• 제목/요약/키워드: safety factor and displacement

검색결과 184건 처리시간 0.024초

실험계획법을 이용한 2kW급 풍력발전용 블레이드에 대한 구조설계 (Structural Design for 2kW Class Wind Turbine Blade by using Design of Experiment)

  • 이승표;강기원;장세명;이장호
    • 한국생산제조학회지
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    • 제20권1호
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    • pp.28-33
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    • 2011
  • In this paper, structural design for 2kW class composite blade is performed by using design of experiment(DOE). A full factorial design is applied to meet the design specifications at the manufacturing process. The analysis of variance(ANOVA) is made in order to determine the significance of effects in an analysis. Structural analysis by using of commercial software ABAQUS is performed to compute the displacement and safety factor of filament wound composite blade. The results show that the proposed method is suitable to analyze the factors at the design of wind turbine blade.

안전한 토석류 관리를 위한 계측기 선정에 관한 연구 (Study of Determination in Measurement System for Safely Managing Debris-Flow)

  • 민대홍;윤형구
    • 한국안전학회지
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    • 제32권3호
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    • pp.41-47
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    • 2017
  • Recent studies have shown that there are various systems which can be used to monitor hazardous area in a debris flow location, but lack of methodological research on the exact location where each instrument should be installed has hindered the success of this systems. The objective of this study is to suggest the measurement system for monitoring debris-flow and propose the effective method to determine location of measurement system. Previously studied, from 1991 to 2015, were referred and the applied ratio of every instrument was investigated. The measurement information was divided into 8 categories including rainfall, debris-flow velocity, displacement, fluid pore pressure, ground vibration, image processing, impact force and peak flow depth. The result of this study revealed that the most applied instruments to be rain gauge and geophone for measuring average rainfall and ground vibration respectively. The Analytic Hierarchical Process (AHP) method was selected to determine installation location of instrument and the weighting factors were estimated through fine content, soil thickness, porosity, shear strength, elastic modulus, hydraulic conductivity and saturation. The soil thickness shows highest weights and the fine content relatively demonstrates lowest weights. The score of each position can be calculated through the weighting factors and the lowest score position can be judged as the weak point. The weak point denotes the easily affecting area and thus, the point is suitable for installing the measurement system. This study suggests a better method for safely managing the debris-flow through a precise location for installing measurement system.

U자형 TLD시스템에 대한 적응제어 적용 (Application of Adaptive Control for the U Type TLD)

  • 가춘식;신영재
    • 한국소음진동공학회:학술대회논문집
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    • 한국소음진동공학회 2005년도 추계학술대회논문집
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    • pp.518-521
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    • 2005
  • The Structures or buildings nowadays draw more complexity in design due to space limitation and other factor that affect the height and dimensions, that results to instability. So the various methods have been carried out to improve the safety factor from an earthquake or a boom until recently. But, it is very hard to get model precisely because these structures are the non-linear and multi-variable systems. For this reason, we developed the active control system that is applied the adaptive control method on the U type Tuned Liquid Damper(TLD) passive control system. It is proven that the proposed active control strategy of the plate carrying U type TLD system is the more effective control method to suppress the vibration of the structure. The entire hybrid control system is composed of the actuator acted in the opposite direction of the TLD system's motion direction and the active control device with an air pressure adjuster. This paper proposed the adaptive control methods to improve the problem of U type TLD system which is used widely for the passive control of the building. And it is proved by the simulation. In advanced, it is developed the pressure control method that is improved the hybrid controller's performance by using air chamber pressure controller. These methods take the advantage of the decrease of the maximum displacement by using the controller as soon as the impact is loaded. This is a very important element for the safety design and economic design of structures.

