• 제목/요약/키워드: parametric studies

검색결과 1,226건 처리시간 0.027초

TWO-MODE NONLINEAR STABILITY ANALYSIS

  • Hyun-Gull Yoon
    • 한국추진공학회:학술대회논문집
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    • 한국추진공학회 1997년도 제8회 학술강연회논문집
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    • pp.247-256
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    • 1997
  • A nonlinear mathematical model of longitudinal combustion instability appropriate for ramjets and augmentors was developed based on modal analysis. The model was limited to a two-mode formulation. The associated differential equations were solved both analytically and numerically and used to perform parametric studies.

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A Family of Truncated Skew-Normal Distributions

  • Kim, Hea-Jung
    • Communications for Statistical Applications and Methods
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    • 제11권2호
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    • pp.265-274
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    • 2004
  • The paper extends earlier work on the skew-normal distribution, a family of distributions including normal, but with extra parameter to regulate skewness. The present work introduces a singly truncated parametric family that strictly includes a truncated normal distribution, and studies its properties, with special emphasis on the relation with bivariate normal distribution.

반복하중을 받는 짧은 I형 보의 횡-비틀림 좌굴의 일반적 응답에 관한 고찰 (General Response for Lateral-Torsional Buckling of Short I-Beams Under Repeated Loadings)

  • 이상갑
    • 전산구조공학
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    • 제5권1호
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    • pp.119-132
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    • 1992
  • 반복하중을 받는 짧은 I보(Beam)의 횡-비틀림 좌굴(Lateral-Torsional Buckling)에 대한 광범위한 Parametric Study를 수행하여 보의 좌굴현상을 좀 더 깊이 고찰하고자 한다. 유한한 비틀림변형의 뒤틀림(Warping)이외에 미소한 절단변형의 뒤틀림도 고려한 기하학적(완전) 비선형의 일차원 보를 해석적 모델로 사용하고, 또한 금속의 주기적소성(Cyclic Plasticity)거동을 보다 잘 나타내기 위해 다축 주기적소성모델을 Consistent Return Mapping Algorithm과 결합시켜 적용한다. 기준치 근방에서 아래와 같은 여러가지 Parameter Study를 수행하므로써 반복하중을 받는 짧은 I보의 횡-비틀림 좌굴의 일반적 응답을 고찰한다 : 재료의 강복강도, 강복플래토(Yield Plateau), 변형율경화, 이동경화(Kinematic Hardening), 잔류응력, 작용하중의 절단중심에 대한 편심률, 작용하중의 보 단면에 대한 높이, 작용하중의 보 길이방향의 위치, 보 단면의 치수, 작용하중으로부터 멀리 떨어진 지지단의 고정도.

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SC 합성기둥의 내화성능에 대한 해석연구 (Analytical Study on the Fire Resistance of SC Composite Column)

  • 임윤희;강성덕;오명호;김명한;김상대
    • 한국강구조학회 논문집
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    • 제19권3호
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    • pp.335-344
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    • 2007
  • 기존 합성기둥의 장점을 유지하면서 콘크리트 충전 시 거푸집 공사의 절감과 충전상태의 육안 확인이 가능한 철골 콘크리트 합성기둥(이하 SC 합성기둥)에 대한 연구가 활발히 진행되고 있다. SC 합성기둥은 콘크리트가 철골의 웨브를 둘러싸고 있어 화재 발생시 높은 열이 웨브까지 전달되는 시간을 지연시켜 뛰어난 내화성능을 가질 것으로 예상할 수 있다. 본 연구에서는 SC 합성기둥에 대해 열전달 해석을 수행하였고, 이를 바탕으로 P-M 상관 곡선을 이용하여 내화성능을 평가를 하였고, 이때의 해석변수는 콘크리트 면적비와 내화피복두께로 하였다. 또한 열전달 해석 방법을 검증하기 위해서 실제 수행된 실험 결과와 비교하여 이의 적절성을 검증하였다.

ABAQUS 서브루틴을 이용한 레일 보수용접 잔류응력 해석 (Residual Stress Analysis of Repair Welded Rail Using the ABAQUS User Subroutine)

  • 김동욱;전현규;이상환;장윤석
    • 한국정밀공학회지
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    • 제33권7호
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    • pp.551-558
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    • 2016
  • Reduction of welding residual stress is very important in the railway industry, but calculating its distribution in structures is difficult because welding residual stress formation is influenced by various parameters. In this study, we developed a finite element model for simulating the repair welding process to recover a surface damaged rail, and conducted a series of parametric studies while varying the cooling rate and the duration of post weld heat treatment (PWHT) to find the best conditions for reducing welding residual stress level. This paper presents a three-dimensional model of the repair welding process considering the phase transformation effect implemented by the ABAQUS user subroutine, and the results of parametric studies with various cooling rates and PWHT durations. We found that heat treatment significantly reduced the residual stress on the upper rail by about 170 MPa.

Effect of the seismic excitation angle on the dynamic response of adjacent buildings during pounding

  • Polycarpou, Panayiotis C.;Papaloizou, Loizos;Komodromos, Petros;Charmpis, Dimos C.
    • Earthquakes and Structures
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    • 제8권5호
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    • pp.1127-1146
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    • 2015
  • The excitation angle or angle of incidence is the angle in which the horizontal seismic components are applied with respect to the principal structural axes during a time history analysis. In this study, numerical simulations and parametric studies are performed for the investigation of the effect of the angle of seismic incidence on the response of adjacent buildings, which may experience structural pounding during strong earthquakes due to insufficient or no separation distance between them. A specially developed software application has been used that implements a simple and efficient methodology, according to which buildings are modelled in three dimensions and potential impacts are simulated using a novel impact model that takes into account the arbitrary location of impacts and the geometry at the point of impact. Two typical multi-storey buildings and a set of earthquake records have been used in the performed analyses. The results of the conducted parametric studies reveal that it is very important to consider the arbitrary direction of the ground motion with respect to the structural axes of the simulated buildings, especially during pounding, since, in many cases, the detrimental effects of pounding become more pronounced for an excitation angle different from the commonly examined 0 or 90 degrees.

Numerical simulation of columns with un-bonded reinforcing bars for crack control

  • Chen, G.;Fukuyama, H.;Teshigawara, M.;Etoh, H.;Kusunoki, K.;Suwada, H.
    • Structural Engineering and Mechanics
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    • 제26권4호
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    • pp.409-426
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    • 2007
  • Following previous work carried out in Building Research Institute in Japan, finite element analyses of conceptual column designs are performed in this paper. The effectiveness of the numerical model is evaluated by experimental tests and parametric studies are conducted to determine influential factors in conceptual column designs. First, three different column designs are analysed: bonded, un-bonded, and un-bonded with additional reinforcing bars. The load-displacement curves and cracking patterns in concrete are obtained and compared with experimental ones. The comparisons indicate that the finite element model is able to reflect the experimental results closely. Both numerical and experimental results show that, the introduction of un-bonded zones in a column end can reduce cracking strains, accordingly reduce the stiffness and strength as well; the addition of extra reinforcement in the un-bonded zones can offset the losses of the stiffness and strength. To decide the proper length of the un-bonded zones and the sufficient amount of the additional reinforcing bars, parametric studies are carried out on their influences. It has been found that the stiffness of un-bonded designs slightly decreases with increasing the length of the un-bonded zones and increases with the size of the additional reinforcing bars.