• 제목/요약/키워드: Stability Design

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계단식 블록식 보강토 옹벽의 전체 안전성 (Global Stability of Geosynthetic Reinforced Segmental Retaining Walls in Tiered Configuration)

  • 유충식;김선빈
    • 한국지반공학회논문집
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    • 제24권9호
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    • pp.23-32
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    • 2008
  • 본 논문에서는 계단식 형태로 시공되는 블록식 보강토 옹벽의 전체 안정성이 고려된 설계에 관한 내용을 다루었다. 다양한 계원과 이격거리로 설계된 네 가지 설계사례에 대해 현재 통용되고 있는 FHWA 및 NCMA 설계기준에 근거하여 내 외적 안정해석을 수행하고 그 결과를 토대로 두 설계기준의 차이점을 검토하였다. 아울러 대상옹벽에 대해 한계평형해석에 근거한 사면안정해석과 연속체역학 기반의 강도감소기법 해석을 수행하여 계단식 옹벽의 설계를 지배하는 파괴 메카니즘을 고찰하였다. 그 결과 내 외적 안정성 공히 FHWA에서 채택하고 있는 설계기준이 NCMA 보다 보수적인 결과(낮은 안전율)를 주는 것으로 나타났다. 또한 계단식 옹벽의 보강재의 소요 포설 길이는 전반적으로 전체 안정성에 좌우되는 것으로 검토되었으며 상부 옹벽의 보강재의 길이는 현 설계기준 보다 현저히 증가시켜야 하는 것으로 검토되었다.

대형 축조블록을 이용한 보강토옹벽의 안정성 평가 (Stability evaluation of reinforced earth walls based on large-scale modular blocks)

  • 한중근;김민우;홍기권;윤중만
    • 한국지반신소재학회논문집
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    • 제13권4호
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    • pp.143-151
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    • 2014
  • 본 연구에서는 대형 축조블록과 지오그리드 보강재를 이용한 보강토 옹벽의 안정성을 검토하였으며, 이를 바탕으로 구조물의 적용에 대하여 평가하였다. 안정성은 옹벽높이, 뒤채움 흙의 강도 및 지오그리드 보강재의 강도 조건에 따른 외적 및 내적안정성을 검토하였다. 외적안정성 분석 결과, 보강재의 길이는 전면벽체 저면으로부터 산정된 옹벽높이의 0.7H와 보강재 수직간격을 1m로 설치하였을 때, 뒤채움 흙의 내부마찰각 및 옹벽 높이에 관계없이 모든 해석조건에서 기준안전율을 만족하였다. 내적안정성의 경우에는 뒤채움 흙의 내부마찰각이 $25^{\circ}$인 경우에도 일부 옹벽 높이에서 파단 및 인발에 대한 안정성이 확보할 수 있는 것으로 나타났다. 특히, 내적안정성 평가결과를 바탕으로 대하여 구조적 안정성 및 경제성을 고려할 수 있는 구조물로의 적용이 가능할 것으로 확인되었다.

46피트급 모터요트의 선형설계 (Hull Form Design of 46 Feet Motor Yacht)

  • 신성철;김훤모
    • 대한조선학회논문집
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    • 제45권4호
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    • pp.455-461
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    • 2008
  • This article describes a part of collaborative research between industry and academy to develop an initial hull form of 46 feet motor yacht. Hydrodynamic performances such as stability, resistance and seaworthiness were estimated after completing the procedure of hull form design in the initial design stage.

교량기초의 신뢰성 설계규준에 관한 연구 (A Study on Reliability Based Design Criteria for Bridge Foundation)

  • 손용우;정철원
    • 전산구조공학
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    • 제6권1호
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    • pp.77-89
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    • 1993
  • Current Bridge foundation design is based on Working Stress Design(WSD), but Load Factor Based on Optimum Reliability(LFBOR) design method is more rational than the WSD. For this reason, this study proposes a reliability based design criteria for the bridge foundation, which is most common type of bridge foundation(Shallow, Pile and Caission), and also proposes the theoretical basis of nominal safety factors of stability analysis by introducing the reliability theory. The limit state equations of stability analysis of bridge foundation and the uncertainty measuring algorithms of each equation are also derived by Cornell's MFOSM(Mean First Order 2nd Moment Methods)using the stability analysis fourmula Highway Bridge Design Codes.

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Stability analysis of truss type highway sign support structures

  • Yang, Jun;Culmo, Michael P.;Dewolf, John T.
    • Wind and Structures
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    • 제7권6호
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    • pp.393-404
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    • 2004
  • The design of truss type sign support structures is based on the guidelines provided by the American Association of State Highway and Transportation Officials Standard Specifications for Highway Signs, Luminaries and Traffic Signals and the American Institute of Steel Construction Design Specifications. Using these specifications, the column design strength is normally determined using the effective length approach. This approach does not always accurately address all issues associated with frame stability, including the actual end conditions of the individual members, variations of the loads in the members, and the resulting sidesway buckling for truss type sign support structures. This paper provides insight into the problems with the simplified design approach for determining the effective lengths and discusses different approaches for overcoming these simplifications. A system buckling approach, also known as a rational buckling analysis, is used in this study to determine improved predictions for design strength of truss type sign support structures.

