• 제목/요약/키워드: structural safety assessment

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의사결정을 위한 콘크리트댐 위험요인 분석 (Risk Factor Analysis of Concrete Dam for Decision Making)

  • 임정열;장봉석
    • 한국콘크리트학회:학술대회논문집
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    • 한국콘크리트학회 2006년도 춘계학술발표회 논문집(I)
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    • pp.554-557
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    • 2006
  • For various historical and technical reasons, the safety of dams has been controlled by an engineering standards-based approach, which has been developed over many years, initially for the design of new dams, but increasingly applied over the past few decades to assess the safety of existing dams. And some countries were asked for risk assessment on existing dam, which included structural, hydraulic safety of dam and social risk. Whereas other countries have developed and adapted as an additional tool to assist in decision-making for dam safety management. Dam risk analysis should need the reliability data of dam failures, the past constructed history and management records of existing dam. It is thought with risk analysis method of dams for structural safety management in domestic that suitable to use consider an event tree, fault tree and conditioning indexes method.

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재하시험 수행에 관한 적정성 연구 : 콘크리트 교량 (A Feasibility Study of Loading Test for Safety Assessment : Concrete Bridges)

  • 황진하;안승수;김주한
    • 한국구조물진단유지관리공학회 논문집
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    • 제15권6호
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    • pp.147-155
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    • 2011
  • 심각한 손상, 결함, 재료적인 열화현상 등이 발견되지 않은 교량들은 대부분 설계하중에 대한 안전성을 확보하고 있으나, 주기적으로 시행되는 안전진단에서 건전성이 충분히 입증된 경우조차 대부분 재하시험을 수행하고 있다. 재하시험 필요 여부에 대해서 관련 세부지침에서는 정성적인 기술에 머무르고, 일부 연구들이 응답보정계수 산정 등 내하력 평가에 대한 개선 방안들을 제시하고 있으나, 재하시험의 적정성에 대한 연구는 미미하다. 본 연구는 안전진단에서 재하시험의 관행적 수행에 대한 기존의 의문에 대해 검토하고, 기설 콘크리트 교량들의 상태평가와 내하율 산정 자료 등에 대한 통계 분석을 토대로 재하시험 수행 여부를 포함하는 합리적이고 정량적인 절차적 안전진단 대안을 제시하였다.

A practical modification to coaxial cables as damage sensor with TDR in obscured structural members and RC piles

  • Mehmet Ozgur;Sami Arsoy
    • Structural Monitoring and Maintenance
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    • 제10권2호
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    • pp.133-154
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    • 2023
  • Obscured structural members are mostly under-evaluated during condition assessment due to lack of visual inspection capability. Insufficient information about the integrity of these structural members poses a significant risk for public safety. Time domain reflectometry (TDR) is a novel approach in structural health monitoring (SHM). Ordinary coaxial cables "as is" without a major modification are not suitable for SHM with TDR. The objective of this study is to propose a practical and cost-effective modification approach to commercially available coaxial cables in order to use them as a "cable sensor" for damage detection with the TDR equipment for obscured structural members. The experimental validation and assessment of the proposed modification approach was achieved by conducting 3-point bending tests of the model piles as a representative obscured structural member. It can be noted that the RG59/U-6 and RG6/U-4 cable sensors expose higher strain sensitivity in comparison with non-modified "as is" versions of the cables used. As a result, the cable sensors have the capability of sensing both the presence and the location of a structural damage with a maximum aberration of 3 cm. Furthermore, the crack development can be monitored by the RG59/U-6 cable sensor with a simple calibration.

Seismic analysis of a steam generator for Gyeongju and Pohang earthquakes

  • Myung Jo Jhung;Youngin Choi;Changsik Oh;Gangsig Shin;Chan Il Park
    • Nuclear Engineering and Technology
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    • 제55권5호
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    • pp.1577-1586
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    • 2023
  • Safety qualification of a steam generator is a crucial issue related to faulted condition design loads, including earthquake loads, and it should be ensured that the structural integrity of a steam generator does not exceed its design load. Using data from the Gyeongju and Pohang earthquakes, the two most powerful recorded seismic events in Korea, seismic analyses of a typical steam generator are conducted in this study. The modal characteristics are used to develop an input deck for these analyses. With a time history analysis, the responses of the steam generator in the event of an earthquake are obtained. In particular, the displacement, velocity, and acceleration responses are obtained in the time domain, with these outcomes then used for a detailed structural analysis as part of the ensuing assessment. The response spectra are also generated to determine the response characteristics in the frequency domain, focusing on the response comparisons between the Gyeongju and Pohang earthquakes. Structural integrity can be ensured by performing additional analysis using results obtained from the time history analysis considering the input excitations of various earthquakes considered in the design.

Analysis of the IMO's Role for Safe Maritime Transport System

  • Kim, Inchul;An, Kwang
    • 해양환경안전학회지
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    • 제21권3호
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    • pp.266-273
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    • 2015
  • Keeping in mind that there are only limited social, economic and administrative resources for reducing marine casualties, the result of statistical survey showed the loopholes of safe maritime transport system, and rendered that most casualties occurred in coastal waters by human errors. When the IMO Marine Casualty Investigation Code was utilized to reveal any structural vulnerability of the international measures, IMO was required to expand its roles to enhance the interface between Liveware and Environment of SHEL model. So, several risk assessment models were studied and found that Maritime Safety Audit System of the Republic of Korea could be a good example of enhancing safe interface between navigators (Liveware) and the navigational circumstances (Environment). It could be dealt with at IMO level as a tool for applying at human error enforcing waters. International cooperative research for upgrading risk assessment modes should also be future terms of reference.

