• 제목/요약/키워드: 안전설계 기준 검토

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A Study on Decision of Minimum Required Channel Width Considering Ship Types by Fast Time Simulation (배속 시뮬레이션 기반의 선종별 최소 항로 폭에 관한 연구)

  • Kim, Hyun-suk;Lee, Yun-sok
    • Journal of the Korean Society of Marine Environment & Safety
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    • v.26 no.4
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    • pp.309-316
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    • 2020
  • Waterway design should prioritize appropriate channel width to ensure preferential safe passage for the arrival and departure of vessels. To calculate the minimum channel width required for safe passage a comprehensive review of several factors is required. These factors include vessel maneuverability, determined by vessel size, type and speed; environmental factors such as wind, tide, and wave action; human factors, including personal experience and operator judgment as well as marine traffic and navigation support facilities for decision making. However, the Korean channel width design standard is based only on vessel length, and requires improvement when compared with the standards of PIANC, USA, and Japan. This study aims to estimate the appropriate channel width required for one-way traffic in a straight channel, considering various vessel and environmental factors, using Fast Time Simulation (FTS). When the wind speed is 25 knots, with a current speed of 2 knots and a normal vessel speed of 10 knots FTS shows that a 150K GT Cruise Ship requires a minimum channel width of 0.67-0.91 the vessel length (L), whereas a 120K TEU Container Ship and a 300K DWT VLCC require 0.79-1.17 and 1.02-1.59, respectively. Such results can be used to calculate the minimum channel width required for safe passage as an improved Korean design standard.

Analysis of Design Live Load of Railway Bridge Through Statistical Analysis of WIM Data for High-speed Rail (고속철도 WIM 데이터에 대한 통계분석을 통한 철도교량 설계활하중 분석)

  • Park, Sumin;Yeo, Inho;Paik, Inyeol
    • Journal of the Computational Structural Engineering Institute of Korea
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    • v.28 no.6
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    • pp.589-597
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    • 2015
  • In this paper, the live load model for the design of high-speed railway bridge is analyzed by statistic and probabilistic methods and the safety level that is given by the load factors of the load combination is analyzed. This study is a part of the development of the limit state design method for the railway bridge, and the train data collected from the Gyeongbu high-speed railway for about one month are utilized. The four different statistical methods are applied to estimate the design load to match the bridge design life and the results are compared. In order to examine the safety level that the design load combination of the railway bridge gives, the reliability indexes are determined and the results are analyzed. The load effect from the current design live load for the high-speed rail bridge which is 0.75 times of the standard train load is came out greater than at least 30-22% that from the estimated load from the measured data. If it is judged based on the ultimate limit state, there is a possibility of additional reduction of the safety factors through the reliability analysis.

Design of High Strength Underground FRP Septic Tank Stiffened by Circular Steel Pipe (원형강관으로 보강된 지중매립형 FRP 개인하수 처리시설의 설계)

  • Cho, Kwang Je;Kim, Sung Bo
    • KSCE Journal of Civil and Environmental Engineering Research
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    • v.32 no.3A
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    • pp.171-181
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    • 2012
  • The design of high strength underground septic tank stiffened by steel pipe is presented and the ultimate behavior is investigated according to the full scale experiments for three types of specimens. The limitation of the current design specification are pointed out and the general design procedure of private sewage treatment facility are newly developed considering thickness of FRP shell, types of steel pipe stiffer and diaphragm wall. The direct tensile and bending test for FRP material of septic tank were performed. The increase effect of ultimate strength due to the circular steel pipe are investigated by the full scale field test and compared with the results by the finite element analysis.

A study on the estimation of safety in long railway tunnel (장대 철도터널에서의 방재 안전성 평가에 관한 연구)

  • Kim, Young-Geun;Kim, Dong-Hyun
    • Journal of Korean Tunnelling and Underground Space Association
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    • v.9 no.3
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    • pp.287-298
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    • 2007
  • Recently, as the construction of new railway and the relocation of existing line increase, tunnel structures get longer. The railway fire accidents in long tunnel bring large damages of human life and disaster. The interest on safety in long tunnel has been growing and the safety standard for long tunnels is tightening. For that reason, at the planning stage of a long tunnel, the optimum design of safety facility for minimizing the risks and satisfying the safety standard is required. For the reasonable design of a long railway tunnel considering high safety, qualitative estimation for tunnel safely is required. In this study, QRA (Quantitative Risk Analysis) technique is applied to design of a long railway tunnel for assuring the safety function and estimating the risk of safety. The case study for safety design was carried out to verify the QRA technique for two railway tunnels.

