• 제목/요약/키워드: hybrid finite element model

검색결과 183건 처리시간 0.026초

경계요소-유한요소 혼합법에 의한 균열선단의 응력강도계수 계산 (제1보) (Stress Intensity Factor Calculation Using the Hybrid Formulation of Boundary and Finite Element Method (1st Report))

  • 노인식;임채환
    • 대한조선학회논문집
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    • 제35권4호
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    • pp.38-45
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    • 1998
  • 균열의 선단 부근에 대한 응력분포를 합리적으로 예측하기 위해서는 균열을 포함하는 구조물의 국부적인 형상을 정밀하게 모델링해야 하며 이것은 상당한 시간이 요구되는 어려운 작업이 될 수 밖에 없다. 따라서, 본 연구에서는 영역 내부의 요소분할이 필요 없는 경계요소법을 적용하여 균열 선단 부근의 복잡한 형상을 좀더 손쉽게 모델링하는 한편 나머지 부분은 기존의 유한요소법으로 모델링하여 이를 결합하는 해석할 수 있는 수치적 알고리즘을 연구하였다. 균열 선단 부근의 특이점 거동을 처리하기 위하여 다영역 경계요소법을 적용하고, 나머지 원방을 유한요소법을 적용하여 해석할 수 있도록 기존의 연성해석 기법을 수정, 발전시켜 다영역 경계 요소-유한요소 혼합형 정식화를 수행하였으며, 이를 바탕으로 2차원 탄성문제에 대한 수치계산을 수행함으로써 개발된 알고리즘의 타당성을 검토하였다.

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적분형 르장드르 함수에 의한 계층요소의 통용성 (A Robustness of Hierarchic Element Formulated by Integral s of Legendre Polynomial)

  • 우광성
    • 한국전산구조공학회:학술대회논문집
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    • 한국전산구조공학회 1991년도 가을 학술발표회 논문집
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    • pp.75-80
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    • 1991
  • The purpose of this study is to ascertain the robustness of p-version model with hierarchic intergrals of Legendre shape functions in various applications including plane stress/strain, axisymmetric and shell problems. The most important symptoms of accuracy failure in modern finite elements are spurious mechanisms and a phenomenon known as locking which are exhibited for incompressible materials and irregular shapes which contain aspect ratios(R/t, a/b), tapered ratio(d/b), and skewness. The condition numbers and energy norms are used to estimate numerical errors, convergence characteristics and algorithmic efficiencies for verifying the aforementioned symptoms of accuracy failure. Numerical results from p-version models are compared wi th those from NASTRAN, SAP90, and Cheung's hybrid elements.

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Structural damping of composite materials using combined FE and lamb wave method

  • Ben, B.S.;Ben, B.A.;Kweon, S.H.;Yang, S.H.
    • Structural Engineering and Mechanics
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    • 제51권6호
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    • pp.1047-1065
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    • 2014
  • The article presents the methodology for finding material damping capacity at higher frequency and at relatively lower amplitudes. The Lamb wave dispersion theory and loss less finite element model is used to find the damping capacity of composite materials. The research has been focused on high frequency applications materials. The method was implemented on carbon fiber reinforced polymer (CFRP) and glass fiber reinforced polymer (GFRP) plates. The Lamb waves were generated using ultrasonic pulse generator setup. The hybrid method has been explored in this article and the results have been compared with bandwidth methods available in the literature.

2상 HB형 DVT 직선추진형 STEPPING 전동기의 추력특성에 관한 연구 (A Study on thrust characteristics of 2-Phase Hybrid type DVT Linear Stepping Motor)

  • 장혁;신미영;이상호;박종국;정도영;박하용;이봉섭;하장호
    • 대한전기학회:학술대회논문집
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    • 대한전기학회 2001년도 하계학술대회 논문집 B
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    • pp.792-794
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    • 2001
  • In this paper, We have designed the new model in order to the thrust and normal force of HLSM. Also it was analyzed by Finite Element Method and Virtual Work Method. As a result this paper, it was confirmed that the thrust and normal force was improved considerably.

