• Title/Summary/Keyword: 방호모델

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Behavior characteristics of Pile-type vessel collision protective structure (파일형 선박충돌방호공의 거동특성)

  • Lee, Jeong-Woo;Park, Jun-Seok;Lee, Gye-Hee
    • Proceedings of the Computational Structural Engineering Institute Conference
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    • 2010.04a
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    • pp.433-436
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    • 2010
  • 본 논문에서는 파일형 선박충돌 방호공에 선박이 충돌하였을 때 방호공의 거동을 해석하였다. 방호공의 구조는 상부슬래브, RCP 말뚝 및 이를 지지하는 지반은 비선형 지반스프링으로 모델링 하였다. 상부슬래브 8절점요소로 모델링 하였으며 철근과 콘크리트로 구성되어있다. RCP 말뚝은 철근망과 충진콘크리트로 구성되어있으며 충돌 시 파괴거동을 표현할 수 있는 Damaged Plasticity로 모델을 사용하였고 Shell 요소로 모델링 하였다. 선박충돌 시 선박의 강성에 따른 거동 특성을 파악하기 위해 선박을 강체모델과 실제모델에 대한 해석을 수행하였다. 선박과 교량의 충돌은 정면충돌로 고려하였으며, 충돌속도는 3.3m/sec로 가정하였다. 선박과 방호공과의 충돌 해석은 비선형 해석 프로그램인 ABAQUS/Explicit을 이용하여 수행하였으며, 이를 통하여 선박 충돌 시 방호공의 에너지 거동을 분석하였다. 해석결과 선박의 강성이 커질수록 슬래브의 변형 및 소산 에너지량이 커지는 것을 확인할 수 있었다.

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Development and Verification of Simplified Collision Model for Pile Protective Structures (파일형 선박충돌방호공에 대한 간이충돌모델의 개발과 검증)

  • Lee, Gye Hee
    • Journal of Korean Society of Coastal and Ocean Engineers
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    • v.28 no.1
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    • pp.7-12
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    • 2016
  • In this study, a simplified collision model of pile protective structures against a navigation vessel was proposed and verified. The model of pile protective structure were composed by two plastic hinges at below of cap slab and the inside of ground. A nonlinear equation of motions was developed in consideration of the kinematic energy, potential energy and deformation energy in collision event. The developed simplified model were verified by the precise finite element collision analysis of the vessel and the protective structure.

Developed a CBR Model for Civil Defense Evacuation Facilities (민방위 대피시설의 화생방 방호 모델 개발)

  • Park, Nam-Hee;Yeo, Wook-Hyun
    • Proceedings of the Korean Society of Disaster Information Conference
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    • 2017.11a
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    • pp.358-359
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    • 2017
  • 본 논문에서는 민방위 대피시설을 조사한 결과를 바탕으로 대피시설에 적용하고 있는 화생방 설비의 개념을 분석하여, 우리의 실정 및 재난 특성에 따라 적절히 대응할 수 있는 대피시설의 설계 기준(안)을 도출하여, 획일화된 방호개념을 탈피한 대피시설의 구축 기반을 설정하기 위해 새로운 건물 내 대피시설(SIP) 개념을 도입하여, 일반 국민이 화생방관련 민방위 사태에 대응하여 사용할 수 있는 대피시설 계획의 설계 기준을 마련하는 것이다. 전체 대피시설 중 0.1%를 차지하고 있는 화생방 대피시설의 비율이다. 개소수로는 29개소이며, 이 시설은 일반 주민은 사용할 수 없는 충무지휘용 대피시설이다. 이는 화생방 재난 및 사고 발생 시 일반 주민들은 대피할 공간이 전혀 없다는 것을 의미한다. 본 연구에서는 미국의 대피시설 계획 설계내용을 검토하고 국내 시설과 비교하여 대피시설의 성능을 비교 검증하고 화생방 대피시설의 일반적/기술적 구축 조건 모델을 구성하였다.

