• 제목/요약/키워드: FE modelling

검색결과 102건 처리시간 0.024초

유도전동기의 회전자 Broken Bar 현상에 따른 공극의 자속변화 해석 (Analysis of Air-gap Flux Variations by Broken Rotor Bar in Induction Motors)

  • 황돈하;이기창;강동식;김용주;최경호;이진희
    • 대한전기학회:학술대회논문집
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    • 대한전기학회 2004년도 하계학술대회 논문집 B
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    • pp.1127-1129
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    • 2004
  • In this paper, a new approach detecting broken rotor bars in a squirrel-cage induction motor is proposed. The air-gap flux variation analysis was done using search coils inserted in stator slots when broken rotor bar conditions occur. An accurate modelling and analysis of air-gap flux variation in the induction motor are developed using finite-element(FE) software packages, and measuring the flux we made using search coils. In the FE analysis, the three-phase squirrel-gage induction motor with 380 [V], 5 [HP], 4 Poles, 1,742 [rpm] ratings is used.

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Cold-formed austenitic stainless steel SHS brace members under cyclic loading: Finite element modelling, design considerations

  • YongHyun Cho;Fangying Wang;TaeSoo Kim
    • Steel and Composite Structures
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    • 제47권1호
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    • pp.135-145
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    • 2023
  • This study presents a numerical investigation into the hysteretic behavior of cold-formed austenitic stainless steel square hollow section (SHS) brace members using a commercial finite element (FE) analysis software ABAQUS/Standard. The initial/post buckling and fracture life of SHS brace members are comprehensively investigated through parametric studies with FE models incorporating ductile fracture model, which is validated against the existing laboratory test results collected from the literature. It is found that the current predictive models are applicable for the initial buckling strengths of SHS brace members under cyclic loading, while result in significant inaccuracy in predictions for the post-buckling strength and fracture life. The modified predictive model is therefore proposed and the applicability was then confirmed through excellent comparisons with test results for cold-formed austenitic stainless SHS brace members.

터널구조물 해석을 위한 인공신경망 기반 비선형 유한요소해석 기법의 개발 (Development of Neural Network Based Nonlinear Finite Element Procedure for Tunnel Structures)

  • 신휴성;배규진
    • 한국지반공학회:학술대회논문집
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    • 한국지반공학회 2004년도 춘계학술발표회
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    • pp.442-449
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    • 2004
  • This paper describes a new concept of finite element analysis, which is based on neural network based material models (NNCMs) without invoking any pre-chosen mathematical framework. NNCMs have several advantages over conventional constitutive models (CCMs) and once plugged in a finite element (FE) engine, can be used for FE analysis in a manner similar to CCMs. The paper demonstrates a FE framework in which NNCMs are incorporated and also proposes a strategy for data enhancement by invoking the assumption of isotropy of the material. It is shown through some illustrative examples that this provides a better training environment for a generalized NNCM in which stress and strain components are used as effects and cause. Form this study, it appears that there is a prima facia case for developing NNCMs for materials for which mathematical theories become too complex and a large number of material parameters and constants have to be identified or determined.

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Multi-scale modelling of the blood chamber of a left ventricular assist device

  • Kopernik, Magdalena;Milenin, Andrzej
    • Advances in biomechanics and applications
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    • 제1권1호
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    • pp.23-40
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    • 2014
  • This paper examines the blood chamber of a left ventricular assist device (LVAD) under static loading conditions and standard operating temperatures. The LVAD's walls are made of a temperature-sensitive polymer (ChronoFlex C 55D) and are covered with a titanium nitride (TiN) nano-coating (deposited by laser ablation) to improve their haemocompatibility. A loss of cohesion may be observed near the coating-substrate boundary. Therefore, a micro-scale stress-strain analysis of the multilayered blood chamber was conducted with FE (finite element) code. The multi-scale model included a macro-model of the LVAD's blood chamber and a micro-model of the TiN coating. The theories of non-linear elasticity and elasto-plasticity were applied. The formulated problems were solved with a finite element method. The micro-scale problem was solved for a representative volume element (RVE). This micro-model accounted for the residual stress, a material model of the TiN coating, the stress results under loading pressures, the thickness of the TiN coating and the wave parameters of the TiN surface. The numerical results (displacements and strains) were experimentally validated using digital image correlation (DIC) during static blood pressure deformations. The maximum strain and stress were determined at static pressure steps in a macro-scale FE simulation. The strain and stress were also computed at the same loading conditions in a micro-scale FE simulation.

