• Title/Summary/Keyword: 재난강도

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Development of a heavy rain disaster impact model system (호우 재해영향모델 시스템 개발)

  • Dong Ho Kang;Na Yeon Choi;Byung Sik Kim
    • Proceedings of the Korea Water Resources Association Conference
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    • 2023.05a
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    • pp.57-57
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    • 2023
  • 최근 심각한 기후변화로 인한 호우, 태풍 등 기상현상의 변화로 다양한 재해가 발생하고 그로 인한 피해 규모도 커지고 있다. 현재 우리나라의 호우 재해에 대한 예보는 단순히 강수량, 강설량, 바람의 강도 등을 전달해 주고 있는데, 이러한 정보 전달의 형태는 그로 인한 피해 규모를 예측하기 어렵다. 본 시스템은 현재의 단순한 수치만을 보여주는 예보에서 호우가 어느 지역에 어떠한 영향을 미치는지에 대한 정보를 전달한다. 시간대별 격자단위(1km×1km)로 구획하여 그 영향이클 것이라고 예상되는 9개 분야(생활, 도로, 농업, 편의, 공업, 의료복지, 교육연구. 축산업, 공용)의 정보를 전달 해 줌으로써 경제적, 산업적 측면에서 재난으로 인한 피해를 최소화할 수 있도록 하였다. GIS와 호우위험영향도 분석결과를 제공하는 플랫폼이며 주요 기능은 종합위험등급 현황을한 눈에 볼 수 있는 GIS 대쉬보드 상황판과 IBH-HR(예측강우분석), IBF-G(수문분석), IBF-PRA(리스크 분석) 3개의 분석 모듈 그리고 분석 모듈을 통해 도출된 분석결과를 관리하는 ARM(분석이력관리)으로 구성되었다. 다양한 콘텐츠 서비스로 호우 영향정보의 활용성이 클 것으로 기대된다.

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Accuracy Verification through Urban Flood Alert Criteria Test Operation (도시침수 위험기준 시범운영을 통한 정확성 검토)

  • Kang, Ho Seon;Cho, Jae Woong;Lee, Han Seung;Moon, Hye Jin
    • Proceedings of the Korea Water Resources Association Conference
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    • 2022.05a
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    • pp.110-110
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    • 2022
  • 2011~2019년 평균 강수량은 100년 전(1912~1920) 보다 861mm 증가(7.4%)하였으며, 2020년 서울, 부산, 대전 등 대도시 지역에서 침수로 인한 인명피해가 발생하는 등 기후변화로 인한 강우량, 집중호우의 발생 빈도와 강우강도 증가 및 지속적인 도시침수로 인한 인명·재산 피해를 지속적으로 발생하고 있다. 이와 같이 도시침수는 단기간 집중호우에 의해 발생하고 좁은 범위에 발생하지만 건물, 인구 등 밀집도가 높은 지역에 발생하여 피해가 크게 발생한다. 또한 우수관 개선, 배수 펌프장 등 구조적인 대책만으로는 한계가 있으며, 예 경보 등 비구조적인 대책과 합께 이루어져야 한다. 이에 본 연구에서는 과거침수피해이력자료와 강우자료를 이용하여 해당 행정동에 대해 침수발생 한계강우량을 추정하였으며, 침수피해이력이 없는 행정동에 대해서는 유역특성과 한계강우량과의 관계를 이용하여 한계강우량을 예측하는 모델을 개발하였다. 3,344개 행정동에 대해 한계강우량을 추정하였으며, 이를 활용하여 2021년 침수 예·경보에 시범적용하였다. 6월~9월 까지 운영한 결과를 대상으로 강우자료와 비교하여 정확성을 검토하고 오차가 10% 이상인 행정동에 대해서는 개선하고자 한다.

