• Title/Summary/Keyword: Coastal inundation

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Flood damage analysis of Coastal Urban Area Considering Sea level rise and inundation (연안도시지역의 해수면상승과 범람에 따른 침수피해액 분석)

  • Gyu, Eo;Hong, Seung Jin;Kang, Narae;Jongso, Lee;Kim, Hung Soo
    • Proceedings of the Korea Water Resources Association Conference
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    • 2015.05a
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    • pp.447-447
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    • 2015
  • 최근 기후변화에 따른 전 지구적인 지구온난화는 단시간의 집중호우와 돌발홍수의 증가로 기존의 기후특성을 변화시키고 있다. 이로 인해, 자연재해의 강도가 강해지고, 재산피해가 커지고 있다. 특히, 내륙에 위치한 도시지역 보다 해안 도시지역은 조위에 따라 홍수위가 크게 영향을 받기 때문에 강우에 따른 피해규모는 더 크게 영향을 받는다. 본 연구에서는 기후변화로 인한 자연재해에 대비하기 위하여 미래 기후변화를 예측하고 해안 도시지역에 미치는 영향을 파악하고자 하였으며, 대상지역으로는 2012년 태풍 산바(Sanba)으로 인해 상당한 인명피해와 홍수피해가 발생한 마산(창원시) 일대를 선정하였다. 본 연구에서는 마산(창원시) 대상으로 빈도-지속기간별 강우와 조위의 영향을 고려한 침수모의를 실시하고자 한다. 또한 2004년도에 개발된 다차원법(다차원 홍수피해 산정방법(Multi-Dimensional Flood Damage Analysis))을 이용하여 조위와 홍수위의 영향을 받은 해안 도시의 경제성 분석을 실시하고, 침수에 따른 피해액을 산정하고자 한다. 본 연구의 결과는 향후 마산(창원시) 일대의 홍수피해 산정과 침수피해 관련 방재 정책을 수립하는데 기초자료로 활용할 수 있을 것으로 기대된다.

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Development of Comprehensive Inundation Module in Coastal Cities (연안도시 복합적 침수해석을 위한 모듈 개발)

  • Jang, Hyun Ju;Choi, Hyun Ra;Song, Chang Geun
    • Proceedings of the Korea Water Resources Association Conference
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    • 2017.05a
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    • pp.288-288
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    • 2017
  • 최근 우리나라뿐만 아니라 세계에서는 기후가 변화함에 따라 다양한 문제들이 발생하고 있으며 복합적인 위험의 증가도 함께 나타났다. 이러한 기후의 변화로 인해 집중 호우가 발생하는 빈도가 많아지면서 여러 요인들의 의한 침수가 반복적으로 나타나고 있다. 침수의 요인으로는 크게 내수침수, 외수범람, 해수범람이 존재하게 된다. 내수침수의 경우는 펌프나 우수관 등의 문제로 제내지 배수 불량이 발생하여 물이 하천으로 배수 되지 못했을 때 발생하게 되고, 외수범람의 경우는 홍수나 폭우에 의해 하천의 수위가 높아져 제방을 월류할 때 발생, 해수범람은 해수위가 상승하여 발생하게 된다. 본 연구에서는 내수침수와 외수범람을 동시에 복합적으로 모의할 수 있는 2차원 동수역학모형인 HDM-2D(Song. 2011)를 확장하여 해수-외수-내수 연계 모듈을 개발하였다. 해수 유동 모의 결과를 별도의 입력 파일로 불러들여 ERG (Exponentially Growth Rate) 기법에 의한 내수침수 해석 모형과 Petrov 안정화 기법 기반 충격파의 해석이 가능한 외부 범람모형의 초기 및 경계조건으로 부여하여 동수역학적 연계 모듈을 구성하였다. 해수의 영향을 고려한 해수-외수-내수 연계 모의를 통해 시간에 따른 연안 도시 침수 발생 양상을 분석할 수 있었다. 본 연구는 기후변화에 따라 복합적인 침수가 많이 발생하는 연안도시 지역에서 침수의 복합원인을 찾아내고 침수 예상도를 작성하여 연안도시에 가해지는 피해를 분석하는데 도움이 될 것으로 판단된다.

