• Title/Summary/Keyword: 해수 침수대

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Assessment of Flood Vulnerability: Baramarae Intertidal Area in Anmyeondo, Korea (침수 취약성 평가: 안면도 바람아래 조간대 지역을 사례로)

  • KIM, Jang-soo;JANG, Dong-Ho
    • Journal of The Geomorphological Association of Korea
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    • v.17 no.2
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    • pp.29-39
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    • 2010
  • Climate change recently causes rapid rises in sea level in Baramarae intertidal area and the rises present several socio-economic impacts to the affected area. We have assessed the vulnerability of the region by the rise of the sea level. Using quantitative GIS method on multi-temporal satellite images, we have first estimated the elevation (Digital Elevation Model: DEM) of Baramarae intertidal area and hence we were possibly able to identify the flooded areas under the IPCC SRES scenarios. As sea level rises by 20cm, 30cm, 40cm, 50cm and 60 cm, the estimated flooded areas of the tidal flat are 68ha, 85ha, 103ha, 121ha and 139ha, respectively. The most affected area is the tidal flat in Gagyeongju Village (Gonam-li, Gonam-myeon, Taean, Chungnam), because it has not only lower altitude but also, perhaps more significantly smooth slope. The potential affected areas are currently populated by farming of oysters and short-necked clams and therefore the areas expect significant economic loss by rise of sea level.

Evaluation of inundation damages based on the fluctuation of inundation height due to climate change in Haeundae Area (해운대 지역의 기후변화에 의한 해일고 변동에 따른 침수피해 평가)

  • MAENG, Da-Hye;JANG, Dong-Ho
    • Journal of The Geomorphological Association of Korea
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    • v.18 no.4
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    • pp.141-152
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    • 2011
  • The fluctuation of inundation height due to climate change and sea level rise is expected to cause the socio-economical damage in the coastal zone. To evaluate the inundation damage in Haeundae Beach Area, the inundation height was calculated using the observed data and the range of inundated area and buildings was estimated by applying to DEM data, which was constructed with airborne LiDAR data. The range of inundated area and buildings were estimated with 5 scenario of sea level rise in the condition of minimum and maximum inundation height. When the 181cm, the area of 7.19ha and 5 buildings were expected to be inundated. As 20cm in sea level rises at the minimum of the inundation height, the area of 8.90ha and 8buildings were expected to be inundated. As 30cm, 40cm, 50cm, 60cm in sea level rise, 9.98ha and 9 buildings, 11.11ha and 11buildings, 12.41ha and 11buildings, 14.18ha and 14buildings were expected to be inundated, respectively. When the 526 cm, the area of 32.35ha and 42buildings were expected to be inundated. As 20cm, 30cm, 40cm, 50cm, 60cm in sea level rise at the maximum of the inundation height, 38.94ha and 47buildings, 42.46ha and 52buildings, 45.76ha and 58buildings, 49.51ha and 66buildings, 52.53ha and 72buildings were expected to be inundated, respectively. The leisure and industry facilities, socio-economical installation, habitation are located near by the estimated inundation area, then the inundation damage is expected to be greater scale.

Construction of Hazard Risk Assessment Systems for Urban Flooding (도시 침수피해 위험도 평가체계 구축)

  • Kim Weon-Seok;Kim Dong-Kyoo;Kim Eui-Myoung;Yoo Hwan-Hee
    • Proceedings of the Korean Association of Geographic Inforamtion Studies Conference
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    • 2006.05a
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    • pp.49-54
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    • 2006
  • 세계적인 기상이변으로 전 세계적으로 예측하기 힘든 규모의 자연재해가 발생하고 있고, 향후에도 증가될 가능성이 매우 높은 실정이다. 또한 인구의 집중화와 도시화로 자연재해가 발생하면 엄청난 인명과 재산피해를 발생시키고 있다. 본 연구에서는 도시의 일부 지역을 대상으로 그 지역에 대한 지형, 하수관건, 기후 등의 공간 및 속성 데이터베이스를 바탕으로 자연재해 중 우리나라에서 가장 빈도가 높은 침수재해에 초점을 두고 도시의 강우 유출모형인 SWMM을 이용하여 우수관거 해석 및 월류량을 산정하고 해수위 상승에 따른 저지대 우수관망 월류량을 계산하여 침수구역 예상 및 침수심 산정을 하고 침수특성을 분석하였다. 이는 해안 저지대 도시지역에서 빈도별 침수량을 예상하여 피해지역의 침수구역에 대한 홍수에 의한 위험도를 평가할 뿐 아니라 단계적 대피 계획, 주요시설 보호 및 이동, 위험지구에 대한 사전 개선대책 수립 등 홍수피해 경감계획 수립에 기초 자료로 사용될 수 있을 것으로 예상된다.

