• 제목/요약/키워드: Storm surge Level

검색결과 44건 처리시간 0.032초

조위변동을 고려한 폭풍해일시의 해안침식에 관한 연구 (Beach Erosion during Storm Surge Overlapped with Tide)

  • 손창배
    • 해양환경안전학회지
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    • 제6권2호
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    • pp.47-56
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    • 2000
  • This paper describes a simple prediction method of beach recession induced by storm surge. In order to evaluate the severest beach erosion, it is assumed that maximum beach recession occurs at the coming of storm surge overlapped with spring tide. Consequently, total surge lev디 becomes the sum of storm surge level and tidal range. Generally, storm surge level around Korea is small compared with tidal range. Therefore total surge can be expressed as the series of surges, which have same duration as tide. Through the case studies, the author Investigates correlation between tidal range, duration, wave condition, beach slope and beach recession.

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폭풍해일에 의한 피해사례 연구 및 분석 (Study and Analysis of the Damage by the Storm Surge)

  • 홍원식;박성수;조용식
    • 한국방재학회:학술대회논문집
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    • 한국방재학회 2008년도 정기총회 및 학술발표대회
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    • pp.447-450
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    • 2008
  • A storm surge is gradually increased in the Korean peninsula. Furthermore, this phenomenon is confined not only the Korean peninsula but also the whole world. A storm surge induced by storm, typhoon, or cyclone is a phenomenon that the water surface elevation is raising by the barometric pressure difference and this water level rising threatens the coastal facilities, settlement, or lives. Most of coastal region in our country are unsafe from this disaster. Even though we are not able to prevent the generation of this phenomenon, we can reduce the damages by investigating the kind of storm surge disaster. Once we finish this investigation, we can reduce the damages by offering the information for risk prior to an invasion of storm surge. This study, we analyzed the previously occurred storm surge damages, and this data can be utilized as a guide for those who live near the coastal region providing the information about the predicting scale of the storm surge

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폭풍 해일 및 폭풍우로 인한 제주 해안역에서의 동역학적 범람 모의 (Dynamic Simulation of Storm Surge and Storm Water-Combine Inundation on the Jeju Coastal Area)

  • 이정렬;이병걸;이주용;임흥수
    • 한국수자원학회:학술대회논문집
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    • 한국수자원학회 2006년도 학술발표회 논문집
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    • pp.1945-1949
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    • 2006
  • A storm-induced coastal inundation model (SICIM) is presented to simulate the flood event during typhoon passage that often results in significant rise in sea-level heights especially in the upstream region of the basin. The SICIM is a GIS-based distributed hydrodynamic model, both storm surge and storm water inundations are taken into account. The spatial and temporal distribution of the storm water level and flux are calculated. The model was applied to Jeju Island since it has an isolated watershed that is easy to handle as a first step of model application. Another reason is that it is surrounded by coastal area exposed to storm surge inundation. The model is still advancing and will be the framework of a predictive early inundation warning system.

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태풍 매미 내습시 해일$\cdot$고파랑에 의한 호안$\cdot$안벽에서의 수위증가 패턴 고찰 (Patterns of Water Level Increase by Storm Surge and High Waves on Seawall/Quay Wall during Typhoon Maemi)

  • 강윤구
    • 한국해양공학회지
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    • 제19권6호통권67호
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    • pp.22-28
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    • 2005
  • We investigated the characteristics of the overflow/wave overtopping, induced by the storm surge and high waves in Masan bay and Busan Coast during Typhoon 'Maemi', which landed at the southeast coast of the Korean peninsula on September, of 2003, causing a severe inundation disaster. Characteristics of the water level, increase by the overflow / wave overtopping, were discussed in two patterns. One is the increase of water level in the region, located inside of a bay, like Masan fishing port, and the waves are relatively small. The other is in the open sea, in which the waves act directly, as on the seawall in Suyong bay. In the former region, the water level increase was affected by the storm surge, as well as the long period oscillation and waves. In Masan fishing port, about $80\%$ of the water level increase on the quay wall was caused by the storm surge. In the latter one, it was greatly affected by the wave run-up. In Suyong bay, about $90\%$ of the water level increase on the seawall was caused by the wave run-up.