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Research of Electrical Safety Test Construction about Structure under 765kV Transmission Lines (765kV 송전선로 선하 건조물 전기안전 실증시험 구축 연구)

  • Mun, Seong-duk;Maeng, Jong-ho;An, Ho-sung;Ahn, Heesung;Lee, Ho-guen
    • Proceedings of the KIEE Conference
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    • 2015.07a
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    • pp.410-411
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    • 2015
  • 765kV 송전선로와 선하 건조물은 최하단 도체의 높이 28m를 적용하고 대지저항률은 $100{\Omega}m$, IEEE 변전소 설계지침인 Std-80에 따라 건조물에 접촉하는 사람의 인체저항은 $1000{\Omega}m$, 대지를 딛고 있는 사람의 한쪽 발 접지저항은 직경 8cm의 원판 접지저항을 적용한다. 이렇게 구성된 모델에서 선로중심에서 건조물까지 이격거리 변동에 따라 인체 유도전류를 측정하고자 한다. 본 연구에서는 전기안전 실증시험을 위해 765kV 가공송전선로 직하에 목조 및 샌드위치 판넬 2가지 시험용 가옥을 설치하였다. 전기설비기술기준에 의거하여 선하직하 이격거리가 28m일 때 발생할 수 있는 전자계 특성과 재질에 따른 전자계가 미치는 영향을 비교 분석하고 장기 유도장해 실측 데이터를 확보하고자 그림 1과 같이 구축 설계하였다. 이를 통해 송전선로에 의해 선로중심으로부터 구축된 모의가옥까지 이격거리에 따라 유도되는 전류를 측정하고 그 크기가 인체에 미치는 유도전류 한계치 초과 여부에 대해 검토함으로써 안전성 여부에 대해 측정 및 검토하고자 시험게획을 수립하였다. 또한 선로 고장 시 대지전위상승에 의한 선하 건조물 안정성 검토 및 낙뢰서지 유입에 의한 전기안전 시험 구성을 하였다.

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A Study of Connection Stability for Reinforced Retaining Wall Constructed with Soilbag with Varying Connection Strength (연결강도 변화에 의한 Soilbag 보강토 옹벽 연결부의 안정성 평가)

  • Lee, Sang-Moon;Choi, Changho;Shin, Eun-Chul
    • Journal of the Korean Geosynthetics Society
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    • v.12 no.1
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    • pp.101-107
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    • 2013
  • Environmental-friendly and economical construction are the recent issues for civil structures and soilbag as facing wall is widely used for cut-slope remediation projects. However, the stability of structures is an important issue for the use of environmental-friendly and economical materials. In order to understand the stability of soilbag reinforced retaining wall, tensile resistance, rupture, tensile strength, and internal/external safety factor of the wall were analyzed with MSEW program and the results were compared to the safety factor of block-type reinforced walls. The stability of retaining wall was analyzed with reduction coefficients of connection strength to check the connection stability. Because it is possible to move between soilbag and geogrid connector for soilbag retaining wall, the safety factor of the wall was analyzed with different inclination angles of soilbag. The analysis result shows that the connection strength and internal/external stability of soilbag reinforced wall satisfy the stability criteria.

Generation of Artificial Time History Covering Design Response Spectrum by Two Modification Functions (이중 수정함수 적용을 통한 설계응답스펙트럼 포괄 인공지진파의 생성)

  • Park, Gun;Hong, Ki Nam;Han, Sang Hoon;Kim, Jae Suk
    • KSCE Journal of Civil and Environmental Engineering Research
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    • v.36 no.1
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    • pp.1-11
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    • 2016
  • The domestic and foreign seismic design codes have specified that time history covers design response spectrum when the response spectrum, which calculated from the time history, is smaller than the design response spectrum at five points or less. In order to verify the design codes, time history analysis for a pier was performed by using five artificial time histories conforming design code with various characteristics and its member forces were evaluated according to them. It was confirmed from analysis results that, regardless of the conformity to design code requirement, seismic design using the artificial time histories could not guarantee earthquake resistant design if the response spectrum from them is lower than design response spectrum at the similar period to the natural frequency of structure. Thus, the time history generating method to make its acceleration response spectrum to be greater than design response spectrum at all period was proposed by two modification function in this study. It was also verified whether time histories from the proposed method satisfy the seismic design codes or not.