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Laboratory chamber test for prediction of hazardous ground conditions ahead of a TBM tunnel face using electrical resistivity survey (전기비저항 탐사 기반 TBM 터널 굴진면 전방 위험 지반 예측을 위한 실내 토조실험 연구)

  • Lee, JunHo;Kang, Minkyu;Lee, Hyobum;Choi, Hangseok
    • Journal of Korean Tunnelling and Underground Space Association
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    • v.23 no.6
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    • pp.451-468
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    • 2021
  • Predicting hazardous ground conditions ahead of a TBM (Tunnel Boring Machine) tunnel face is essential for efficient and stable TBM advance. Although there have been several studies on the electrical resistivity survey method for TBM tunnelling, sufficient experimental data considering TBM advance were not established yet. Therefore, in this study, the laboratory-scale model experiments for simulating TBM excavation were carried out to analyze the applicability of an electrical resistivity survey for predicting hazardous ground conditions ahead of a TBM tunnel face. The trend of electrical resistivity during TBM advance was experimentally evaluated under various hazardous ground conditions (fault zone, seawater intruded zone, soil to rock transition zone, and rock to soil transition zone) ahead of a tunnel face. In the course of the experiments, a scale-down rock ground was provided using granite blocks to simulate the rock TBM tunnelling. Based on the experimental data, the electrical resistivity tends to decrease as the tunnel approaches the fault zone. While the seawater intruded zone follows a similar trend with the fault zone, the resistivity value of the seawater intrude zone decreased significantly compared to that of the fault zone. In case of the soil-to-rock transition zone, the electrical resistivity increases as the TBM approaches the rock with relatively high electrical resistivity. Conversely, in case of the rock-to-soil transition zone, the opposite trend was observed. That is, electrical resistivity decreases as the tunnel face approaches the rock with relatively low electrical resistivity. The experiment results represent that hazardous ground conditions (fault zone, seawater intruded zone, soil-to-rock transition zone, rock-to-soil transition zone) can be efficiently predicted by utilizing an electrical resistivity survey during TBM tunnelling.

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.

FIT모형에 의한 목포항의 조석특성 분석

  • 강주환
    • Proceedings of the Korean Society of Coastal and Ocean Engineers Conference
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    • 1995.10a
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    • pp.141-145
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    • 1995
  • 하구언과 방조제의 축조와 시기를 같이 하여 목포내항 부근의 만조시 수위가 크게 상승하여 목포시 저지대 곳곳에 침수문제를 야기시키고 있으며, 저조위는 하구언 건설 이전보다 낮아져 연안해운이 발달된 목포항에서 선박의 항해에 지장을 받는 등 이중의 고통을 받고 있는 실정이다. 이와 더불어 목포구의 조류속이 건설전에 비해 급격히 감소됨에 따라 외해수와 내해수의 해수교환이 여의치 않게 되었으며, 최근 크게 문제시되고 있는 영산호의 수질과 목포시의 폐수발생량을 감안하면 장차 목포항 인근의 해수오염이 크게 우려되는 실정이다. (중략)

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Water Temperature and Salinity Variation Analysis in the Inter-Tidal Zone, South of Ganghwado, Korea (강화도 남단 조간대에서의 수온 및 염분 변동양상 분석)

  • Cho, Hong-Yeon;Koo, Bon-Joo
    • Journal of Korean Society of Coastal and Ocean Engineers
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    • v.20 no.3
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    • pp.310-320
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    • 2008
  • Water temperature and salinity variation patterns were analysed using the CTD data measured in the Yeochari, Dongmakri and Donggeomdo intertidal zone, south of Ganghwado. Only the data during the submersion period of the measurement stations were used in this analysis. It is clearly shown that the correlation between air and water temperatures is very low and the water temperature variation shows clearly the opposite patterns as the tidal elevation increases and decreases. Whereas, the salinity change shows the similar pattern of the tidal elevation change pattern because the salinity change pattern could be described as the increasing function from the shoreline to offshore regions due to the continuous ground-water inflow in the adjacent watersheds. The salinity is increased from the submersion time to the high tide and decreased from the high tide to the exposure time.

