• 제목/요약/키워드: building vulnerability

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Concept Design for Measurement against Large Fire Spreading based on BuildingDatabaseofaFolkCultureVillage

  • Umegane, Takuji;Uchida, Daisuke;Mishima, Nobuo;Wakuya, Hiroshi;Okazaki, Yasuhisa;Hayashida, Yukuo;Kitagawa, Keiko;Park, Sun-gyu;Oh, Yong-sun
    • 한국콘텐츠학회:학술대회논문집
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    • 한국콘텐츠학회 2015년도 춘계 종합학술대회 논문집
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    • pp.21-22
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    • 2015
  • This study aims to develop a current building condition database of an important folk culture village of South Korea considering their fire spread risk. We have selected a folk cultral village, and conducted field survey to reveal structure of buildings, materials of building wall, and roof style which make us understand current vulnerability of the village to fire spread. As a result, we made a current building condition database with map, which showed that the village had mixture of reinforced concrete and wood. Besides, we proposed a conceptual idea to prevent from large fire accident in the village.

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RVS에 의한 폭발물테러 위험도 곡선 (Explosive-Terror Risk Curve by RVS)

  • 도기영;윤성원
    • 한국공간구조학회논문집
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    • 제13권3호
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    • pp.57-64
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    • 2013
  • Since the terrorist attacks 9.11 in 2001, the public places such as subway, department stores or office buildings have become a target of terror in major public facilities. In this paper, for the prevention of terrorist attack in domestic building, the assessments of terror risk were conducted and their relationship with building heights was discussed through FEMA 455-Rapid Visual Screening(RVS). Explosive terror risk tends to increase rapidly with building heights(H<230m), showing the correlation coefficient between total risk and building heights(H<230m) is 0.93. In addition, The average of consequences is 8.47 and that of' threat is 8.95. Vulnerability is found to be 6.62 in average.

건물에 대한 지진취약도 모델링 및 공간 분석 (A Development of a Seismic Vulnerability Model and Spatial Analysis for Buildings)

  • 김상빈;김성훈
    • 한국융합학회논문지
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    • 제11권10호
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    • pp.9-18
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    • 2020
  • 현 연구는 개별 건물에 대한 지진취약도 예측 및 특정 관심 지역 내 전체 건물의 안전 상태를 예측하는 방법의 제시에 그 목적이 있다. 현 연구의 범위는 지진피해 저감 연구 중, 예방 활동에 속하는 시뮬레이터 모델개발, 모델 유효성 검증을 포함한다. 연구의 대상은 지역 건물 시스템이다. 선행연구 조사 결과, 국내의 지진 예측 모델링 및 그 결과를 GIS를 활용해 적용한 사례의 성과는 아직은 미비한 것으로 판단되었으며, 이를 다소간이나마 개선하기 위한 방편의 일환으로 현 연구가 진행되었다. 국내·외 총 348개의 데이터를 사용해 통계 분석이 실시되었다. 일련의 통계 분석 결과, 최적화 척도법에 의한 모델이 개발되었고, 모델의 예측 정확도는 87%로 산정되었다. 통계 분석을 통해 개발된 모델식을 지역 건물 시스템의 지진취약도 예측에 적용하기 위해, 공간 분석 기법이 활용되었다. 서울시 구도심과 신도심의 특성을 대표하는 강남구와 종로구 그리고 종로구와 지반 조건이 유사한 은평구를 대상 지역으로 선정하였고, 분석 결과 건물을 대상으로 강남구가 종로구와 은평구에 비해 위험한 것으로 예측되었다.

Seismic vulnerability assessment of a historical building in Tunisia

  • El-Borgi, S.;Choura, S.;Neifar, M.;Smaoui, H.;Majdoub, M.S.;Cherif, D.
    • Smart Structures and Systems
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    • 제4권2호
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    • pp.209-220
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    • 2008
  • A methodology for the seismic vulnerability assessment of historical monuments is presented in this paper. The ongoing work has been conducted in Tunisia within the framework of the FP6 European Union project (WIND-CHIME) on the use of appropriate modern seismic protective systems in the conservation of Mediterranean historical buildings in earthquake-prone areas. The case study is the five-century-old Zaouia of Sidi Kassem Djilizi, located downtown Tunis, the capital of Tunisia. Ambient vibration tests were conducted on the case study using a number of force-balance accelerometers placed at selected locations. The Enhanced Frequency Domain Decomposition (EFDD) technique was applied to extract the dynamic characteristics of the monument. A 3-D finite element model was developed and updated to obtain reasonable correlation between experimental and numerical modal properties. The set of parameters selected for the updating consists of the modulus of elasticity in each wall element of the finite element model. Seismic vulnerability assessment of the case study was carried out via three-dimensional time-history dynamic analyses of the structure. Dynamic stresses were computed and damage was evaluated according to a masonry specific plane failure criterion. Statistics on the occurrence, location and type of failure provide a general view for the probable damage level and mode. Results indicate a high vulnerability that confirms the need for intervention and retrofit.

