• 제목/요약/키워드: local wind forces

검색결과 29건 처리시간 0.019초

송전철탑의 내풍안전성 평가를 위한 1/2축소부분구조 실험 (Half-Scaled Substructure Test for the Performance Evaluation of a Transmission Tower subjected to Wind Load)

  • 문병욱;민경원
    • 한국전산구조공학회논문집
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    • 제20권5호
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    • pp.641-652
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    • 2007
  • 본 논문에서는 풍하중에 대한 기존 송전철탑의 좌굴 및 구조적 안전성을 평가하기 위해서 축소부분구조 실험을 수행하였다. 원 송전철탑에 작용하는 중력 및 풍하중을 재현하기 위해서 1/2크기의 상사법칙을 적용한 축소모델의 상부에 설치된 삼각형태의 지그를 이용하여 가력하는 방법을 고안하였다. 설계하중에 대한 실험체의 안정성을 평가하기 위해서 예비수치 해석을 수행한 결과, 계산된 주주재의 축력은 허용좌굴하중의 $80{\sim}90%$사이에 분포하고 있음을 확인하였다. 최대허용좌굴 하중의 270%까지 가력한 결과, 주주재의 면외거동을 구속하는데 취약한 절점에서 발생한 국부좌굴로 인하여 송전철탑이 파괴되었다. 하중-변위 곡선, 변위, 부재별 변형률을 검토한 결과, 이러한 국부좌굴의 발생은 동일한 단면내에서도 휨모멘트로 인해 항복응력에 도달하는 시간이 위치별로 다르기 때문에 변형의 불균형에 의해서 발생한 부가적인 편심에 기인한 것으로 판단된다.

편대비행에서 후방 항공기의 위치 안전성 분석 (Positional Stability Analysis of Trailing Aircraft in Formation Flight)

  • 조환기
    • 한국항공운항학회지
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    • 제24권2호
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    • pp.19-24
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    • 2016
  • Positional stability analysis based on aerodynamic forces and induced moments of formation flight using two small aircraft models is presented. The aerodynamic force and moments of the trailing aircraft are analyzed in the aspect of flight stability. The induced moments with the change of local flow direction by wing-tip vortex from the leading aircraft can affect the flight positional stability of aircraft in closed formation flight. Aerodynamic forces and moments of trailing aircraft model are measured by 6-component internal balance at the 49 locations with vertical and lateral space between two aircraft models. Results are shown that the positional stability of trailing aircraft in formation flight can be analyzed by positional stability derivatives with vertical and lateral space. It is concluded that flying positions can be important factors for aircraft position stability due to induced aerodynamic force and moments with vertical and lateral spacing by the variation of flow pattern from the leading aircraft in formation flight.

여수지역 대기확산의 수치 모사 -I. 지형의 영향- (Simulation of Atmospheric Dispersion over the Yosu Area -I. Terrain Effects-)

  • 김영성;오현선
    • 한국대기환경학회지
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    • 제16권3호
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    • pp.211-223
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    • 2000
  • The atmospheric dispersion of a pollutant emitted from a hypothetical source located in the middle of the Yochon Industrial Estate was simulated by using the Regional Atmospheric Modeling System (RAMS). Four horizontally nested grids were employed: the coarsest one covered the southern part of the Korean Peninsula including Mt. Chiri and the finest one covered the Yochon Industrial Estate and the surrounding area. Wind fields were initially assumed horizontally homogeneous with a wind speed of 4m/s, the average for the Yosu area, and were developed without both external forces and diurnal changes in order to investigate the terrain-induced phenomena. Wind directions that could emphasize the terrain effects on the pollutant transport and that could carry pollutants to a highly-popluated area were selected for the dispersion study. A pollutant was released for 24hours from a grid-base volume source after a 24-h blank run for developing the wind field. The dispersion study showed that the pollutant from the present source location did not directly affect the Yosu City, but showed high concentrations at locations behind the hills 5 to 6 km away from the source according to wind directions. When the wind speed was low, close to calm condition, the pollutant was detected at upstream locations 6 to 7 km from the source. In comparison with the results from the RAMS simulation, the Industrial Source Complex Short-Term Model(ISCST3) predicted a narrow dispersion that was sensitive to the wind direction. When the wind velocity was affected by the local environment, the ISCST3 calculation using that data also gave a lop-sided result, which was different from the distribution of the pollutant reproduced by RAMS.