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A Review on Remote Sensing and GIS Applications to Monitor Natural Disasters in Indonesia

  • Hakim, Wahyu Luqmanul;Lee, Chang-Wook
    • Korean Journal of Remote Sensing
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    • v.36 no.6_1
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    • pp.1303-1322
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    • 2020
  • Indonesia is more prone to natural disasters due to its geological condition under the three main plates, making Indonesia experience frequent seismic activity, causing earthquakes, volcanic eruption, and tsunami. Those disasters could lead to other disasters such as landslides, floods, land subsidence, and coastal inundation. Monitoring those disasters could be essential to predict and prevent damage to the environment. We reviewed the application of remote sensing and Geographic Information System (GIS) for detecting natural disasters in the case of Indonesia, based on 43 articles. The remote sensing and GIS method will be focused on InSAR techniques, image classification, and susceptibility mapping. InSAR method has been used to monitor natural disasters affecting the deformation of the earth's surface in Indonesia, such as earthquakes, volcanic activity, and land subsidence. Monitoring landslides in Indonesia using InSAR techniques has not been found in many studies; hence it is crucial to monitor the unstable slope that leads to a landslide. Image classification techniques have been used to monitor pre-and post-natural disasters in Indonesia, such as earthquakes, tsunami, forest fires, and volcano eruptions. It has a lack of studies about the classification of flood damage in Indonesia. However, flood mapping was found in susceptibility maps, as many studies about the landslide susceptibility map in Indonesia have been conducted. However, a land subsidence susceptibility map was the one subject to be studied more to decrease land subsidence damage, considering many reported cases found about land subsidence frequently occur in several cities in Indonesia.

Flood inundation simulation considering external forces in urban coastal areas (복합 외력을 고려한 연안지역의 침수 모의)

  • Kang, Taeuk;Lee, Sangho;Jin, Youngkyu
    • Proceedings of the Korea Water Resources Association Conference
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    • 2022.05a
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    • pp.2-2
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    • 2022
  • 연안지역은 강우, 조위, 월파 등 다양한 재해 요소에 의해 침수될 수 있다. 또한, 이러한 재해 요소는 동시에 발생하여 큰 침수 피해를 유발하기도 한다. 하지만 각각의 재해 요소를 대상으로 하는 기술 분야가 상이하기 때문에 물리 모형 기반의 과학적 방법으로 복합적인 재해 요소를 고려한 침수 분석에 관한 연구는 제약되었다. 이 연구는 강우-유출 및 2차원 지표면 흐름 해석의 수공학적 분석 기술과 조석, 파랑, 월파 등의 해양공학적 기술을 연계하여 연안지역에 대한 복합 외력을 고려한 침수 분석 기술을 제시하는데 목적이 있다. 우선, 먼 바다로부터 예상되는 파랑, 조위 분석에는 ADCIRC와 UnSWAN 모형을 연계한 ADCSWAN이 사용되었다. 연안 주변의 복잡한 흐름 해석과 해안 구조물을 범람하여 발생하는 월파량 산정에는 FLOW-3D 모형을 이용하였다. 그리고 강우-유출 분석과 바다의 조위 및 월파량을 고려할 수 있을 뿐만 아니라 2차원 지표면 침수 해석이 가능한 XP-SWMM을 이용하여 연안지역의 침수 모의를 수행하였다. 모형 간 연계에 의한침수 해석의 적절성을 검토하기 위해 2016년 10월의 태풍 차바 시 대대적인 침수가 발생한 부산 마린시티 지역에 대하여 적용하였다. 침수 모의 결과는 당시의 현장 사진, 침수흔적도와 비교하여 검토되었고, 실제 침수 현상과 유사한 결과가 도출되었다. 이 연구는 연안지역의 복합적인 재해요인에 대한 침수 해석에 수문 분야와 해양공학 분야의 기술 연계를 통해 실제 현상의 재현성을 높인 것에 의의가 있다. 또한, 이 연구에서 제시한 해석 방법은 다양한 연안지역의 침수 원인 분석과 적절한 재해 방지 대책 수립에 활용될 수 있을 것으로 판단된다.