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A Study on Behaviors of Pile Protective Structures by Simplified Collision Model (간이충돌모델을 이용한 파일형 선박충돌방호공의 충돌거동 연구)

  • Lee, Gye Hee
    • KSCE Journal of Civil and Environmental Engineering Research
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    • v.36 no.1
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    • pp.31-38
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    • 2016
  • In this paper, the deformation-energy curves of the plastic hinges and the vessel bow, which are the major energy dissipation mechanism of a pile protective structures, were estimated, and the parametric study was performed by using those curves to apply the simplified collision model which developed in the previous study. Considered parameters were the mass of slab, the number of piles, the mass of vessel and the collision speed. As results, the difference of energy dissipation mechanism of two pile types (filled and non-filled) were revealed, and the collision behaviors of the protective structures could be tuned by the control of the inertia mass of capping slab. Therefore the simplified collision model can be used in a primary design and optimal design.

A Study on the Development of Fire Protection System based on the Digital Twin (디지털 트윈 기반의 화재 방호 설비 개발 연구)

  • Ko, Min-Hyeok;Choi, Doo-Chan;Kim, Hak-Kyung
    • Proceedings of the Korean Society of Disaster Information Conference
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    • 2022.10a
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    • pp.87-88
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    • 2022
  • "국민안심" 구현을 위한 가동원전의 안전성 확보에 대하여 예측, 예방, 대응 분야에서 연구를 진행하고 있으며,노심손상빈도(CDF)를 1/2수준으로 저감하기 위한 가동원전 심층방어 강화 기술에 대한 연구를 진행하고 있다. 가동원전의 화재 방호 설비를 강화하고자 디지털 트윈 기반의 플랫폼을 구축하여 화재 감지 시스템과 화재 진압 설비에 대한 개발을 진행하고 있다. 원전 자체 소방대가 화재현장을 원활하게 진입할 수 있게 가능하며 더 나아가 CDF를 저감하기 위해 화재 진압실패확률(Non-Suppression Probability)을 낮추고자 하였다. 본 연구를 통해 기존대비 효과적인 화재 방호 설비 기술이 개발될 것으로 보이며 이와 더불어 비즈니스 모델을 구축하여 신사업을 도모할 수 있을 것으로 기대된다.

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Micromechanics-Based FE analysis of Lightweight Concrete Barrier (미세역학을 적용한 경량콘크리트 방호벽에 대한 유한요소 해석)

  • Kim, Bong-Rae;Yang, Beom-Joo;Jeon, Jeong-Hee;Lee, Haeng-Ki;Kwak, Jong-Won;Lee, Jung-Woo
    • Proceedings of the Computational Structural Engineering Institute Conference
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    • 2010.04a
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    • pp.546-549
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    • 2010
  • 현대사회에서 점차 경량콘크리트의 활용도에 대한 관심이 높아지고 있으나 이에 관한 연구실적은 아직까지 미비하다. 경량콘크리트는 그 특성상 가벼운 자중과 높은 에너지 흡수성을 가지고 있다는 점에서 방호벽에 적용 가능한 재료로 볼 수 있다. 이에 본 연구에서는 이러한 점을 고려하여 경량 방호벽에 대한 컴퓨터 시뮬레이션을 통한 경량콘크리트 방호벽의 거동해석을 수행하였으며, 이를 위해 미세역학기반 경량콘크리트 모델을 상용 유한요소 프로그램인 ABAQUS에 적용하여 경량콘크리트 압축공시체에 관한 해석을 선 수행하였다. 이를 통해 도출된 손상변수를 통하여 실제 방호벽에 대한 정적 하중 시뮬레이션을 수행하였다.

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Chemical/Biological/Radiological Protective Facility Entering Time Estimation Simulation with Procedure Analysis (화생방 방호시설의 행동 절차 분석을 통한 진입 소요시간 예측 시뮬레이션)

  • Park, Sun Ho;Lee, Hyun-Soo;Park, Moonseo;Kim, Sooyoung
    • Korean Journal of Construction Engineering and Management
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    • v.15 no.5
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    • pp.40-48
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    • 2014
  • As CBR(Chemical, Biological, and Radiological) attack increases, the importance of CBR protective facilities is being emphasized. When CBR warfare emerges, a task force team, who exist outside of CBR protective facility, should enter the CBR protective facility through neutralizing process in CCA(Contamination Control Area) and TFA(Toxic Free Area). If a bottleneck occurs in the process or zones, the task force team cannot enter the CBR protective facility efficiently and may cause inefficiency in its operation performance or result in casualties. The current design criteria of the CBR protective facility is only limited to ventilation system and it does not consider how much time it takes to enter the facility. Therefore, this research aims to propose the entering time estimation model with discrete event simulation. To make the simulation model, the procedure performed through CCA and TFA is defined and segmented. The actual time of the procedure are measured and adapted for the simulation model. After running the simulation model, variables effecting the entering time are selected for alternatives with adjustments. This entering time estimation model for CBR protective facility is expected to help take time into consideration during the designing phase of CBR protective facility and help CBR protective facility managers to plan facility operation in a more realistic approach.