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Influence of latitude wind pressure distribution on the responses of hyperbolodial cooling tower shell

  • Zhang, Jun-Feng;Ge, Yao-Jun;Zhao, Lin
    • Wind and Structures
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    • 제16권6호
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    • pp.579-601
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    • 2013
  • Interference effects are of considerable concern for group hyperboloidal cooling towers, but evaluation methods and results are different from each other because of the insufficient understanding on the structure behavior. Therefore, the mechanical performance of hyperboloidal cooling tower shell under wind loads was illustrated according to some basic properties drawn from horizontal rings and cantilever beams. The hyperboloidal cooling tower shell can be regarded as the coupling of horizontal rings and meridian cantilever beams, and this perception is beneficial for understanding the mechanical performance under wind loads. Afterwards, the mean external latitude wind pressure distribution, CP(${\theta}$), was artificially adjusted to pursue the relationship between different CP(${\theta}$) and wind-induced responses. It was found that the maximum responses in hyperboloidal cooling tower shell are primarily dominated by the non-uniformity of CP(${\theta}$) but not the local pressure amplitude CP or overall resistance/drag coefficient CD. In all the internal forces, the maximum amplitude of meridian axial tension shows remarkable sensitivity to the variation of CP(${\theta}$) and it's also the controlling force in structure design, so it was selected as an indicator to evaluate the influence of CP(${\theta}$) on responses. Based on its sensitivity to different adjustment parameters of CP(${\theta}$), an comprehensive response influence factor, RIF, was deduced to assess the meridian axial tension for arbitrary CP(${\theta}$).

Flight Dynamics Analyses of a Propeller-Driven Airplane (I): Aerodynamic and Inertial Modeling of the Propeller

  • Kim, Chang-Joo;Kim, Sang Ho;Park, TaeSan;Park, Soo Hyung;Lee, Jae Woo;Ko, Joon Soo
    • International Journal of Aeronautical and Space Sciences
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    • 제15권4호
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    • pp.345-355
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    • 2014
  • This paper focuses on aerodynamic and inertial modeling of the propeller for its applications in flight dynamics analyses of a propeller-driven airplane. Unsteady aerodynamic and inertial loads generated by the propeller are formulated using the blade element method, where the local velocity and acceleration vectors for each blade element are obtained from exact kinematic relations for general maneuvering conditions. Vortex theory is applied to obtain the flow velocities induced by the propeller wake, which are used in the computation of the aerodynamic forces and moments generated by the propeller and other aerodynamic surfaces. The vortex lattice method is adopted to obtain the induced velocity over the wing and empennage components and the related influence coefficients are computed, taking into account the propeller induced velocities by tracing the wake trajectory trailing from each of the propeller blades. Aerodynamic forces and moments of the fuselage and other aerodynamic surfaces are computed by using the wind tunnel database and applying strip theory to incorporate viscous flow effects. The propeller models proposed in this paper are applied to predict isolated propeller performances under steady flight conditions. Trimmed level forward and turn flights are analyzed to investigate the effects of the propeller on the flight characteristics of a propeller-driven light-sports airplane. Flight test results for a series of maneuvering flights using a scaled model are employed to run the flight dynamic analysis program for the proposed propeller models. The simulations are compared with the flight test results to validate the usefulness of the approach. The resultant good correlations between the two data sets shows the propeller models proposed in this paper can predict flight characteristics with good accuracy.