Structural behaviour of stainless steel stub column under axial compression: a FE study

  • Khate, Kevinguto;Patton, M. Longshithung;Marthong, Comingstarful
    • 국제강구조저널
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    • 제18권5호
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    • pp.1723-1740
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    • 2018
  • This paper presents a Finite Element (FE) study on Lean Duplex Stainless Steel stub column with built-up sections subjected to pure axial compression with column web spacing varied at different position across the column flanges. The thicknesses of the steel sections were from 2 to 7 mm to encompass a range of section slenderness. The aim is to study and compare the strength and deformation capacities as well as the failure modes of the built-up stub columns. The FE results have been compared with the un-factored design strengths predicted through EN1993-1-4 (2006) + A1 (2015) and ASCE8-02 standards, Continuous Strength Method (CSM) and Direct Strength Method (DSM). The results showed that the design rules generally under predict the bearing capacities of the specimens. It's been observed that the CSM method offers improved mean resistance and reduced scatter for both classes of cross-sections (i.e. slender and stocky sections) compared to the EN1993-1-4 (2006) + A1 (2015) and ASCE 8-02 design rules which are known to be conservative for stocky cross-sections.

롤러코스터의 모니터링을 위한 최적 센서 구성 (Optimal Sensor Allocation for Health Monitoring of Roller-Coaster Structure)

  • 허광희;전승곤;박인준
    • 한국구조물진단유지관리공학회 논문집
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    • 제15권4호
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    • pp.165-174
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    • 2011
  • 본 연구는 롤러코스터 구조물의 구조적인 결함을 검출하기 위해서 요구되는 최적의 센서를 구성하기 위한 연구이다. 특수한 목적과 구조적인 형태의 롤러코스터를 3차원 FE 모델링을 통해 구조적 거동특성을 분석하고, 최적계측/센서 이론을 통해 합리적인 센서 위치 및 개수를 구성하였으며, 구성된 최적 센서 위치 및 개수를 바탕으로 손상 전 후에 따른 수치적인 모달 특성값을 추출해 손상평가에 활용될 기본 구조물에 대한 기초자료를 제공하였다. 본 연구의 대상구조물로 서울 어린이대공원에 위치한 롤러코스터 구조물을 선정하였고, 1/20 크기로 축소한 모형 구조물을 제작 활용하였다. 또한, 롤로코스트의 공간적인 구조의 특성으로 운동학(Kinetics)적 거둥에 따른 운동역학(Kinematics)적인 특성이 포함되도록 Spline 함수를 이용해 대상 모형 구조물을 정확히 3차원 FE 모델을 구성 후, 가이언 소거법에 근거한 모달 특성값을 추출하였고, 유효독립법(EIM) 및 최적운동에너지법(EOT) 이론을 바탕으로 최적계측/센서 위치 및 개수를 구성하였으며, 손상 전 후에 따른 모달 특성값을 추출해 크게 강성도, 유연도, 모드상관도의 관계로부터 손상(결함)을 평가하였다. 최종적으로, 본 논문에서 구성된 최적 계측/센서 이론이 타당함을 확인하였고, 강성도 및 유연도 변화를 통해 만족할 수준으로 손상이 규명되었다. 이 결과 롤러코스터 구조물의 건전도 모니터링에 필요한 거동특성 분석 및 결함검출기술 개발에 관한 최적 센서의 구성을 제시 하였다.

고차의 진동하중을 받는 건축물 바닥판의 효율적인 진동해석 (An Efficient High-Frequency Vibration Analysis of Floors in Building Structures)

  • 이동근;김태호
    • 한국지진공학회논문집
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    • 제10권5호
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    • pp.35-48
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    • 2006
  • 본 연구의 목적은 높은 진동수 성분의 진동원을 가지는 건축물의 바닥판을 효율적으로 해석하는 방법을 제시하는 것이다. 이를 위하여 고차진동하중을 받는 건축물의 바닥판에 적절한 요소분할 방법과 이에 따른 과도한 자유도를 줄이기 위한 자유도 선택방법에 대하여 연구하였다. 그리고 일반적으로 건축물의 바닥판의 경우에는 두께에 비하여 바닥판의 길이가 길기 때문에 전단변형이 고려되지 않은 판요소를 바닥판의 모형화에 많이 사용하는데 이에 대해서도 그 적절성을 검증하였다. 그리고 여러 개의 층으로 이루어진 건축물 바닥판을 기존의 방법을 이용하여 등가의 바닥판으로 치환하였으며 이 방법의 가능성과 한계를 검토하였고 마지막으로는 예제 구조물을 중심으로 제안한 모형화 방법의 효율성을 확인하였다.