The effect of typhoon translation speed and landfall angle on the maximum surge height along the coastline

  • Qian, Xiaojuan;Son, Sangyoung
    • 한국수자원학회:학술대회논문집
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    • 한국수자원학회 2021년도 학술발표회
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    • pp.153-153
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    • 2021
  • Storm Storm event is one of major issues in South Korea due to devastating damage at its landfall. A series of statistical study on the historical typhoon records consistently insist that the typhoon translation speed (TS) is on slowdown trend annually, and thus provides an urgent topic in assessing the extreme storm surge under future climate change. Even though TS has been regarded as a principal contributor in storm surge dynamics, only a few studies have considered its impact on the storm surge. The landfall angle (LA), another key physical factor of storm surge also needs to be further investigated along with TS. This study aims to elucidate the interaction mechanism among TS, LA, coastal geometry, and storm surge synthetically by performing a series of simulations on the idealized geometries using Delft3D FM. In the simulation, various typhoons are set up according to different combinations of TS and LA, while their trajectories are assumed to be straight with the constant wind speed and the central pressure. Then, typhoons are subjected to make landfall over a set of idealized geometries that have different depth profiles and layouts (i.e., open coasts or bays). The simulation results show that: (i) For the open coasts, the maximum surge height (MSH) increases with increasing TS. (ii) For the constant bed level, a typhoon normal to the coastline resulted in peak MSH due to the lowest effect of the coastal wave. (iii) For the continental shelf with different widths, the slow-moving typhoon will generate the peak MSH around a small LA as the shelf width becomes narrow. (iv) For the bay, MSH enlarges with the ratio of L/E (the length of main-bay axis /gate size) dropping, while the greatest MSH is at L/E=1. These findings suggest that a fast-moving typhoon perpendicular to the coastline over a broad continental shelf will likely generate the extreme storm surge hazard in the future, as well as the slow-moving typhoon will make an acute landfall over a narrow continental shelf.

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부산연안 폭풍해일 변동양상과 수치예측 (Numerical Modeling of Storm Surge around the Coast of Pusan)

  • 이종섭;주귀홍;장선덕
    • 한국해안해양공학회지
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    • 제2권2호
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    • pp.104-111
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    • 1990
  • 부산연안에서 태풍으로 인한 수위변화특성을 파악하고 수위예측을 위하여 태중 Thelma 통과 기간증 한국남해안에 위치한 6개 검조소의 조위관측자료와 기상자료를 분석하였다. 수치모델에 있어서는 해면기압의 공간분포로 인한 수위변화를 고려하였다. 폭풍해일(storm surge)의 계산결과 부산연안의 최대수위편차의 출현시각과 수위편차곡선은 가덕도의 조위실측치로부터 구한 수위편차곡선과의 상당히 유사한 결과를 나타냈다. 그러나 부산검조소 위치에서 조위실측치로부터 구한 수위편차곡선은 검조소가 수로에 위치한 관계로 일반적인 해일 곡선을 나타내지 못한다. 본 계산결과에 의하면 낙동강 하구역에서는 지형적인 영향으로 최대 2.5m 이상의 수위편차가 나타났으며, 그 밖의 해안에서는 약 60cm 전후의 수위편차가 나타났다.

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마산만에서 고조로 인한 침수원인 분석 (Analysis of Flood due to Storm Surge at Masan Bay)

  • 황호동;이중우;권소현
    • 한국항해항만학회:학술대회논문집
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    • 한국항해항만학회 2004년도 춘계학술대회 논문집
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    • pp.217-224
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    • 2004
  • 개방해역에서의 폭풍고조의 계산은 특히 해안역의 계획 및 건설 작업 분야에서 의미있는 것이다. 본 연구에서 태풍으로 인한 수위의 변화예측은 물리모델에서나 실제현장에서 다루기가 매우 어렵기 때문에 수치모델에 주로 근거를 두었다. 폭풍고조에 대한 단순준이차원 수치모델을 다루었다. 모델배경에서 여러 가지 가정, 유효범위, 적용성을 이해하기 위하여 태풍과 폭풍의 발생과정을 좌우하는 물리적 인자들에 대하여 논하였다. 또한 수학적 관점 뿐만아니라 물리적인 관점에서 모델의 주요특성을 나타내기 위해 모델의 수립과정에 일반적으로 취한 가정과 함께 지배방정식을 따랐다. 본 논문에서 기술한 모델과 일치하는 방정식은 지배방정식을 축약시킨 것으로 이에 따른 수치기법을 제시하였다. 최종적으로 한국 남해안의 마산항에서 폭풍고조의 문제에 위에서 기술한 모델을 적용하여 천문조, 초기수면, 대기압에 따른 수위상승의 효과를 고려하였다. 아울러 해안도시역에서의 침수원인을 분석하고, 침수방지를 위한 합리적인 제안을 제시하였다.