항해중 선박 적재화물의 동적 안정성 평가에 관한 연구 (On the Evaluation of the dynamic Safety of the Ship's Cargo at Sea)

  • 김철승;김순갑
    • 해양환경안전학회지
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    • 제3권1호
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    • pp.33-49
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    • 1997
  • One of the most important missons that are imposed on merchant ship at sea is to accomplish the safe transportation of cargo loaded. Recently, a study on the seakeeping performance has been carried out on the development of evaluation system related to the synthetic safety of a ship at sea. The seakeeping performance is the ship's ability sailing at, and executing its misson against adverse environmental factors successfully and safely. Until now, however, there has not been any method of quantitative evaluation on the dynamic safety of the ship's cargo loaded. In this regards, this paper has introduced the evaluation method of dynamic safety of the ship's cargo. In order to evaluate the dynamic safety of cargo, the vertical and lateral acceleration which causes the collapse, racking and local structure failure of cargo was adopted as the evaluation factors in the ship's motions. The response amplitude of ship's motions in regular waves is manipulated by NSM (New Strip Method) on a given 2,700 TEU full container vessel under the wind forces of 7, 8 and 9 Beaufort scale. Each response of ship's motions induced by NSM was applied to short-crested irregular waves for stochastic process on evaluation factors and then vertical and lateral acceleration of each cargo was compared with significant amplitude of each acceleration. A representative dangerous factor was determined by comparing permissible values of stacking and racking forces occurred typically to the vertical and transverse directions with the container strength required on ISO 1496 at the positions of forecastle, poop and ship's midship respectively. Through the occurrence probability of the determined factor by Rayleigh's probability density function, the dangerousness which limits loads on container's side wall as an evaluation was applied in judging of the danger of the ship's cargo loaded.

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반복하중에 대한 웨브전이형 다이아그리드 노드의 구조적 특성 (Resistance of Web-Separated Diagrid Nodes Subjected to Cyclic Loading)

  • 김영주;정인용;주영규;김상대
    • 한국강구조학회 논문집
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    • 제21권3호
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    • pp.257-266
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    • 2009
  • 다이아그리드 노드의 지진 및 바람에 의한 반복하중에 대한 구조성능을 해석적으로 평가하는 것은 용접특성의 반영이 어려워서 한계가 있다. 이 연구에서는 횡하중을 받는 다이아그리드 노드의 구조거동을 알아보기 위해 다이아그리드의 노드부를 축소한 모형을 이용해 실험을 수행했다. 실험체는 총 5개이며 실험의 변수는 각 부분의 용접방법, 측면스티프너와 가새 웨브의 겹침길이이다. 한쪽 대각가새에는 인장력을, 다른쪽 대각가새에는 압축력을 가하는 반복가력 실험을 수행하였다. 실험 결과 주요 파괴 원인은 축력과, 방향이 상이한 두 힘의 합력으로 인한 부가적 모멘트에 의한 작용으로 나타났다. 인장력에 의해서 가새 부재의 플랜지가 파단하였고, 압축력에 의해서 가새 플랜지의 국부좌굴이 일어났다. 또한 겹침길이와 용접타입은 초기 강성, 항복 내력 및 에너지 흡수능력에 영향을 미치는 것으로 나타났다.

섬유(Fiber)요소와 비선형 전단스프링을 적용한 고축력을 받는 철근콘크리트 전단벽의 비선형거동 분석 (Pushover Analysis of Reinforced Concrete Shear Wall Subjected to High Axial Load Using Fiber Slices and Inelastic Shear Spring)

  • 전대한
    • 한국지진공학회논문집
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    • 제19권5호
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    • pp.239-246
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    • 2015
  • Reinforced concrete shear walls are effective for resisting lateral loads imposed by wind or earthquakes. Observed damages of the shear wall in recent earthquakes in Chile(2010) and New Zealand(2011) exceeded expectations. Various analytical models have been proposed in order to incorporate such response features in predicting the inelastic response of RC shear walls. However, the model has not been implemented into widely available computer programs, and has not been sufficiently calibrated with and validated against extensive experimental data at both local and global response levels. In this study, reinforced concrete shear walls were modeled with fiber slices, where cross section and reinforcement details of shear walls can be arranged freely. Nonlinear analysis was performed by adding nonlinear shear spring elements that can represent shear deformation. This analysis result will be compared with the existing experiment results. To investigate the nonlinear behavior of reinforced concrete shear walls, reinforced concrete single shear walls with rectangular wall cross section were selected. The analysis results showed that the yield strength of the shear wall was approximately the same value as the experimental results. However, the yielding displacement of the shear wall was still higher in the experiment than the analysis. The analytical model used in this study is available for the analysis of shear wall subjected to high axial forces.