Acoustic responses of natural fibre reinforced nanocomposite structure using multiphysics approach and experimental validation

  • Satankar, Rajesh Kumar;Sharma, Nitin;Ramteke, Prashik Malhari;Panda, Subtra Kumar;Mahapatra, Siba Shankar
    • Advances in nano research
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    • 제9권4호
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    • pp.263-276
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    • 2020
  • In this article, the acoustic responses of free vibrated natural fibre-reinforced polymer nanocomposite structure have been investigated first time with the help of commercial package (ANSYS) using the multiphysical modelling approach. The sound relevant data of the polymeric structure is obtained by varying weight fractions of the natural nanofibre within the composite. Firstly, the structural frequencies are obtained through a simulation model prepared in ANSYS and solved through the static structural analysis module. Further, the corresponding sound data within a certain range of frequencies are evaluated by modelling the medium through the boundary element steps with adequate coupling between structure and fluid via LMS Virtual Lab. The simulation model validity has been established by comparing the frequency and sound responses with published results. In addition, sets of experimentation are carried out for the eigenvalue and the sound pressure level for different weight fractions of natural fibre and compared with own simulation data. The experimental frequencies are obtained using own impact type vibration analyzer and recorded through LABVIEW support software. Similarly, the noise data due to the harmonically excited vibrating plate are recorded through the available Array microphone (40 PH and serial no: 190569). The numerical results and subsequent experimental comparison are indicating the comprehensiveness of the presently derived simulation model. Finally, the effects of structural design parameters (thickness ratio, aspect ratio and boundary conditions) on the acoustic behaviour of the natural-fibre reinforced nanocomposite are computed using the present multiphysical model and highlighted the inferences.

덕음광산 광미의 산화${\cdot}$환원 조건에 따른 전이원소의 이동성 (Mobility of Transition Metals by Change of Redox Condition in Dump Tailings from the Dukum Mine, Korea)

  • 문용희;문희수;박영석;문지원;송윤구;이종천
    • 자원환경지질
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    • 제36권4호
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    • pp.285-293
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    • 2003
  • 본 연구에서는 덕음광산 광미를 대상으로 심도별로 비포화대에서 광미와 증류수(5:1)의 반응에 의한 반응수와 포화대에서 공극수를 추출하여 화학분석, 열역학적 모델링 그리고, 고상시료에 대한 광물학적 연구를 통해 pH 및 산화${\cdot}$환원 변화에 따른 원소들의 거동특성과 이에 영향을 주는 고상의 용해도 특성을 규명하고자 하였다. 반응수 및 공극수에 대한 심도별 화학분석을 실시한 결과, 비포화대에서는 황화광물의 산화작용으로 낮은 p(2.71~6.91)조건이 형성되어 $SO_4^{2-}$(561~1430mg/L)와 금속이온(Zn:0.12~158mg/L, Pb:0.06~0.83mg/L, CD:0.06~1.35mg/L)의용존이온 함량이 높았다. 그리고 열역학적 모델링과 XRD분석을 통해 자로사이트(jarosite, $KFe_3(SO_4)_2(OH)_6)$와 석고(gypsum, $CaSO_4{\cdot}2H_2O$)가 동정되었다. 포화대에서는 중성의 pH 값(7.25~8.10)으로 인해 비포화대에 비해 금속이온 함량이 줄어들었으나, 심도가 증가함에 따라 pe 값의 감소(7.40$leftrightarro}$3.40)로 산화-환원에 민감한 Fe와 Mn의 용존이온 함량이 다소 증가하였다. 열역학적 모델링과 XRD(X-ray diffraction)분석으로 정성된 능망간석(rhodochrosite, $MnCO_3$)의 존재는 Mn산화물의 환원작용을 지시해 준다. 산화-환원 변위에 비해 pH가 금속화합물의 이온화 작용에 더 많은 영향을 미치지만, 포화대에서는 pe 값의 감소로 Fe와 Mn의 용존 이온의 증가와 An 사이의 상관관계로 대변된다. 따라서, Fe와 Mn수산화물의 재용해로 인해 동시에 침전된 중금속의 기동에 영향을 미치고 있음을 알 수 있다.

Modelling reinforced concrete beams under mixed shear-tension failure with different continuous FE approaches

  • Marzec, Ireneusz;Skarzynski, Lukasz;Bobinski, Jerzy;Tejchman, Jacek
    • Computers and Concrete
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    • 제12권5호
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    • pp.585-612
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    • 2013
  • The paper presents quasi-static numerical simulations of the behaviour of short reinforced concrete beams without shear reinforcement under mixed shear-tension failure using the FEM and four various constitutive continuum models for concrete. First, an isotropic elasto-plastic model with a Drucker-Prager criterion defined in compression and with a Rankine criterion defined in tension was used. Next, an anisotropic smeared crack and isotropic damage model were applied. Finally, an elasto-plastic-damage model was used. To ensure mesh-independent FE results, to describe strain localization in concrete and to capture a deterministic size effect, all models were enhanced in a softening regime by a characteristic length of micro-structure by means of a non-local theory. Bond-slip between concrete and reinforcement was considered. The numerical results were directly compared with the corresponding laboratory tests performed by Walraven and Lehwalter (1994). The advantages and disadvantages of enhanced models to model the reinforced concrete behaviour were outlined.