USN기반 u-Healthcare 시스템 트래픽도메인 환경에서의 보안위험도 평가체계 설계방안 (A Building Method of Security Vulnerability Measurement Framework under u-Healthcare System Traffic Domain Environment Based on USN)

  • 노시춘
    • 융합보안논문지
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    • 제11권3호
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    • pp.39-46
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    • 2011
  • 의료정보 기술의 Smart 환경, Ad-hoc networking, 무선통신 환경은 u-Healthcare 요소기술과 함께 정보보안 취약성을 증가시키는 주요 요인이다. 트래픽 도메인이란 u-Healthcare 의료정보시스템을 통과하는 트래픽 구간의 구분 영역으로서 보안기술의 적용이 가능하도록 네트워크 영역을 구분하는 개념이다. 그 구분의 기준은 보안기술의 적용이 필요한 영역, 트래픽 경로와 트래픽 성격이 타 도메인과 차별화 가능한 영역, 보안기술 적용시 타 영역의 보안기능으로 기능중복이 발생치 않는 영역이다. u-Healthcare 의료정보시스템 도메인은 사용자단말구간, 공중통신망 인프라구간, 네트워킹구간, 인트라넷구간으로 도출된다. 의료정보시스템을 도메인별로 구분하여 취약점을 평가하는 이유는 도메인별로 취약점에 대한 대처방법이 다르게 도출되기 때문이다. 본 연구는 의료정보시스템 도메인을 도출하고 도메인별 보안취약성 진단체계를 설계하여 USN 기반 u-Healthcare 시스템에서의 보안대책을 강구하기 위해서이다. 본 연구에서 제안하는 모델을 사용할 경우 현재까지 막연하게 진행 되어온 USN 기반 의료정보네트워크 보안취약성 진단대책 수립 방법을 좀 더 효과적으로 수행 할 수 있을 것으로 기대한다.

Seismic vulnerability macrozonation map of SMRFs located in Tehran via reliability framework

  • Amini, Ali;Kia, Mehdi;Bayat, Mahmoud
    • Structural Engineering and Mechanics
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    • 제78권3호
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    • pp.351-368
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    • 2021
  • This paper, by applying a reliability-based framework, develops seismic vulnerability macrozonation maps for Tehran, the capital and one of the most earthquake-vulnerable city of Iran. Seismic performance assessment of 3-, 4- and 5-story steel moment resisting frames (SMRFs), designed according to ASCE/SEI 41-17 and Iranian Code of Practice for Seismic Resistant Design of Buildings (2800 Standard), is investigated in terms of overall maximum inter-story drift ratio (MIDR) and unit repair cost ratio which is hereafter known as "damage ratio". To this end, Tehran city is first meshed into a network of 66 points to numerically locate low- to mid-rise SMRFs. Active faults around Tehran are next modeled explicitly. Two different combination of faults, based on available seismological data, are then developed to explore the impact of choosing a proper seismic scenario. In addition, soil effect is exclusively addressed. After building analytical models, reliability methods in combination with structure-specific probabilistic models are applied to predict demand and damage ratio of structures in a cost-effective paradigm. Due to capability of proposed methodology incorporating both aleatory and epistemic uncertainties explicitly, this framework which is centered on the regional demand and damage ratio estimation via structure-specific characteristics can efficiently pave the way for decision makers to find the most vulnerable area in a regional scale. This technical basis can also be adapted to any other structures which the demand and/or damage ratio prediction models are developed.

Simplified analytical Moment-Curvature relationship for hollow circular RC cross-sections

  • Gentile, Roberto;Raffaele, Domenico
    • Earthquakes and Structures
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    • 제15권4호
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    • pp.419-429
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    • 2018
  • The seismic vulnerability analysis of multi-span bridges can be based on the response of the piers, provided that deck, bearings and foundations remain elastic. The lateral response of an RC bridge pier can be affected by different mechanisms (i.e., flexure, shear, lap-splice or buckling of the longitudinal reinforcement bars, second order effects). In the literature, simplified formulations are available for mechanisms different from the flexure. On the other hand, the flexural response is usually calculated with a numerically-based Moment-Curvature diagram of the base section and equivalent plastic hinge length. The goal of this paper is to propose a simplified analytical solution to obtain the Moment-Curvature relationship for hollow circular RC sections. This based on calibrated polynomials, fitted against a database comprising 720 numerical Moment-Curvature analyses. The section capacity curve is defined through the position of 6 characteristic points and they are based on four input parameters: void ratio of the hollow section, axial force ratio, longitudinal reinforcement ratio, transversal reinforcement ratio. A case study RC bridge pier is assessed with the proposed solution and the results are compared to a refined numerical FEM analysis, showing good match.