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An Adaptive Tracking Controller for Vibration Reduction of Flexible Manipulator

  • Sung Yoon-Gyeoung;Lee Kyu-Tae
    • International Journal of Precision Engineering and Manufacturing
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    • 제7권3호
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    • pp.51-55
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    • 2006
  • An adaptive tracking controller is presented for the vibration reduction of flexible manipulator employed in hazardous area by combining input shaping technique with sliding-mode control. The combined approach appears to be robust in the presence of severe disturbance and unknown parameter which will be estimated by least-square method in real time. In a maneuver strategy, it is found that a hybrid trajectory with a combination of low frequency mode and rigid-body mode results in better performance and is more efficient than the traditional rigid body trajectory alone which many researchers have employed. The feasibility of the adaptive tracking control approach is demonstrated by applying it to the simplified model of robot system. For the applications of the proposed technique to realistic systems, several requirements are discussed such as control stability and large system order resulted from finite element modeling.

필릿용접에서 리브높이에 따른 용접변형 해석에 대한 연구 (A Study on the Welding Distortion Analysis According to Rib Height in Fillet Welding)

  • 김용래;송규영;왕초;김재웅
    • Journal of Welding and Joining
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    • 제31권6호
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    • pp.107-111
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    • 2013
  • The welding distortion is caused by welding heat in the structures which are widely used in shipbuilding and automotive industries, thus many researchers have proposed such methods to control the welding distortion through trials and numerical studies. The welding distortion has been the main cause of low productivity due to the structural strength degradation, apparent flaw, additional deformation caused by the process followed the current assembly step, and the increase of correction workload. The deformation of fillet welding is investigated in this study, and the influence of the rib height on the welding distortion is verified through the actual experiment. And the numerical analysis model using the FE software MSC.marc for analysis of welding distortion is proposed.

Static behavior of a laterally loaded guardrail post in sloping ground by LS-DYNA

  • Woo, Kwang S.;Lee, Dong W.;Yang, Seung H.;Ahn, Jae S.
    • Geomechanics and Engineering
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    • 제15권5호
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    • pp.1101-1111
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    • 2018
  • This study aims to present accurate soil modeling and validation of a single roadside guardrail post as well as a single concrete pile installed near cut slopes or compacted sloping embankment. The conventional Winkler's elastic spring model and p-y curve approach for horizontal ground cannot directly be applied to sloping ground where ultimate soil resistance is significantly dependent on ground inclination. In this study, both grid-based 3-D FE model and particle-based SPH (smoothed particle hydrodynamics) model available in LS-DYNA have been adopted to predict the static behavior of a laterally loaded guardrail post. The SPH model has potential to eliminate any artificial soil stiffness due to the deterioration of the node-connected Lagrangian soil mesh. For this purpose, this study comprises two parts. Firstly, only 3-D FE modeling has been tested to show the numerical validity for a single concrete pile in sloping ground using Mohr-Coulomb material. However, this material option cannot be implemented for SPH elements. Nevertheless, Mohr-Coulomb model has been used since this material model requires six input soil data that can be obtained from the comparative papers in literatures. Secondly, this work is extended to compute the lateral resistance of a guardrail post located near the slope using the hybrid approach that combines Lagrange FE elements and SPH elements by the suitable node-merging option provided by LS-DYNA. For this analysis, the FHWA soil material developed for application to road-base soils has been used and also allows the application of SPH element.

다물체 페리다이나믹 해석을 위한 MPI-OpenMP 혼합 병렬화 (MPI-OpenMP Hybrid Parallelization for Multibody Peridynamic Simulations)

  • 이승우;하윤도
    • 한국전산구조공학회논문집
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    • 제33권3호
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    • pp.171-178
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    • 2020
  • 본 연구에서는 다물체 페리다이나믹 해석 코드의 MPI-OpenMP 혼합 병렬화를 수행하였다. 페리다이나믹 해석 모델은 복잡한 동적파괴 거동 및 불연속 특성을 모사하는데 적합하지만, 비국부 영역을 통한 절점 간 상호작용을 계산하기 때문에 유한요소 모델에 비해 계산 시간이 많이 소요된다. 또한 다중적층구조물의 다물체 페리다이나믹 해석에서 추가된 비국부 접촉 모델과 가상 층간 결합 모델을 통한 여러 물체 간 상호작용으로 계산 부담이 증가한다. 더불어 고속 충돌 파괴와 같은 복잡한 동적 파괴 거동 해석을 위해 세밀한 절점 간격과 작은 시간 간격이 요구되기 때문에 코드 최적화와 병렬화를 통한 고성능 해석 코드 개발이 필수적이다. 해석 코드는 Intel Fortran MPI compiler와 OpenMP를 사용하여 개발되었으며, 한국과학기술정보원(KISTI)의 슈퍼컴퓨팅센터 누리온(Nurion)으로 실행되었다. 다물체 해석 코드를 최적화하기 위한 핵심 요소들을 분석하고, 모델 의존성 발생 서브루틴 분석 및 프로세스 통신 데이터 분별을 통해 MPI-OpenMP 혼합 병렬 처리 구조를 적용하였다. 다물체 충돌 파괴 현상 시뮬레이션을 통해 개발된 병렬 처리 코드의 성능을 확인하였다.