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연안역에서 고파랑과 폭풍해일을 고려한 침수해석 (Inundation Analysis Considering Water Waves and Storm Surge in the Coastal Zone)

  • 김도삼;김지민;이광호;이성대
    • 한국해양공학회지
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    • 제21권2호
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    • pp.35-41
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    • 2007
  • In general, coastal damage is mostly occurred by the action of complex factors, like severe water waves. If the maximum storm surge height combines with high tide, severe water waves will overflow coastal structures. Consequently, it can be the cause of lost lives and severe property damage. In this study, using the numerical model, the storm surge was simulated to examine its fluctuation characteristics at the coast in front of Noksan industrial complex, Korea. Moreover, the shallow water wave is estimated by applying wind field, design water level considering storm surge height for typhoon Maemi to SWAN model. Under the condition of shallow water wave, obtained by the SWAN model, the wave overtopping rate for the dike in front of Noksan industrial complex is calculated a hydraulic model test. Finally, based on the calculated wave-overtopping rate, the inundation regime for Noksan industrial complex was predicted. And, numerically predicted inundation regimes and depths are compared with results in a field survey, and the results agree fairly well. Therefore, the inundation modelthis study is a useful tool for predicting inundation regime, due to the coastal flood of severe water wave.

군집분석을 이용한 국지해일모델 지역확장 (Regional Extension of the Neural Network Model for Storm Surge Prediction Using Cluster Analysis)

  • 이다운;서장원;윤용훈
    • 대기
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    • 제16권4호
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    • pp.259-267
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    • 2006
  • In the present study, the neural network (NN) model with cluster analysis method was developed to predict storm surge in the whole Korean coastal regions with special focuses on the regional extension. The model used in this study is NN model for each cluster (CL-NN) with the cluster analysis. In order to find the optimal clustering of the stations, agglomerative method among hierarchical clustering methods was used. Various stations were clustered each other according to the centroid-linkage criterion and the cluster analysis should stop when the distances between merged groups exceed any criterion. Finally the CL-NN can be constructed for predicting storm surge in the cluster regions. To validate model results, predicted sea level value from CL-NN model was compared with that of conventional harmonic analysis (HA) and of the NN model in each region. The forecast values from NN and CL-NN models show more accuracy with observed data than that of HA. Especially the statistics analysis such as RMSE and correlation coefficient shows little differences between CL-NN and NN model results. These results show that cluster analysis and CL-NN model can be applied in the regional storm surge prediction and developed forecast system.

Copulas에 기반한 우리나라 동해안 폭풍해일 분석 (Storm Surge Analysis using Archimedean Copulas)

  • 황정우;권현한
    • 한국수자원학회:학술대회논문집
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    • 한국수자원학회 2017년도 학술발표회
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    • pp.421-421
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    • 2017
  • 현재 우리나라에서 끊임없이 발생하고 있는 폭풍해일로부터 연안지역의 안전을 확보하기 위해서는 태풍 시 파랑의 거동 및 특성을 정확히 예측하는 것이 중요하다. 폭풍해일 모의실험의 정확성을 향상시키고 폭풍해일의 위험성을 정량화하기 위해서는 해일파고, 파주기, 그리고 폭풍 지속시간 간의 상관성이 분석되어야한다. 이를 위해 본 연구에서는 Copulas(Archimedean) 이론을 이용하여 폭풍해일에 대한 다변량 통계분석이 이루어졌다. 동해안 연안에서 나타나는 파고, 파주기, 태풍 지속시간, 해면수위, 태풍 도착간격시간 간의 의존성을 켄달의 타우 상관계수를 이용하여 조사하였다. Copulas 다변량 통계분석의 결과, 오직 파고와 파주기, 그리고 태풍지속시간만이 명확한 상관성을 나타냈다.

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