The Study of safety management techniques for disaster prevention in Agricultural Reservoir (Hydraulic.hydrological evaluations of safety) (농업용저수지 재해예방 안전관리기법에 관한 연구 (수리.수문학적 안정성 평가 중심으로))

  • Park, Ji-Sung;Kim, Meyong-Won;Park, Byong-Jun;Kim, Kyung-Muk
    • Proceedings of the Korea Water Resources Association Conference
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    • 2012.05a
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    • pp.708-708
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    • 2012
  • 국내에는 농업용수 공급을 목적으로 축조된 저수지가 2008년 통계연보기준에 따르면 17,649개소가 있으며, 이 중 3,326개소는 한국농어촌공사에서 관리하고, 나머지 14,323개소는 지자체에서 관리하고 있는 것으로 파악되고 있다. 유효저수량으로 보면 공사관리가 24억4천7백만$m^3$, 지자체관리가 3억2천3백만$m^3$으로 각각 88.3%와 11.7%를 관리하고 있는 셈이다. 경상북도와 같은 산이 많은 지방은 지자체관리가 전체 대비 34.5%인 4,943개소이지만 유효저수량으로 보면 전체 27억7천만$m^3$ 중 8천4백만$m^3$ 3%수준, 지자체관리 대비 26.1%수준의 저수지가 있는 셈이다. 저수지의 축조년도를 지자체관리 저수지의 58%인 8,352개소의 저수지가 1948년 이전에 축조된 일명 '밀가루 댐'으로 불리는 저수지가 대부분이다. 축조된 지 60년 이상 된 시설물은 공용내구연한이 경과한 시설로서 노후손상부위를 복구해야 함은 물론 이상기후에 따른 강우사상의 변화로 설계빈도를 달리하여 재해대비 보강이 필요한 시설이다. 2002년 8월 제15호 태풍 루사나 2003년 9월 제14호 태풍 매미 등에 의해 저수지의 피해가 발생하는 빈도가 점차 늘어가고 있다. 따라서 지자체관리 저수지의 안전관리방안의 마련을 통한 재해대비보강 및 기능강화가 시급한 실정이다. 따라서 본 연구에서는 시 군 관리 농업용 저수지에 대하여 저수지 준공년도별 설계빈도에 대한 등급 구분 및 홍수배제 능력 등 수리 수문학적 안정성 기준을 설정하여 검토한 결과 1960년대 이전에 축조된 저수지의 경우 50%이상의 저수지에서 안정성에 문제가 생긴 것으로 파악되며, 1970년대에는 38%, 1980년대에는 34%, 1990년대에는 24%로 검토되었다. 이와 같이 안정성에 문제가 있는 저수지는 주기적인 모니터링과 보강이 필요하다고 사료된다.

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A study on APR-1400 core design for heterogeneous thorium fuel (APR-1400 원전을 위한 비균질 토륨핵연료 노심설계 방안연구)

  • 배강목;김관희;김명현
    • Proceedings of the Korea Society for Energy Engineering kosee Conference
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    • 2002.05a
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    • pp.135-141
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    • 2002
  • An optimization of KTF thorium fuel assembly design was performed on the basis of the design parameter studies. Optimization goals ware to make the core have both proliferation resistance and fuel cycle economics. Four kinds of proliferation resistance indexes were used; SNS, TG, BCM, Toxicity. A new index, FEI was regarded as a limiting index for the maximization of fuel cycle economics. Optimized thorium fuel design was applied for APR-1400 reactor core. Nuclear core design procedures were examined to solve the thorium fuel reactor problems. It was shown that heterogeneous thorium fuel core option is acceptable in safety and economics aspects.

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Improvement in Design Load and Seismic Performance Objective for Industrial and Environmental Facilities (산업환경시설의 설계하중과 내진성능목표 개선안)

  • Kim, Ickhyun;Hong, Kee-Jeung;Kim, Jung Han;Lee, Jin Ho;Cho, Sunggook;Lee, Jin-Hyeong
    • KSCE Journal of Civil and Environmental Engineering Research
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    • v.42 no.6
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    • pp.763-773
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    • 2022
  • Industrial and environmental facilities, which are national growth engine, must sustain their structural safety and maintain their process to continue production activities under various load conditions including natural hazards. In this study, by improving existing design codes which aim to secure the structural safety only, new structural and seismic design codes are proposed to secure both the structural safety and the operability of facilities. In the proposed structural design code, a variety of loads to reflect the characteristics of industrial and environmental facilities are considered and load combinations for the ultimate strength design and the allowable stress design of structures are suggested. Considering the importance of a unit industrial facility and that of a unit process, the seismic design class, design earthquake, and seismic performance level of a unit component are determined to achieve the dual seismic performance objectives for securing both the structural safety and the operability. Also, the proposed design code are applied to an example of an environmental facility in order to examine its applicability.