Production of Flood Expectation Map in the Reclaimed Land Using 3-D Spatial Information (3차원 공간정보를 이용한 해안 매립지역 침수예상도 제작)

  • Lee, Jae-One
    • Journal of Korean Society for Geospatial Information Science
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    • v.15 no.4
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    • pp.97-102
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    • 2007
  • Recently, coastal damage according to the natural disaster like storm-surge, overflowing of the sea has been massively increased. In case of earth fill at the seaside, there are a lot of weak areas of the natural disaster and it has also high possibility that a large disaster happens. Thus flood expectation map in the reclaimed land using 3D spatial information was produced in this study. The area around Myungji, Kangsugu, Busan which was made with the large scale earth fils at the seaside was designated as a study area. Observation of both costal datum and ground height using the tidal date and field surveying dates was conducted. Terrain model using the GIS program was produced and than 3D building model was produced using 3D MAX. It was shown that there are possibility more than 50% if over 4.5m storm-surge is happening, as a result of calculating the virtual flooded area on the produced cartographic map.

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Investigation and Maintenance of Sewage Pipeline to Prevent Water Seepage (내수침수 방지를 위한 하수관로 조사 및 유지관리)

  • Kim, Jae Gu;Jo, Deok Jun
    • Proceedings of the Korea Water Resources Association Conference
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    • 2023.05a
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    • pp.109-109
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    • 2023
  • 지구 온난화 등 기상이변으로 추정되는 단시간 동안 특정지역에 집중되는 국지성 집중호우가 빈번해지고 있으며, 내수침수가 홍수재해의 주된 원인이 되고 있다. 내수침수의 원인으로는 하수관로의 통수능력 부족(39%), 저지대 침수(37%), 내수배제불량(16%) 및 기타(8%)로 조사된 바 있으며, 이중 하수관로의 경우 용량 및 통수능 부족, 구배불량, 토사퇴적에 의한 배수 불량 등으로 이에 대처하기 위해서는 기초자료의 조사가 우선 되어야 한다. 하수관로의 문제로 인한 내수침수의 원인으로 첫째 하수관로 내·외부 불량으로 인한 통수능 저하로 측구 및 빗물받이에 토사 등 장애물, 관로내부 장애물, 관로내부 불량(뿌리침임, 영구장애물, 관붕괴, 관파손, 관변형, 내피생성, 토사퇴적 등)이 있으며, 두 번째로 하수관로 구배불량과 마지막으로 외수위(또는 해수위) 상승으로 인한 내수침수로 구분될 수 있다. 이러한 하수관로의 문제점은 많은 부분이 불탐지역으로 조사가 매우 어려워서 대안 없이 방치되는 실정이다. 금회 연구에서는 이러한 불탐지역의 조사를 위한 장비의 개발 및 정밀조사를 통해서 하수관로를 진단하고 내수침수 예방을 위한 대책을 찾고자 하였다. 특히, 계단부 관로조사용 내시경 VR장비, 준만관 조사용 부유식 VR장비, 가스 및 안전위험 지역 조사용 지하 드론 장비를 개발하여 시험검증을 하고자 하였다. 또한, 스마트 하수관로 체계에 빅데이터를 기반으로 한 하수관로 토탈 솔류션(nPASS) 시스템으로 내수침수대응 및 하수관로 유지관리를 위한 시스템의 필요성을 규명하고자 하였다. 하수관로의 선진화를 통한 내수침수예방의 시작은 불탐지역 하수관로 조사를 통한 정확한 원인 파악이며, 조사 및 축적되는 빅데이타를 기반으로 하수관로 토탈 유지관리 시스템의 구축을 제안하고자 하였다.

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Applicability on Inundation for Hydrodynamic Models adopting Moving Boundary Scheme (이동경계기법을 이용한 해수유동모형의 범람 적용성)

  • Park, Seon-Jung;Kang, Ju-Whan;Moon, Seung-Rok;Yoon, Jong-Tae
    • Journal of Korean Society of Coastal and Ocean Engineers
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    • v.21 no.2
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    • pp.164-173
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    • 2009
  • MIKE21, a commercial hydrodynamic model, was applied at the Masan Bay to evaluate the model's applicability of simulating the inundation phenomena. A storm surge/inundation model which adopts overflow computation scheme was applied together for comparison. The results of both models show correspondence with not only observed inundation area but also inundation water depth to prove their ability as inundation models. Especially, the accuracy of the MIKE21 model, which just adopts wetting/drying scheme, does not seem to be behind the inundation model. Moreover, an inundation simulation of the virtual MAEMI which was generated at preceding study, was conducted. The inundation area of the virtual MAEMI is similar to that of the real MAEMI, but inundation water depth is deeper than the real MAEMI.