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Numerical Modelling of Typhoon-Induced Storm Surge on the Coast of Busan (부산 연안에서 태풍에 의한 폭풍해일의 수치모델링)

  • Cha-Kyum Kim;Tae-Soon Kang
    • Journal of the Korean Society of Marine Environment & Safety
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    • v.29 no.7
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    • pp.760-769
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    • 2023
  • A numerical simulations were performed to investigate the storm surge during the passage of Typhoon Maemi on the coast of Busan. The typhoon landed on the southern coasts of Korean Peninsula at 21:00, September 12, 2003 with a central pressure of 950 hPa, and the typhoon resulted on the worst coastal disaster on the coast of Busan in the last decades. Observed storm surges at Busan, Yeosu, Tongyoung, Masan, Jeju and Seogwipo harbors during the passage of the typhoon were compared with the computed data. The simulated storm surge time series were in good agreement with the observations. The simulated peak storm surges were estimated to be 230 cm at Masan harbor, 200 cm at Yeosu harbor and Tongyoung harbor, and 75 cm at Busan harbor. The computed storm surges along the east coast of Busan measure 52 to 55 cm, exhibiting a gradual reduction in surge height as one moves further from the coast of Busan. Therefore, coastal inundation due to the storm surge in the semi-enclosed bay can induce great disasters, and the simulated results can be used as the important data to reduce the impact of a typhoon-induced coastal disaster in the future.

Real-time Flood Stage Forecasting of Tributary Junctions in Namhan River (남한강 지류 합류부의 실시간 홍수위 예측)

  • Kim, Sang Ho;Hyun, Jin Sub;Kim, Ji-Sung;Jun, Kyung Soo
    • Journal of Korea Water Resources Association
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    • v.47 no.6
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    • pp.561-572
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    • 2014
  • The backwater effect at a tributary junction increases the risk of flood damage such as inundation and levee overflow. In particular, the rapid increase in water level may cause injury to persons. The purpose of this research is the development of the real-time flood forecasting technique as a part of the non-structural flood damage reduction measures. To this end, the factors causing a water level rising at a junction were examined, and the empirical formula for predicting flood level at a junction was developed using the calculated discharge and water level data from the well-constructed hydraulic model. The water level predictions show that average absolute error is about 0.2~0.3m with the maximum error of 1.0m and peak time can be captured prior to 0~5 hr. From the results of this study, the real-time flood forecasting system of a tributary junction can be easily constructed, and this system is expected to be utilized for reduction of flood inundation damage.

Developing Coast Vulnerable Area Information Management System using Web GIS (Web GIS를 이용한 연안위험취약지역 정보시스템 구축)

  • Pak, Hyeon-Cheol;Kim, Hyoung-Sub;Jo, Myung-Hee
    • Journal of the Korean Association of Geographic Information Studies
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    • v.8 no.4
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    • pp.155-164
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    • 2005
  • The coast has been known as very vulnerable area. This area has nature disasters such as typhoon, tidal wave, flood and storm almost every year. In this study, coast vulnerable area information management system was developed to manage the coastal facilities and vulnerable area through Web GIS. This system is able to visualize the damage area and support the official work related to coast as efficient DSS(Decision Supporting System). Moreover, the foundation for domestic coast information management is expected by acquiring less cost and time. For this, GIS DB was first constructed by acquiring damage factor data such as typhoon, tidal wave, flood and storm. Then GIS analysis methods and high resolution satellite images are used to possibly present the results of retrieve as table, map, graph, inundation simulation in real time.