전문가의견을 활용한 주거건물 손상함수 개발 (A Study on Vulnerability Function of Residential Building Using Expert Opinion)

  • 김길호;최천규;홍승진;김경탁
    • 한국수자원학회:학술대회논문집
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    • 한국수자원학회 2017년도 학술발표회
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    • pp.339-339
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    • 2017
  • 손상함수란 건물, 차량, 농작물 등과 같은 피해대상물에 재난강도에 따른 취약도(vulnerability)를 정량화한 함수로, 재난리스크 모델에서 널리 사용되는 개념이다. 홍수재난에서 손상함수는 일반적으로 피해지역에서 조사된 경험적 피해자료(empirical data)를 활용하거나, 표준화된 피해대상물에 대한 손상성을 전문가의 의견(expert opinion)을 참고하여 개발된다. 이때, 취약도를 설명하는 설명변수는 일반적으로 침수심(inundation depth)이 사용되며, 그에 따른 취약도는 손상률(percent damage)로서 상대함수 형태가 일반적이다. 본 연구는 주거건물(residential building)에 대한 손상함수 개발을 위해 자연재난 손해사정 경력자(8인)를 대상으로 표준화된 주거건물(단독주택, 아파트, 연립/다세대주택)에 대해 침수에 따른 건물 손상성을 조사하였다. 주거건물 손상성을 설명하는 최대범위는 건물내부 바닥고를 기준으로 침수심 3m까지이며, 침수심 변화에 따른 손상성을 건물신축 공종에 따라 질의하고 이를 종합하였다. 조사과정은 (1) 표준건물에 대한 정의, (2) 공종별 침수에 따른 손상여부 질의, (3) 공종별 최대 손상률 평가 및 주요 피해내역 토의, (4) 공종별 침수심에 따른 손상률 평가, (5) 결과종합의 단계로 진행되었고, 이를 통해 주거건물 유형에 따른 손상함수를 개발할 수 있었다. 본 연구에서 개발된 손상함수는 다양한 침수높이에서 주거건물에 대한 취약도를 설명하는 데 장점이 있으나, 그 결과는 향후 홍수피해지역을 대상으로 수집된 다양한 피해조사 결과와 비교하여 보완될 필요가 있다.

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EPS Bead와 유리섬유를 혼입한 샌드위치 패널 심재의 단열 특성 (Thermal Insulation Properties of Sandwich Panel Core with EPS Bead and Glass Wool)

  • 전은영;이창우;황우준;이상수
    • 한국건축시공학회:학술대회논문집
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    • 한국건축시공학회 2022년도 가을 학술논문 발표대회
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    • pp.77-78
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    • 2022
  • To improve the fire vulnerability of the organic insulation sandwich panel core, which is the main culprit of the large-scale fire disaster, an experiment was conducted to examine the thermal conductivity properties of the core material mixed with the organic insulation material EPS Bead and the inorganic insulation material glass wool. As the Additional ratio of glass wool increased, the thermal conductivity decreased, and it was determined that the replacement of glass wool of 3% or more had little effect on the decrease in thermal conductivity. In addition, it can be seen that the most ideal thermal conductivity is exhibited when 1% Replacement ratio of EPS and 3% glass wool are added. The core material of such organic and inorganic insulation materials is judged to be a core material that can compensate for the fire vulnerability of existing insulation materials. Therefore, in order to determine whether it is used as a core material for sandwich panels, additional studies such as fire resistance experiments and sound absorption experiments are needed in the future.

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Progressive collapse analysis of two existing steel buildings using a linear static procedure

  • JalaliLarijani, Reza;Celikag, Murude;Aghayan, Iman;Kazemi, Mahdi
    • Structural Engineering and Mechanics
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    • 제48권2호
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    • pp.207-220
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    • 2013
  • In this study, the vulnerability of two existing asymmetric steel building frames to Progressive Collapse (PC) is assessed. The buildings have different frame systems, steel sections and number of stories (nine and six). An alternate path method (APM) with a linear static analysis (LS) is carried out according to General Services Administration (GSA) 2003 guidelines. The Demand Capacity Ratio (DCR) of each primary element (beams and columns) is given with its specific details for all frames. The results show that the nine-story building with a dual frame system (moment frame with bracing system) has a lower susceptibility and greater resistance to PC than the six-story building with a simple building frame system (gravity system with bracing system). Implementing built-up box-shaped sections for columns is a better choice than using built-up I-shaped sections because there is no weak axis for the box section.