodic oscillations in the temperature, thermal stress, and thermal deformation of the surge line. Parts of the surge line that are more susceptible to thermal fatigue damage or failure are determined. According to calculation results, the improvements are recommended for pipeline structure to reduce the effects of thermal oscillation caused by ocean conditions. The analysis method used in this study is beneficial for designing and optimizing the pipeline structure of a floating nuclear power plant, as well as for increasing its safety.

유압관로에서의 캐비테이션 초생 (Cavitation Inception in Oil Hydraulic Pipeline)

  • 정용길
    • 수산해양기술연구
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    • 제23권3호
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    • pp.17-17
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    • 1987
  • 유압관로에서의 캐비테이션 발생 기구를 조사할 목적으로, 과도흐름에 수반하여 발생하는 캐비테이션 초생에 관한 실험 및 압력이 급강하 할 때의 기포 성장에 대한 계산을 행하였다. 실험에서 얻은 결과를 기초로 한 계산에서, 작동유가 절대압 영이하의 부압에 노출되어도 캐비테이션이 발생하지 않을 정도의 장력을 갖기 위해서는 소위 말하는 기포(기포 주위의 액체가 연속체로 간주될 수 있을 정도의 크기를 갖는 기포)가 유중에 존재할 가능성은 거의 없음이 입증되었다.

Seismic strain analysis of buried pipelines in a fault zone using hybrid FEM-ANN approach

  • Shokouhi, Seyed Kazem Sadat;Dolatshah, Azam;Ghobakhloo, Ehsan
    • Earthquakes and Structures
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    • 제5권4호
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    • pp.417-438
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    • 2013
  • This study was concerned on the application of a hybrid approach for analyzing the buried pipelines deformations subjected to earthquakes. Nonlinear time-history analysis of Finite Element (FE) model of buried pipelines, which was modeled using laboratory data, has been performed via selected earthquakes. In order to verify the FE model with experiments, a statistical test was done which demonstrated a good conformity. Then, the FE model was developed and the optimum intersection angle of pipeline and fault was obtained via genetic algorithm. Transient seismic strain of buried pipeline in the optimum intersection angle of pipeline and fault was investigated considering the pipes diameter, the distance of pipes from fault, the soil friction angles and seismic response duration of buried pipelines. Also, a two-layer perceptron Artificial Neural Network (ANN) was trained using results of FE model, and a nonlinear relationship was obtained to predict the bending strain of buried pipelines based on the pipes diameter, intersection angles of the pipelines and fault, the soil friction angles, distance of pipes from the fault, and seismic response duration; whereas it contains a wide range of initial input data without any requirement to laboratory measurements.

에어챔버가 설치된 가압펌프 계통에서의 수격현상 (Water Hammer in the Pump Pipeline System with an Air Chamber)

  • 김상균;이계복
    • 에너지공학
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    • 제16권4호
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    • pp.187-193
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    • 2007
  • 갑작스런 펌프 정지로 야기되는 수격현상은 과압이나 부압을 일으킬 수 있다. 과압을 줄이거나 부압을 방지하는 것은 계통설비의 피로를 피하고 작동효율을 향상시키기 위해 필요하다. 에어챔버가 설치된 펌프 관로 계에서 수격현상에 대한 현장시험을 수행하였다 또한 특성 곡선법을 사용하여 과도현상에 대한 수치해석을 수행하였다. 계통에 대한 헌장시험과 수치해석 결과를 비교하여 수치해석코드에 사용되는 주요 입력변수인 폴리트로픽 지수, 유량계수, 압력파의 속도에 대한 보정값 검증과 민감도 분석을 수행하였다. 수격현상을 최소화할 수 있는 에어챔버의 크기와 관련 변수의 영향이 현장시험과 수치해석을 통해 연구되었다.

원심펌프 관로계에 대한 임펄스 응답법 적용 연구 (Impulse response method for a centrifugal pump in pipeline systems)

  • 허지성;김현준;송용석;김상현
    • 상하수도학회지
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    • 제30권5호
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    • pp.481-489
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    • 2016
  • Method of characteristic(MOC) has been widely used as a transient analysis technique for pressurized pipeline systems. There are substantial studies using MOC for the water hammer triggered through instantaneous valve closures, pump stoppage and pump startup for pipelines systems equipped with a centrifugal pump. Considering restrictions of MOC associated with courant number condition for complicated pipeline systems, an impulse response method(IRM) was developed in the frequency domain. this study implements the impact of centrifugal pump using transfer function in frequency domain approach. Using pump performance curve and the affinity law, this study formulated transfer functions which relate complex pressure head at upstream of pump system to that of downstream location. Simulations of simple reservoir-pump-valve system using IRM with formulated transfer function were similar to those obtained through MOC.