Structural Analysis Models to Develop Live Load Distribution Factors of Simply Supported Prestressed Concrete I-Girder Bridge (활하중 분배계수식 개발을 위한 I형 프리스트레스트 콘크리트 거더 교량의 구조해석 모델)

  • Lee, Hwan-Woo;Kim, Kwang-Yang
    • Journal of the Computational Structural Engineering Institute of Korea
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    • v.21 no.1
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    • pp.91-101
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    • 2008
  • Structural analysis models to develop live load distribution factors of simply supported prestressed concrete I-girder bridge should have the precision of the analysis results as well as modeling simplicity. This is due to the numerous frequency of structural analysis needed while developing live load distribution factors. In this study, an appropriate structural analysis model is selected by comparing previous researchs studies and models used in practical design. Also, the influence by the flexural stiffness of barrier and diaphragm on the live load distribution had been analyzed through comparing the numerical analysis and experimental tests. As a result, the model that the eccentric girder and the barrier and diaphragm are connected to the deck plate was appropriate in satisfying both accuracy and simplicity for structural analysis of simply supported prestressed concrete I-girder bridge. However, the barrier was analyzed to have insignificant influence on the live load distribution in spite of its variation of stiffness. The eccentric diaphragm showed little influence at 25% or higher of flexural stiffness. From the results, a model that the girder is rigidly connected to the deck plate in consideration of the eccentricity, the barrier is ignored and the whole section of diaphragm is supposed to be valid without eccentricity is decided as the most appropriate structural model to develop the live load distribution factors of simply supported prestressed concrete I-girder bridge in this study.

A Protection Capacity Evaluation of Vessel Protective Structures by Quasi-Static Collision Analysis (준정적 충돌해석을 통한 선박충돌방공호의 방호능력평가)

  • Lee, Gye-Hee
    • Journal of the Computational Structural Engineering Institute of Korea
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    • v.24 no.6
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    • pp.691-697
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    • 2011
  • In this study, the vessel collision protective structure and the vessel were modeled numerically and the quasi-static collision analysis was performed to evaluate the maximum protection capacity. In the modeling process of protective structure, the nonlinear behaviors of structure and the supporting conditions of ground including pull-out action were considered. In that of collision vessel, the bow of vessel was modeled precisely, because of the nonlinear behaviors were concentrated on it. For the efficient analysis, the mass scaling scheme was applied, also. To evaluate the differences and efficiency, the dynamic analyses were performed for the same model, additionally. Based on the obtained energy dissipation curves of the structure and the vessel, the moment that the collision force affected to the bridge substructures was determined and the maximum allowable collision velocity was evaluated. Because of the energy dissipation bound can be recognized clearly, this scheme can be used efficient in engineering work.

Evaluation of Ballistic Performance of Ceramic-Tile-Inserted Metal Block (세라믹 타일이 삽입된 금속 블록의 최적 방호구조 연구)

  • Lee, Seunghwan;Lee, Minhyung
    • Transactions of the Korean Society of Mechanical Engineers A
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    • v.40 no.3
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    • pp.297-304
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    • 2016
  • A numerical simulation has been performed for the penetration of a long-rod penetrator into a metal block (ceramic-tile-inserted 4340-steel plate). The impact velocity is 1.5km/s at a normal incidence angle. The first two validations are conducted for a semi-infinite block measuring the depth of penetration (DOP). The material model of ceramic is the JH-2 (Johnson-Holmquist) model. The predicted DOP values are in close agreement with the experimental data. Then, the primary simulation is performed by varying the position of the confined ceramic tile for three types of thickness of ceramic tile. The residual velocity, residual mass and residual kinetic energy of the long-rod are obtained from the simulation. Based on these predicted values, the trend of the ballistic performance of the protective structure is estimated. In addition, the mass efficiency is calculated in order to determine the performance of the ceramic-tile-inserted metal block. Finally, the optimum protective structure is identified.