3차원 수치모의 실험을 통한 진해·마산만의 계절별 해수순환과 염하구 특성 (Seasonal Circulation and Estuarine Characteristics in the Jinhae and Masan Bay from Three-Dimensional Numerical Experiments)

  • 김지하;최병주;최재성;하호경
    • 한국해양학회지:바다
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    • 제29권2호
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    • pp.77-100
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    • 2024
  • 진해·마산만에 대한 연구는 그동안 해수순환, 조석, 조류, 적조, 수질, 빈산소 환경을 주제로 많이 연구되었으나 주로 단기간 동안 일어나는 해양현상에 대해 연구가 수행되었으며, 만 전체적인 해수순환을 일으키는 물리적 기작을 자세히 살펴본 연구는 부족했다. 오염 물질의 이동과 확산 같은 현상은 주로 계절별로 변동성이 크기 때문에, 이 연구에서는 진해·마산만 해역의 해수순환이 계절적으로 어떻게 변동하는지를 파악하고자 하였다. 이를 위하여 3차원 해양 순환 모델을 이용하여 2016년부터 2018년까지 진해·마산만의 해수순환을 수치모의하고, 여름철과 겨울철 해수순환을 표층, 중층, 저층에 대하여 살펴보았다. 또한 조석, 바람, 담수 유입에 대한 민감도 실험을 수행하여 각 요인들이 해수 유동에 미치는 영향을 분석하였다. 진해·마산만의 해수순환은 가덕수도 저층에서 대한해협의 해수가 유입되고, 표층에서 진해·마산만의 해수가 유출되는 대류성 염하구 순환이 일어난다. 가덕수도를 통해 교환되는 해수의 순환은 크게 진해만 동부해역과 진해만 서부해역으로 나누어져 일어난다. 각 해역의 수로 방향을 기준으로 해수 수송량을 계산하였을 때, 진해만 동부해역의 남북방향 해수 교환 수송량은 진해만 서부해역에서 일어나는 동서방향 해수 교환량보다 겨울철에는 2.3배, 여름철에는 1.4배 크다. 진해만 서부해역은 계절별로 작용하는 힘들의 균형이 변화하여 해수순환 특성이 계절에 따라 크게 다르다. 겨울철에는 북서풍이 만드는 전단응력과 해수면 기울기의 영향으로 표층 해류가 남쪽으로, 저층 해류는 북쪽으로 흐르는 남북방향 대류성 순환이 강화된다. 반면, 남서풍이 부는 여름철에는 바람 응력에 의해 표층 해수가 동쪽으로 유출되고, 또한 남동쪽 해수면이 높아 북쪽 방향 순압성 압력경도력이 커져 동쪽 방향 유속이 강화된다. 저층에서는 밀도 구배가 커져 경압성 압력경도력이 남쪽으로 크게 작용하여 지형류 균형에 의해 가덕수도의 해수가 서쪽으로 강하게 유입하는 동서방향 대류성 순환이 겨울철보다 26% 강화된다. 진해만 서부의 대류성 순환은 겨울과 여름 모두 조류와 바람의 영향을 크게 받는다. 진해만 동부해역과 마산만에서는 모든 계절에 표층에서는 해수가 외해로 유출되고, 저층에서는 해수가 만 안쪽으로 유입되는 전형적인 염하구 순환을 보였다. 겨울철에는 바람과 담수유입이, 여름철에는 조류의 영향이 남북방향 염하구 순환 규모에 크게 기여하였다. 진해만 동부해역에는 지형의 영향을 받아 형성된 조석 잔차류도 뚜렷하다. 이 연구에서 제시한 진해·마산만의 계절별 해수순환 특성은 이 해역의 오염물질 확산, 여름철 빈산소수괴의 형성 기작 파악, 적조 생물의 유입과 유출을 이해하는 데 도움이 될 것으로 기대된다.