Evaluation on Structural Safety for Carbon-Epoxy Composite Wing and Tail Planes of the 1.2 Ton Class WIG

  • Park, Hyunbum
    • International Journal of Aerospace System Engineering
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    • 제6권1호
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    • pp.1-7
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    • 2019
  • In the present study, structural safety and stability on the main wing and tail planes of the 1.2 ton WIG(Wing in Ground Effect) flight vehicle, which will be a high speed maritime transportation system for the next generation, was performed. The carbon-epoxy composite material was used in design of wing structure. The skin-spar with skin-stressed structural type was adopted for improvement of lightness and structural stability. As a design procedure for this study, the design load was estimated with maximum flight load. From static strength analysis results using finite element method of the commercial codes. From the stress analysis results of the main wing, it was confirmed that the upper skin structure between the second rib and the third rib was unstable for the buckling load. Therefore in order to solve this problem, three stiffeners at the buckled region were added. After design modification, even though the weight of the wing was a little bit heavier than the target weight, the structural safety and stability was satisfied for design requirements.

안정성(安定性)과 파랑제어기능(波浪制御機能)을 고려(考慮)한 사석구조물(捨石構造物)의 새로운 설계법(設計法) (A New Design Method of Rubble Mound Structures with Stability and Wave Control Consideration)

  • 류청로
    • 대한토목학회논문집
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    • 제7권3호
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    • pp.155-164
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    • 1987
  • 구조물(構造物)의 안정성(安定性)과 파랑제어기능(波浪制御機能)을 고려(考慮)한 새로운 사석구조물(捨石構造物) 설계법(設計法)을 제안(提案)하였다. 이 설계법(設計法)은 임의의 파랑조건하(波浪條件下)에서 파랑(波浪)의 반사(反射) 및 run-up을 저감(低減)시키고, 안정성(安定性)을 증대(增大)시키는 설계개념(設計槪念)을 가졌다. 설계식(設計式)은 허용파괴율(許容破壞率)과 안정성(安定性)에 대한 파군특성(波群特性)의 영향(影響) 도입(導入)하여 유도하였으며, 이에는 해안파(海岸波)의 평균(平均) run-sum이라는 새로운 외력개념(外力槪念)이 사용(使用)되었다. 마지막으로 이 새로운 설계법(設計法)에 의한 일양단면(一樣斷面)과 복합단면(複合斷面) 사석구조물(捨石構造物) 설계예(設計例)로부터 이 설계법(設計法)의 유용성(有用性)과 이점(利點)을 검증(檢證)하였다.

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프리스트레스트 콘크리트 거더 철도교의 최적설계 II: 동적안정성을 고려한 30m 지간의 최적단면 (Optimum Design of Prestressed Concrete Girder Railway Bridge II : Optimum Section with 30m Span Length Accounting for Dynamic Stability)

  • 이종민;김수현;정재동;이종선;조선규
    • 한국철도학회논문집
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    • 제9권1호
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    • pp.102-109
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    • 2006
  • The PSC girders which currently used at highway bridge have the standard cross sections about 25m, 30m and 35m span. Thus, in case of highway bridge design, the bridge designer can choose the adequate standard cross section according to constructional condition. However, in railway bridge design, there are limitations on reasonable bridge design considering circumstances of a construction site and conditions of location etc, because the PSC girders used at railway bridge have the cross section about only 25m span length. In this study, the optimum design for the PSC girder railway bridge with 30m span length has been performed. Also, in order to investigate the dynamic stability of railway bridge using the optimum section of PSC girder, dynamic analysis has been carried out. From the results of analysis, it is suggested to denote the optimum section which satisfied the structural safety, dynamic stability and economical efficiency all together.

Equivalent static wind load estimation in wind-resistant design of single-layer reticulated shells

  • Li, Yuan-Qi;Tamura, Yukio
    • Wind and Structures
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    • 제8권6호
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    • pp.443-454
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    • 2005
  • Wind loading is very important, even dominant in some cases, to large-span single-layer reticulated shells. At present, usually equivalent static methods based on quasi-steady assumption, as the same as the wind-resistant design of low-rise buildings, are used in the structural design. However, it is not easy to estimate a suitable equivalent static wind load so that the effects of fluctuating component of wind on the structural behaviors, especially on structural stability, can be well considered. In this paper, the effects of fluctuating component of wind load on the stability of a single-layer reticulated spherical shell model are investigated based on wind pressure distribution measured simultaneously in the wind tunnel. Several methods used to estimate the equivalent static wind load distribution for equivalent static wind-resistant design are reviewed. A new simple method from the stability point of view is presented to estimate the most unfavorable wind load distribution considering the effects of fluctuating component on the stability of shells. Finally, with comparisive analyses using different methods, the efficiency of the presented method for wind-resistant analysis of single-layer reticulated shells is established.