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Inundating Disaster Assessment in Coastal Areas Using Urban Flood Model (도시홍수모델을 이용한 해안지역의 침수재해평가)

  • Yoo Hwan-Hee;Kim Weon-Seok;Kim Seong-Sam
    • Journal of the Korean Society of Surveying, Geodesy, Photogrammetry and Cartography
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    • v.24 no.3
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    • pp.299-309
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    • 2006
  • In recent years, a large natural disasters have occurred due to worldwide abnormal weather and the amount of damage has been increased more resulting from high density population and a large-sized buildings of the urbanized area. In this study. we estimate the flooded area according to rainfall probability intensify and sea level in Woreong dong, Masan occurred flood damages by typhoon Maemi using SWMM, a dynamic rainfall-runoff simulation model in urban area, and then analyze the damage of flood expected area through connecting with GIS database. In result, we can predict accurately expected area of inundation according to the rainfall intensity and sea level rise through dividing the study area into sub-area and estimating a flooded area and height using SWMM. We provide also the shelter information available for urban planning and flood risk estimation by landuse in expected flood area. Further research for hazard management system construction linked with web or wireless communication technology expects to increase its application.

Moving boundary condition for simulation of inundation (범람 모의를 위한 이동경계조건)

  • Lin, Tae-hoon;Lee, Bong-Hee;Cho, Dae-Hee;Cho, Yong-Sik
    • Journal of Korea Water Resources Association
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    • v.36 no.6
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    • pp.937-947
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    • 2003
  • A shoreline, which has no the water depth, moves continuously as waves rise up and recede. Therefore, a special boundary treatment is required to track properly the movements of the shoreline in numerical modeling of the behavior of tsunamis or tides near a coastal zone. In this study, convective terms in nonlinear shallow-water equations are discretized explicitly by using a second-order upwind scheme to describe a moving shoreline more accurately. An oscillatory flow motion in a circular paraboloidal basin has been employed to validate the performance of the developed numerical model. Computed results of instantaneous free surface displacements are compared with those of analytical solutions and existing numerical solutions. The run-up heights in the vicinity of a circular island have also been calculated and obtained numerical results have been shown against available laboratory measurements. A good agreement has been observed.

A Unity-based Simulator for Tsunami Evacuation with DEVS Agent Model and Cellular Automata (DEVS 에이전트 모델과 셀 오토마타를 사용한 유니티엔진 기반의 지진해일 대피 시뮬레이터 개발)

  • Lee, Dong Hun;Kim, Dong Min;Joo, Jun Mo;Joo, Jae Woo;Choi, Seon Han
    • Journal of Korea Multimedia Society
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    • v.23 no.6
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    • pp.772-783
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    • 2020
  • Tsunami is a frightful natural disaster that causes severe damages worldwide. To minimize the damage, South Korea has built a tsunami warning system and designated evacuation sites in the east and south coasts. However, such countermeasures have not been verified whether they are adequate to minimize casualties since tsunami rarely occurs in South Korea. Recently, due to increasing earthquakes in the west coast of Japan, the likelihood of South Korea entering the damage area of tsunami rises; thus, in this paper, we develops a simulator based on Unity game engine to simulate the evacuation from tsunami. In order to increase the fidelity of the simulation results, the simulator applies a tsunami simulation model that analyzes coastal inundation based on cellular automata. In addition, the objects included in tsunami evacuation, such as humans, are modeled as an agent model that determines the situation and acts itself, based on the discrete-event system specification (DEVS), a mathematical formalism for describing a discrete event system. The tsunami simulation model and agent models are integrated and visualized in the simulator using Unity game engine. As an example of the use of this simulator, we verify the existing tsunami evacuation site in Gwangalli Beach in Busan and suggest the optimal alternative site minimizing casualties.