• 제목/요약/키워드: Phase Field

검색결과 3,214건 처리시간 0.035초

Nondestructive Evaluation of Railway Bridge by System Identification Using Field Vibration Measurement

  • Ho, Duc-Duy;Hong, Dong-Soo;Kim, Jeong-Tae
    • 비파괴검사학회지
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    • 제30권6호
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    • pp.527-538
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    • 2010
  • This paper presents a nondestructive evaluation approach for system identification (SID) of real railway bridges using field vibration test results. First, a multi-phase SID scheme designed on the basis of eigenvalue sensitivity concept is presented. Next, the proposed multi-phase approach is evaluated from field vibration tests on a real railway bridge (Wondongcheon bridge) located in Yangsan, Korea. On the steel girder bridge, a few natural frequencies and mode shapes are experimentally measured under the ambient vibration condition. The corresponding modal parameters are numerically calculated from a three-dimensional finite element (FE) model established for the target bridge. Eigenvalue sensitivities are analyzed for potential model-updating parameters of the FE model. Then, structural subsystems are identified phase-by-phase using the proposed model-updating procedure. Based on model-updating results, a baseline model and a nondestructive evaluation of test bridge are identified.

상분리 모선의 자계 및 와전류 특성 해석 (Analysis of the Magnetic Field and Eddy Current Characteristics in Isolated Phase Bus System)

  • 김진수;하덕용;최승길;강형부
    • 대한전기학회논문지:전기물성ㆍ응용부문C
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    • 제50권10호
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    • pp.509-516
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    • 2001
  • Isolated phase bus(IPS) has a special structure for carrying large current generated by a generator to a main transformer. In the analysis of IPB, the understanding of the magnetic field distribution generated by large current is important. Especially, while the bus conductor current is flowing, almost same amount of current as bus conductor current is induced in the enclosures under the influence of time varying magnetic field, and therefore the large electric loss and the deterioration of insulating capability might occur due to Joule heating effect. Hence for the optimal design of IPB satisfying the condition to minimize the loss, the accurate analysis of magnetic field distribution and the eddy current characteristics of three phase isolated phase bus have been investigated. In the analysis of time varying magnetic field, instead of finite difference method(FDM) which is generally used, finite element method with phasor concept is investigated under the assumption that the bus current is purely sinusoidal. The characteristics is studied along the phase angle by comparing the effect of eddy current on the magnetic field distribution with the case that eddy current is not considered, and also the effect of material, thickness and radius of enclosure on the eddy current distribution is discussed.

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Three-phase-lag model on a micropolar magneto-thermoelastic medium with voids

  • Alharbi, Amnah M.;Othman, Mohamed I.A.;Al-Autabi, Al-Anoud M. Kh.
    • Structural Engineering and Mechanics
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    • 제78권2호
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    • pp.187-197
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    • 2021
  • This paper harnesses a micropolar thermoelastic medium consisting of voids to scrutinize the impacts of a magnetic field on it. To assess the problem, the three-phase-lag model (3PHL) has been employed and the analytical expressions of various variables under consideration have been derived using normal model analysis. The paper presents a graphical illustration of the material's stress, temperature, and dimensionless displacement. It has also been ensured that the predictions associated with results by different theories are not neglected instead; they are used to carry out appropriate comparisons in scenarios where the magnetic field is present as well as absent. The numerical results indicate that the magnetic field and the phase-lag of heat flux play a vital role in determining the distribution of field quantities. Thus, the investigation helped derive various interesting cases.

건축장 개념을 적용한 설계과정 연구 (The Study of the Process of Design on the Application of the Architectural Field Concept)

  • 이승용
    • 한국산학기술학회논문지
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    • 제13권8호
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    • pp.3698-3703
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    • 2012
  • 건축설계과정은 프로그래밍 단계와 디자인 단계로 구분된다. 현대물리학 개념에 기초한 현대건축이론은 자료를 통합하는 디자인 단계에 적용되어 설계된다. 건축장 또한 디자인 단계에서 진행된다. 건축장은 건축장 특성으로 일체성, 상호성, 영역성을 구현하여 설계가 된다. 그리고 이 특성은 설계 시 고려하는 사항 및 접근하는 관점과 사고의 범위에 따라 영역성, 상호성, 일체성의 설계과정으로 진행이 된다. 영역성 설계는 주변 환경 및 구조물 등과 대지의 관계조직체계를 계획한다. 상호성 설계는 건축물이나 공간 등 상호 영향을 주고받는 상호간의 관계망을 계획한다. 일체성 설계는 공간과 건축물이 만나는 방식을 설계하는 것이다. 영역성과 상호성에서 설정된 설계 방향을 구현하고자 어떠한 방식이나 형상을 계획할 것인지에 관하여 구체적인 내용을 계획하게 된다. 결론적으로 건축장 특성을 정의하는 일련의 설계과정에 의하여 건축장이 만들어 진다.