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A modified shear strength reduction finite element method for soil slope under wetting-drying cycles

  • Tu, Yiliang;Zhong, Zuliang;Luo, Weikun;Liu, Xinrong;Wang, Sui
    • Geomechanics and Engineering
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    • 제11권6호
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    • pp.739-756
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    • 2016
  • The shear strength reduction finite element method (SSRFEM) is a powerful tool for slope stability analysis. The factor of safety (FOS) of the slope can be easily calculated only through reducing effective cohesion (c′) and tangent of effective friction angle ($tan{\varphi}^{\prime}$) in equal proportion. However, this method may not be applicable to soil slope under wetting-drying cycles (WDCs), because the influence of WDCs on c′ and $tan{\varphi}^{\prime}$ may be different. To research the method of estimating FOS of soil slopes under WDCs, this paper presents an experimental study firstly to investigate the effects of WDCs on the parameters of shear strength and stiffness. Twelve silty clay samples were subjected to different number of WDCs and then tested with triaxial test equipment. The test results show that WDCs have a degradation effect on shear strength (${\sigma}_1-{\sigma}_3)_f$, secant modulus of elasticity ($E_s$) and c′ while little influence on ${\varphi}^{\prime}$. Hence, conventional SSRFEM which reduces c′ and $tan{\varphi}^{\prime}$ in equal proportion cannot be adopted to compute the FOS of slope under conditions of WDCs. The SSRFEM should be modified. In detail, c′ is merely reduced among shear strength parameters, and elasticity modulus is reduced correspondingly. Besides, a new approach based on sudden substantial changes in the displacement of marked nodes is proposed to identify the slope failure in SSRFEM. Finally, the modified SSRFEM is applied to compute the FOS of a slope example.

탄성지반상에 놓인 철근 콘크리트 축대칭 쉘의 정적 및 동적 해석(IV) -축대칭 쉘의 동적 응답에 대한 철근의 영향을 중심으로- (Static and Dynamic Analysis of Reinforced Concrete Axisymmetric Shell on the Elastic Foundation -Effect of Steel on the Dynamic Response-)

  • 조진구
    • 한국농공학회지
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    • 제39권4호
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    • pp.106-113
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    • 1997
  • Dynamic loading of structures often causes excursions of stresses well into the inelastic range, and the influence of the geometric changes on the dynamic response is also significant in many cases. Therefore, both material and geometric nonlinearity effects should be considered in case that a dynamic load acts on the structure. A structure in a nuclear power plant is a structure of importance which puts emphasis on safety. A nuclear container is a pressure vessel subject to internal pressure and this structure is constructed by a reinforced concrete or a pre-stressed concrete. In this study, the material nonlinearity effect on the dynamic response is formulated by the elasto-viscoplastic model highly corresponding to the real behavior of the material. Also, the geometrically nonlinear behavior is taken into account using a total Lagrangian coordinate system, and the equilibrium equation of motion is numerically solved by a central difference scheme. The constitutive relation of concrete is modeled according to a Drucker-Prager yield criterion in compression. The reinforcing bars are modeled by a smeared layer at the location of reinforcements, and the steel layer model under Von Mises yield criteria is adopted to represent an elastic-plastic behavior. To investigate the dynamic response of a nuclear reinforced concrete containment structure, the steel-ratios of 0, 3, 5 and 10 percent, are considered. The results obtained from the analysis of an example were summarized as follows 1. As the steel-ratio increases, the amplitude and the period of the vertical displacements in apex of dome decreased. The Dynamic Magnification Factor(DMF) was some larger than that of the structure without steel. However, the regular trend was not found in the values of DMF. 2. The dynamic response of the vertical displacement and the radial displacement in the dome-wall junction were shown that the period of displacement in initial step decreased with the steel-ratio increases. Especially, the effect of the steel on the dynamic response of radial displacement disapeared almost. The values of DMF were 1.94, 2.5, 2.62 and 2.66, and the values increased with the steel-ratio. 3. The characteristics of the dynamic response of radial displacement in the mid-wall were similar to that of dome-wall junction. The values of DMF were 1.91, 2.11, 2.13 and 2.18, and the values increased with the steel-ratio. 4. The amplitude and the period of the hoop-stresses in the dome, the dome-wall junction, and the mid-wall were shown the decreased trend with the steel-ratio. The values of DMF were some larger than those of the structure without steel. However, the regular trend was not found in the values of DMF.