강 뼈대 구조물의 다자유도 실시간 하이브리드 동적 실험 (Multi-DOF Real-time Hybrid Dynamic Test of a Steel Frame Structure)

  • 김세훈;나옥빈;김성일
    • 대한토목학회논문집
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    • 제33권2호
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    • pp.443-453
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    • 2013
  • 하이브리드 실험은 수치해석 모형과 물리적 부분구조 모형사이의 상호작용을 통하여 구조물의 거동을 예측하는 실험법이다. 본 연구에서는 지진하중 재하 시 1경간 2층 강 뼈대 구조물에 대한 다자유도 하이브리드 실험을 수행하고 유효성을 확보하는데 그 목적이 있다. 이를 위해 전용 하이브리드 수치해석 프로그램인 FEAPH을 개발하였으며, 최적화된 시스템을 구축하였다. FEAPH은 고정 반복법(Fixed iteration)과 병렬화(Parallelization) 기법을 적용하여 순차적 해석에서 발생되는 비효율적 연산을 개선하였다. 또한, 종전에 데이터 통신과 부분구조물과 해석프로그램간의 인터페이스를 간략화하여 하이브리드 시스템 구성을 최적화 하였다. 그 결과, 입력 가진시간(30초) 대비 약 10%의 실험시간이 소요되었다. 시스템의 신뢰성을 검증하고 선형실험과 강 뼈대 구조물의 동적거동을 예측하기 위해 비선형 실험을 수행하였으며 수치해석과의 변위응답이력은 거의 일치 하였다. 그러나 최대변위에 대한 응답은 다소 차이를 보였으며, 이는 재료 비선형성에 대한 해석상의 오차와 영구변형에 의해 발생한 것으로 판단된다. 따라서 적절한 재료 비선형 모델과 알고리즘의 개선이 이루어지면, 실시간 하이브리드 시스템은 구조물의 동적거동을 예측하는데 유용하게 활용될 것이며, 추후 진동대 실험을 대체할 수 있는 효과적인 실험 방법이 될 것으로 판단된다.

척추경나사못을 이용한 유합술과 동반 시술된 극돌기간 삽입기구의 생체역학적 연구 (Biomechanical Analysis of a Combined Interspinous Spacer with a Posterior Lumbar Fusion with Pedicle Screws)

  • 김영현;박은영;이성재
    • 대한의용생체공학회:의공학회지
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    • 제36권6호
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    • pp.276-282
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    • 2015
  • Recently, during the multi-level fusion with pedicle screws, interspinous spacer are sometimes substituted for the most superior level of the fusion in an attempt to reduce the number of fusion level and likelihood of degeneration process at the adjacent level. In this study, a finite element (FE) study was performed to assess biomechanical efficacies of the interspinous spacer combined with posterior lumbar fusion with a previously-validated 3-dimensional FE model of the intact lumbar spine (L1-S1). The post-operative models were made by modifying the intact model to simulate the implantation of interspinous spacer and pedicle screws at the L3-4 and L4-5. Four different configurations of the post-op model were considered: (1) a normal spinal model; (2) Type 1, one-level fusion using posterior pedicle screws at the L4-5; (3) Type 2, two-level (L3-5) fusion; (4) Type 3, Type 1 plus Coflex$^{TM}$ at the L3-4. hybrid protocol (intact: 10 Nm) with a compressive follower load of 400N were used to flex, extend, axially rotate and laterally bend the FE model. As compared to the intact model, Type 2 showed the greatest increase in Range of motion (ROM) at the adjacent level (L2-3), followed Type 3, and Type 1 depending on the loading type. At L3-4, ROM of Type 2 was reduced by 34~56% regardless of loading mode, as compared to decrease of 55% in Type 3 only in extension. In case of normal bone strength model (Type 3_Normal), PVMS at the process and the pedicle remained less than 20% of their yield strengths regardless of loading, except in extension (about 35%). However, for the osteoporotic model (Type 3_Osteoporotic), it reached up to 56% in extension indicating increased susceptibility to fracture. This study suggested that substitution of the superior level fusion with the interspinous spacer in multi-level fusion may be able to offer similar biomechanical outcome and stability while reducing likelihood of adjacent level degeneration.