위상평균 PTV 기법을 이용한 축류 홴 주위 유동의 속도장 측정 연구 (Velocity Field Measurement of Flow Around an Axial Fan Using a Phase Averaged 2-Frame PTV Technique)

  • 최제호;김형범;이상준;이인섭
    • 대한기계학회논문집B
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    • 제24권1호
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    • pp.114-123
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    • 2000
  • The flow structure around a rotating axial-fan was experimentally investigated using a phase averaging velocity field measurement technique. The fan blades were divided into 4 different phases, for which 500 velocity fields were acquired for each phase angle with a 2-frame PTV system. Velocity field measurements were also carried out at two planes parallel to the axis of rotation, with offsets toward the radial direction of the fan. For accurate synchronization of the PTV system with the phase of the axial fan, two synchronization circuits were employed with a photo-detector attached to the rotating shaft. The phase averaged velocity fields show periodic variations with respect to the blade phase. The periodic formation of vortices at the blade tip is also observed in vorticity contour plots. Locations of local maximum turbulence intensities in the axial and radial directions are found to be located in an alternating pattern. These experimental results can be used to validate numerical calculations and to understand the flow characteristics of an axial fan.

The effect of magnetic field and inclined load on a poro-thermoelastic medium using the three-phase-lag model

  • Samia M. Said
    • Geomechanics and Engineering
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    • 제37권3호
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    • pp.243-251
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    • 2024
  • In the current work, a poro-thermoelastic half-space issue with temperature-dependent characteristics and an inclined load is examined in the framework of the three-phase-lag model (3PHL) while taking into account the effects of magnetic and gravity fields. The resulting coupled governing equations are non-dimensional and are solved by normal mode analysis. To investigate the impacts of the gravitational field, magnetic field, inclined load, and an empirical material constant, numerical findings are graphically displayed. MATLAB software is used for numerical calculations. Graphs are used to visualize and analyze the computational findings. It is found that the physical quantities are affected by the magnetic field, gravity field, the nonlocal parameter, the inclined load, and the empirical material constant.

상장모델과 유한요소법의 연계해석을 통한 변태소성 전산모사 (Numerical Calculation of Transformation Plasticity Using a FE Analysis Coupled with n Phase Field Model)

  • 조이길;김진유;차필령;이재곤;한흥남
    • 한국소성가공학회:학술대회논문집
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    • 한국소성가공학회 2009년도 춘계학술대회 논문집
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    • pp.318-321
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    • 2009
  • Transformation plasticity is that when a phase transformation of ferrous or non-ferrous alloys progresses even under an extremely small applied stress compared with a yield stress of the material, a permanent deformation occurs. One of widely accepted description for the transformation was proposed by Greenwood and Johnson [1]. Their description is based on an assumption that a weaker phase of an ideal plastic material could deform plastically to accommodate the externally applied stress and the internal stress caused by the volumetric change accompanying the phase transformation. In this study, an implicit finite element model was developed to simulate the deformation behavior of a low carbon steel during phase transformation. The finite element model was coupled with a phase field model, which could simulate the kinetics for ferrite to austenite transformation of the steel. The thermo-elasto-plastic constitutive equation for each phase was adopted to confirm the weaker phase yielding, which was proposed by Greenwood and Johnson [1]. From the simulation, the origin of the transformation plasticity was quantitatively discussed comparing with the other descriptions of it.

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리튬 이차전지의 양극 내부 이온 확산 및 상변화 특성 연구 (Study of Li-Ion Diffusion and Phase Transition in Cathode of Li-Ion Battery)

  • 김수일;김동철
    • 대한기계학회논문집B
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    • 제37권7호
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    • pp.665-667
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    • 2013
  • 리튬이온 전지의 양극은 다양한 종류의 전이금속재료로 구성되며, 전지의 성능은 양극을 구성하는 금속재료에 의해 많은 영향을 받는다. 이는, 양극 내부에서 리튬이온의 확산 및 상전이 양상이 재료마다 서로 다르게 나타나기 때문이다. 따라서, 충방전 시 양극 내부 리튬이온의 확산 및 상전이를 이해하는 것은 고용량, 고전압 리튬 이차전지를 설계하기 위해 필수적이다. 본 연구에서는 phase field model을 바탕으로 양극 내부의 리튬이온 확산 및 상전이 과정을 분석한다.

수중에서 진동하는 구조물로부터 방사되는 음에 기인한 레이저 도플러 진동측정기 광선의 위상변화에 대한 분석 (Analysis of the Phase Change of a Laser Beam in a Laser Doppler Vibrometer Due To the Sound Field Radiated From Structures Vibrating Underwater)

  • 길현권
    • 한국음향학회지
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    • 제27권4호
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    • pp.178-182
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    • 2008
  • 레이저 도플러 진동 측정기를 사용하여 수중 구조물의 진동을 측정하는 경우, 구조물의 표면으로부터 레이저 광선이 겪는 위상 변화를 감지함으로써 진동을 측정하게 된다. 이 경우 레이저 광선은 진동하는 구조물 표면으로부터 방사되는 방사 음장을 통과하게 되며, 이러한 방사 음장에 의한 굴절률 변화에 의하여서도 레이저 광선은 위상 변화를 겪게 된다. 구조물의 진동을 측정하기 위하여서는 표면 진동 자체에 의한 레이저 광선의 위상 변화만을 감지하여야 하지만, 방사 음장의 굴절률 변화에 의한 레이저 광선의 위상 변화가 추가로 발생하여 진동 측정값에 오차를 발생시키게 된다. 이러한 오차는 공기중에서는 무시할 수 있을 정도로 작은 값이지만, 특히 수중에서는 구조물의 진동 측정값에 상당한 오차를 발생시킬 수 있게 된다. 본 논문에서는 수중에서의 방사 음장에 의한 레이저 광선의 위상 변화를 분석하였다. 예로써 수중에서 진동하는 무한 원통형 구조물로부터 방사 음장에 의한 레이저 광선의 위상 변화를 예측하고 분석하였다.