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점토굴착 사면의 거동에 관한 원심모형실험 및 수치해석 (Centrifuge Model Experiments and Numerical Analyses on the Behaviour of Excavated Clayey Soil)

  • 최민수;정길수;박병수;유남재
    • 산업기술연구
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    • 제25권B호
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    • pp.55-62
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    • 2005
  • This paper is the results of experimental and numerical works on analyzing the geotechnical engineering behavior and characteristics of excavated clay slope formed by the method of excavated replacement which is one of treatments in soft soil ground. For the centrifuge model tests, models of excavated clay slope were prepared by remolding the marine clayey soil sampled from the field. Tests were performed with changing the slope to investigate the behavior of them. On the other hand, numerical analyses were carried out to analyze the change of safety factor against instability of slope with time. Changes of pore water pressure, shear strength and displacement were also investigated. As results of centrifuge model tests with slopes of 1:1.5 and 1:3 using the confining body of simulating the effect of excavation, for the case of 1:1.5, slope failure occurred right after remove the confining body whereas relatively small displacements within the range of 3.2mm, implying to maintain the stability of slope, were observed for the case of 1:3 slope. From the results of numerical analyses using the software of PLAXIS to investigate the stability of slope after excavation, the minimum safety factor against slope failure was 1.28 for the case of 1:3 slope. The further researches in the future are required with considerations of build up of static pore water pressures during acceleration of centrifuge, depth of excavation influencing the behavior of the slope and permeability of the slope since excavation of the slope was not simulated well resulted from the limitations of apparatus at the stage of excavation during the centrifuge tests.

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연약지반 성토의 안정평가 방법 (The Stability Evaluation Methods of Embankment on Soft Clay)

  • 강예묵;이달원;김지훈;김태우;임성훈
    • 농업과학연구
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    • 제25권2호
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    • pp.260-270
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    • 1998
  • 본 연구는 합리적인 침하계측관리의 수립을 위하여 현재 시공중인 사업부지를 선정하여 연약지반에 성토시 안정성에 미치는 영향을 현장계측결과를 기초로 기존의 안정평가 방법등과 비교분석하여 성토에 따른 지반의 복합적인 거동을 구명하고 연약지반의 안정평가 기법을 제시하고자 한 것으로 연구결과를 요약하면 다음과 같다. 1. 물리적 성질이 심도별로 최대치를 나타내며 변곡점이 형성되는 부분에서 수평변위가 급증하여 위험가능성이 있으므로 안정관리분석시 기초자료로 이용할 수 있고, 수평변위량의 차가 가장 큰 부분에서 전단변형이 발생되었다. 2. 단계성토에 따른 계측자료를 이용하여 성토체의 안정성을 비교분석 한 결과, 파괴기준선을 초과하여 위험치에 접근하는 부분도 있었으나 성토체는 안정한 것으로 확인되어 안정관리상 파괴기준선으로 안정성을 판단하는 것보다는 곡선의 기울기로 판단하는 것이 합리적이라고 판단된다. 3. 처리지반에서의 수평변위와 상대침하량은 거의 같은 비율을 유지하면서 증가하며, 무처리 지반에서 Terzaghi 수정지지력을 사용할 경우의 전단변형은 성토하중과 비배수 전단강도와의 관계를 고려하고 안전율은 1.2보다 큰 값을 사용하여야 할 것으로 판단된다. 4. 과잉간극수압은 성토시공높이에 따라 상승되고 방치기간에 따라서 감소되며, 성토높이가 관리기준치를 초과하면 과잉간극수압은 급격하게 증가되어 불안정한 상태가 되고 과잉간극수압과 수평변위량의 움직임은 거의 일치하고 있으므로 성토의 시공속도를 조절하는데 판단기준으로 이용할 수 있다.