심해 환경 하에서 내파 충격파를 받는 내압 선체의 동적 좌굴 평가 기법 (Dynamic Stability Assessment of Pressure Hull in Deep Sea against Implosion Pressure Pulse)

  • 노인식;조상래;조윤식
    • 대한조선학회논문집
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    • 제57권4호
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    • pp.198-206
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    • 2020
  • In this study, the dynamic structural behavior of pressure vessels due to pressure pulse initiated by implosion of neighbouring airbacked equipments including Unmanned Underwater Vehicles (UUV), sensor system, and so on were dealt with for the structural design and safety assessment of pressure hulls of submarine. The dynamic buckling and collapse responses of pressure vessel in deep sea were investigated considering the effects of initial hydrostatic pressure and fluid-structure interactions. The governing equations for circular cylindrical shells were formulated theoretically assuming a relatively simple displacement fields and the derived nonlinear simultaneous ordinary differential equations were analysed by developed numerical solution algorithm. Finally, the introduced safety assessment procedures for the dynamic buckling behaviors of pressure hulls due to implosion pressure pulse were validated by comparing the theoretical analysis results with those of experiments for examples of simple cylinders.

F-15 기체 전투손상 수리설계 및 평가기법 사례연구 (Case Study of F-15 Airframe Battle Damage Repair Design and Assessment Procedure)

  • 김종헌;주영식
    • 한국항공우주학회지
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    • 제37권1호
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    • pp.105-112
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    • 2009
  • 전투기가 임무수행중 기체에 발생할 수 있는 전투손상에 대처하기 위해 손상평가 및 수리설계, 구조건전성 평가방법 등 손상 후속절차를 연구하였다. 사례로서 F-15 ECS Bay에 발생한 전투손상에 대하여 ABDR(Aircraft Battle Damage Repair) 기술을 적용하여 손상평가 및 수리설계를 수행하고, 그 내용과 절차를 양식에 정리하였다. 또한, 정적강도 및 피로수명 계산과 같이 수리설계 구조의 구조건전성을 평가하여 비행안전 여부를 입증하고 영구수리 시점을 판단하였다.

Case study on seismic retrofit and cost assessment for a school building

  • Miano, Andrea;Chiumiento, Giovanni
    • Structural Engineering and Mechanics
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    • 제73권1호
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    • pp.53-64
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    • 2020
  • In different high seismic regions around the world, many non-ductile existing reinforced concrete frame buildings, built without adequate seismic detailing requirements, have been damaged or collapsed after past earthquakes. The assessment and the retrofit of these non-ductile concrete structures is crucial theme of research for all the scientific community of engineers. In particular, a careful assessment of the existing building is fundamental for understanding the failure mechanisms that govern the collapse of the structure or the achievement of the recommended limit states. Based on the seismic assessment, the best retrofit strategy can be designed and applied to the structure. A school building located in Avellino province (Italy) is the case study. The analysis of seismic vulnerability carried out on the mentioned building has highlighted deficiencies in both static and seismic load conditions. The retrofit of the building has been designed based on different retrofit options in order to show the real retrofit design developed from the engineers to achieve the seismic safety of the building. The retrofit costs associated to structural operations are calculated for each case and have been summed up to the costs of the in situ tests. The paper shows a real retrofit design case study in which the best solution is chosen based on the results in terms of structural performance and cost among the different retrofit options.

구조동정법(構造同定法)에 의한 교량(橋梁)의 안전성(安全性) 평가(評價) (Bridge Safety Evaluation Based on the System Identification)

  • 김기대;이상화
    • 한국구조물진단유지관리공학회 논문집
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    • 제2권2호
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    • pp.162-169
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    • 1998
  • This paper presents the application of system identification approaches for the safety assessment of RC-T type bridge based on the result of field test. For these problems, the moment of inertia of cross-sectional area and the natural frequency of bridge were used as structural parameters, the SAP90 program for the structural analysis and the SLP method for the minimum error. As a result, it is found that the proposed algorithm for this study appears applicable to real structures with reasonable complexity. It is shown that the introduction of approximate quadratic equations is more realistic and timesaving than the common methods.

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Investigation of wind actions and effects on the Leaning Tower of Pisa

  • Solari, Giovanni;Reinhold, Timothy A.;Livesey, Flora
    • Wind and Structures
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    • 제1권1호
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    • pp.1-23
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    • 1998
  • This paper describes wind investigations for the Leaning Tower of Pisa which were conducted as part of an overall evaluation of its behaviour. Normally a short, stiff and heavy building would not be a candidate for detailed wind analyses. However, because of extremely high soil pressures developed from its inclination, there has been increasing concern that environmental loading such as wind actions could combine with existing conditions to cause the collapse of the tower. The studies involved wind assessment at the site as a function of wind direction, analysis of historical wind data to determine extreme wind probabilities of occurrence, estimation of structural properties, analytical and boundary layer wind tunnel investigations of wind loads and evaluation of the response with special concern for loads in the direction of inclination of the tower and significant wake effects from the neighboring cathedral for critical wind directions. The conclusions discuss the role of wind on structural safety, the precision of results attained and possible future studies involving field measurements aimed at validating or improving the analytical and boundary layer wind tunnel based assessments.