과도수리현상 해석과 실증을 통한 펌프장 안정성 확보방안 (A Safety Plan for the Pumping Station by Hydraulic Transient Analysis and Demonstration)

  • 라병필;김진만;이동근;박종호;김경엽
    • 한국유체기계학회 논문집
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    • 제8권5호
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    • pp.22-28
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    • 2005
  • As the water supply facilities are recently getting larger, the domestic waterworks become multi-regional water supply system. Large water supply facilities generally consist of the intake pumping station, water treatment plant and water supply/distribution facilities. Although the pumping stations and the pipeline systems are used to pump up water, it often happens pipeline damage and flooding accident by the water hammer. In this paper, the intake pumping station is guaranteed by both the computer simulation and the field test analysis. This study is contributed to the safe operation program for the pumping station in which results of the adjustment on the safety plan of the pumping station, the air valve and the valve closing time.

과도수리현상 해석과 실증을 통한 펌프장 안정성 확보방안 (The Plan of Safety for Pump Station through Hydraulic Transient Analysis & Demonstration)

  • 라병필;김진만;박종호;김경엽
    • 유체기계공업학회:학술대회논문집
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    • 유체기계공업학회 2004년도 유체기계 연구개발 발표회 논문집
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    • pp.199-207
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    • 2004
  • Water supply facilities are recently getting larger according as domestic waterworks become multi regional water supply system. Large water supply facilities generally consist of the intake pumping station, water treatment station and water supply & distribution facilities. Although pumping stations and pipeline systems are used to pump up water, it often happens pipeline damage and flooding accident by the water hammer. As a result of this study, a pumping station is guaranteed by the computer simulation and field test analysis. Therefore these are contributed safety operation in pumping station through adjustment of the pumping station safety plan, air valve and valve closing time.

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고압 이산화탄소 파이프라인의 감압거동 특성에 관한 수치해석적 연구 (Numerical Analysis on Depressurization of High Pressure Carbon Dioxide Pipeline)

  • 허철;조맹익;강성길
    • 한국해양환경ㆍ에너지학회지
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    • 제19권1호
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    • pp.52-61
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    • 2016
  • 대용량의 $CO_2$를 지중에 저장하기 위한 CCS(Carbon Capture and Storage)는 고압의 파이프라인 수송공정을 수반한다. 또한, 사고 및 유지보수와 같은 비정상상태가 발생할 경우 고압의 $CO_2$를 대기 중으로 방출시키는 감압공정이 필요하다. 본 연구에서는 고압 $CO_2$ 파이프라인에서의 감압현상을 수치해석적 방법을 이용하여 분석하였다. 수치계산 결과를 실험데이터와 비교분석함으로써 수치해석의 예측 능력을 검증하였다. 수치모델이 기체-액체 혼합 구간에서의 2상 감압현상을 잘 예측하였다. 그러나 초임계 액체 단상 감압과 기체 단상 감압현상에 대해서는 온도변화 등을 예측하는데 한계가 있음을 밝혔다.

LES 난류모델을 이용한 초음속 증기 충돌제트의 과도하중 특성에 대한 수치해석 연구 (Numerical Analysis on the Transient Load Characteristics of Supersonic Steam Impinging Jet using LES Turbulence Model)

  • 오세홍;최대경;박원만;김원태;장윤석;최청열
    • 한국압력기기공학회 논문집
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    • 제14권2호
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    • pp.77-87
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    • 2018
  • In the case of high-energy line breaks in nuclear power plants, supersonic steam jet is formed due to the rapid depressurization. The steam jet can cause impingement load on the adjacent structures, piping systems and components. In order to secure the design integrity of the nuclear power plant, it is necessary to evaluate the load characteristics of the steam jet generated by high-energy pipe rupture. In the design process of nuclear power plant, jet impingement load evaluation was usually performed based on ANSI/ANS 58.2. However, U.S. NRC recently pointed out that ANSI/ANS 58.2 oversimplifies the jet behavior and that some assumptions are non-conservative. In addition, it is recommended that dynamic analysis techniques should be applied to consider transient load characteristics. Therefore, it is necessary to establish an evaluation methodology that can analyze the dynamic load characteristics of steam jet ejected when high energy pipe breaks. This research group has developed and validated the CFD analysis methodology to evaluate the transient behavior of supersonic impinging jet in the previous study. In this study, numerical study on the transient load characteristics of supersonic steam jet impingement was carried out and amplitude and frequency analysis of transient jet load was performed.