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공용중인 경전철 직결 궤도 콘크리트 도상블록의 보강 방안 연구 (A Study on Reinforcement Method of Concrete Block for Direct Fixation Tracks on Serviced Light Rail Transit)

  • 최정열;강유송;안대희;한재민;정지승
    • 문화기술의 융합
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    • 제9권3호
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    • pp.633-640
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    • 2023
  • 본 연구는 운행선 경전철 직결식 궤도 부설구간에서 발생한 도상블록의 변위거동 특성을 분석하여 적정 보강 방안을 도출하고자 현장조사를 바탕으로 한 수치해석을 수행하였다. 본 연구의 대상선로는 교량상 급곡선 직결식 콘크리트 궤도로서 교량바닥판에 부설된 도상블록이 종방향 및 횡방향으로 이동하는 문제가 발생하여 이에 대한 메커니즘을 분석하였다. 본 연구에서는 3D Solid요소를 이용한 궤도구조 모델링을 바탕으로 운행하중 조건에서 발생가능한 직결식 궤도의 거동을 분석하고 다양한 보강방안에 대한 보강효과를 해석적으로 분석하였다. 도상블럭의 보강 전, 후 횡변위 분석결과, 극한 횡압 작용 시 보강 후 최대 횡변위는 보강 전 대비 약 3% 수준(약 0.1mm)으로 크게 감소하는 것으로 분석되었다. 또한 채움 모르타르, 교량 바닥판, 보강철근의 발생응력 검토결과, 모두 2.6 이상의 충분한 안전율을 확보하는 것으로 분석되어 보강방안에 대한 최적 조건을 도출하였다. 따라서 본 연구에서 검토한 앵커링 보강 수량 및 대칭형 앵커배치는 도상블록 횡방향 변위 발생 제어 및 교량, 도상블록의 구조적 건전성 확보에 효과적일것으로 판단된다.

지오그리드로 보강된 도로제방 사면의 안정성 해석 (Stability Analysis of Road Embankment Reinforced by Geogrid)

  • 이한민;유한규;서영찬;박언상
    • 한국지반환경공학회 논문집
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    • 제2권4호
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    • pp.39-50
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    • 2001
  • 본 연구에서는 지오그리드로 보강된 도로제방 사면에 대해 한계평형해석에 근거한 보강사면해석 프로그램인 RSS를 이용하여 보강길이와 간격의 변화에 따른 사면의 안전율 변화를 살펴보았다. 해석결과 비보강시 기준안전율을 만족하지 못하는 사면에서 보강재길이의 증가에 따라 비보강사면에 비해 최대 50~150%의 안전율이 증가되었으며 보강길이를 증가시켜도 안전율의 추가상승이 없는 한계길이를 확인하였다. 또한 동일 가상보강단면에 대하여 범용프로그램인 FLAC을 이용하여 유한차분해석을 실시하여 안정성이 확보된 사면에 발생하는 수평변위, 수평응력, 보강재의 인장력을 산출하여 보강길이의 추가적인 증가에 의한 효과를 알아보았다. 해석결과, 파괴형태는 선단파괴 또는 사면내 파괴로 나타났으며 안정성을 확보한 상태에서는 한계평형해석결과와 동일하게 보강길이의 추가적인 증가에 의한 안정성 증대효과는 미미한 것으로 나타났다.

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성능함수법을 이용한 신뢰성기반 위상 최적설계 (Reliability-Based Topology Optimization Using Performance Measure Approach)

  • 안성호;조선호
    • 한국전산구조공학회논문집
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    • 제23권1호
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    • pp.37-43
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    • 2010
  • 본 논문에서는 선형 구조물에 대해 성능함수법을 이용하여 신뢰성기반 위상 최적설계 기법을 개발하였다. 구조물을 라이즈너-민들린(Ressiner-Mindlin) 판 요소로 분할하였으며, 각 요소의 재료 물성치를 설계변수로 사용하였다. 설계변수와 임의변수의 효율적인 설계민감도를 구하기 위하여 연속체 역학에 기초한 해석기법 중 보조변수법(Adjont variable method)을 사용하였다. 또한 확률론적 제약조건을 평가하기 위해서 성능함수법(Performance measure approach)을 사용하였으며 변위 제약조건을 두어 위상 최적설계 문제를 구성하였다. 이 때 재료 물성치와 하중을 불확실 변수로 고려하였으며 수치적 예제를 통하여 본 논문에서 제안한 최적설계 방법론을 기존의 결정론적 방법, 안전계수법(Safety factor approach), 최악조건법(Worst case approach) 등과 비교하여 그 타당성을 검증하였다.