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Development of disaster severity classification model using machine learning technique (머신러닝 기법을 이용한 재해강도 분류모형 개발)

  • Lee, Seungmin;Baek, Seonuk;Lee, Junhak;Kim, Kyungtak;Kim, Soojun;Kim, Hung Soo
    • Journal of Korea Water Resources Association
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    • v.56 no.4
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    • pp.261-272
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    • 2023
  • In recent years, natural disasters such as heavy rainfall and typhoons have occurred more frequently, and their severity has increased due to climate change. The Korea Meteorological Administration (KMA) currently uses the same criteria for all regions in Korea for watch and warning based on the maximum cumulative rainfall with durations of 3-hour and 12-hour to reduce damage. However, KMA's criteria do not consider the regional characteristics of damages caused by heavy rainfall and typhoon events. In this regard, it is necessary to develop new criteria considering regional characteristics of damage and cumulative rainfalls in durations, establishing four stages: blue, yellow, orange, and red. A classification model, called DSCM (Disaster Severity Classification Model), for the four-stage disaster severity was developed using four machine learning models (Decision Tree, Support Vector Machine, Random Forest, and XGBoost). This study applied DSCM to local governments of Seoul, Incheon, and Gyeonggi Province province. To develop DSCM, we used data on rainfall, cumulative rainfall, maximum rainfalls for durations of 3-hour and 12-hour, and antecedent rainfall as independent variables, and a 4-class damage scale for heavy rain damage and typhoon damage for each local government as dependent variables. As a result, the Decision Tree model had the highest accuracy with an F1-Score of 0.56. We believe that this developed DSCM can help identify disaster risk at each stage and contribute to reducing damage through efficient disaster management for local governments based on specific events.

An Experimental Study on the Size and Length Effect of High Strength Concrete Specimens (고강도 콘크리트 시편의 치수 및 길이 효과에 관한 실험적 연구)

  • Kim, Dongbaek;Kim, Myunggon;Lee, Jeangtae;Song, Daegyeum
    • Journal of the Society of Disaster Information
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    • v.13 no.3
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    • pp.366-375
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    • 2017
  • Internal factors having effects on compressive strength test results of concrete include size, shape, height-diameter ratio(h/d), section processing method, dryness and wetness, etc. of the specimen. As it is difficult to ensure dimensions of core specimen due to rebar cutting from rebar spacing, wall thickness, effects on the structure, etc. when taking core of the concrete structure, correction of dimensions and h/d of the specimen become important for quality control of the concrete. Thus, in order to review effects of specimen size and height-diameter ratio for the concretes with compressive strength within 40~60MPa, this study has experimentally reviewed compressive strength test values by applying correction factors pursuant to KS F 2422 (Method of obtaining and testing drilled cores and sawed beams of concrete), when changing specimen diameter to ${\emptyset}5{\sim}15cm$, and h/d to 2.0~1.25.

Field Applicability Evaluation Experiment for Ultra-high Strength (130MPa) Concrete (초고강도(130MPa) 콘크리트의 현장적용성 평가에 관한 실험)

  • Choonhwan Cho
    • Journal of the Society of Disaster Information
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    • v.20 no.1
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    • pp.20-31
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    • 2024
  • Purpose: Research and development of high-strength concrete enables high-rise buildings and reduces the self-weight of the structure by reducing the cross-section, thereby reducing the thickness of beams and slabs to build more floors. A large effective space can be secured and the amount of reinforcement and concrete used to designate the base surface can be reduced. Method: In terms of field construction and quality, the effect of reducing the occurrence of drying shrinkage can be confirmed by studying the combination of low water bonding ratio and minimizing bleeding on the concrete surface. Result: The ease of site construction was confirmed due to the high self-charging property due to the increased fluidity by using high-performance water reducing agents, and the advantage of shortening the time to remove the formwork by expressing the early strength of concrete was confirmed. These experimental results show that the field application of ultra-high-strength concrete with a design standard strength of 100 MPa or higher can be expanded in high-rise buildings. Through this study, we experimented and evaluated whether ultra-high-strength concrete with a strength of 130 MPa or higher, considering the applicability of high-rise buildings with more than 120 floors in Korea, could be applied in the field. Conclusion: This study found the optimal mixing ratio studied by various methods of indoor basic experiments to confirm the applicability of ultra-high strength, produced 130MPa ultra-high strength concrete at a ready-mixed concrete factory similar to the real size, and tested the applicability of concrete to the fluidity and strength expression and hydration heat.

Soil-structure interaction analysis for the offshore wind tower with bucket foundation (버켓기초를 가진 해상풍력타워의 지반-구조물 상호작용해석)

  • Lee, Gyehee;Kim, Sejeong;Phu, Tranduc
    • Journal of the Society of Disaster Information
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    • v.10 no.2
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    • pp.244-252
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    • 2014
  • In this study, seismic responses of the offshore wind tower supported by bucket foundation are analyzed in consideration of soil-structure interaction. The program SASSI is used as analyzing tool and an artificial seismic input for soft soil is used as input motion. The H/R ratio of bucket, the stiffness of bucket foundation and the soil stiffness are considered as parameters and its effects are estimated. The responses of structure are obtained at the base and the nacell. As results, the effects of H/R ratio, the stiffness of bucket and the stiffness of site are generally denoted different response tendency at the base and the nacell. However, these whole responses of the base and the nacell are much lager than that of rock site. Therefore, the consideration of this phemomia affect to the response of offshore wind tower with bucket foundation largely.

Development of Airframe Structure for Disaster and Public Safety Multicopter UAV (재난치안용 멀티콥터 무인기 기체구조 개발)

  • Shin, Jeong Woo;Lee, Seunggyu;Noh, Jeong Ho
    • Journal of Aerospace System Engineering
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    • v.14 no.3
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    • pp.69-77
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    • 2020
  • Airframe structure development of the 35 kg class 'Disaster and Public Safety Multicopter' UAV is described in this paper. To reduce the airframe weight, T-700 grade CFRP composite material was used, and the fuselage was designed with the semi-monocoque structure and plate installed with the control and communication devices designed in a sandwich structure. The specimen tests for the laminated plate and pipe were conducted to verify the strength and stiffness of the designed parts. The stacking sequence of composite materials was determined by the static strength and vibration analysis, and landing gear strut was designed by the nonlinear analysis with decent speed and ground clearance requirements. The static strength test was performed to evaluate the structural integrity and to verify the landing gear behavior.

Evaluation of Physical Properties and Long-term Stability of Expansion Materials for Emergency Repair by Temperature (긴급복구용 팽창재료의 온도에 따른 물리적 특성 및 장기 안전성 평가)

  • Park, Jeongjun;Kim, Kisung;Kang, Hyounhoi;Kim, Ju-Ho;Hong, Gigwon
    • Journal of the Society of Disaster Information
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    • v.14 no.1
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    • pp.79-88
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    • 2018
  • In this study, the changes of the expansion and strength according to the temperature of the emergency repairing expansion material were examined by cup foaming test and uniaxial compressive strength test, and the accelerated compression creep test was carried out to confirm the long term stability. Ramp & Hold test and accelerated compressive creep test were performed to evaluate the creep performance. The short - term creep test was used to determine the initial creep strain of the expanding material. The isothermal method using time - To evaluate the long - term compressive creep performance.

The Chloride Ion Diffusion Characteristics of High Performance Lightweight Concrete Using Metakaolin (메타카올린을 사용한 고성능 경량 콘크리트의 염소이온 확산 특성)

  • Lee, Changsoo;Kim, Youngook;Nam, Changsik
    • Journal of the Society of Disaster Information
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    • v.7 no.1
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    • pp.21-31
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    • 2011
  • The objectives of this study is replaced Silicafume with Metakaolin that is used to lightweight concrete to better performance. So, this study made high-performance lightweight concrete using Metakaolin and characteristics of the fundamental properties and chloride ion diffusion. Consequently, it is compressive strength and chloride ion penetration resistance is lower than lightweight concrete using Silicafume, the performance of compressive strength contrast Silicafume is about 88 to 95%. Also, this study got a content result because the chloride ion penetration resistance showed the performance in around 80 to 90%. As a result, this study insist that replacement ratio of Metakaolin is suitable for 10 to 15%.Silicafume and Metakaolin have similar characteristics. In addition, it is similar to the performance of alternative materials is possible.

An Evaluation of Mechanical Characteristics of Modified Asphalt Concrete Mixture (개질아스팔트 콘크리트 혼합물의 기계적 특성평가)

  • Kim, Nakseok;Bang, Sanyoung
    • Journal of the Society of Disaster Information
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    • v.7 no.1
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    • pp.32-42
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    • 2011
  • Many researches have been conducted to evaluate the performance of modified asphalt concrete mixtures. The research was conducted to estimate the laboratory mechanical characteristics of Elvaloy-modified asphalt concrete mixture. To achieve its intended objective, indirect tensile test and resilient modulus test were performed. The rest results revealed that indirect tensile strengths and resilient moduli of the Elvaloy-modified asphalt concrete mixture were higher than those of the conventional dense-graded. As a result, within the limits of the tests conducted in this research, it is predicted that the performance and stability of the Elvaloy-modified asphalt concrete mixture are better than that of the conventional dense-graded one.