• Title/Summary/Keyword: Flood damages

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A Study on the Exhibition Method to Enhance the Visitors' Understanding Contents - Focus on the Domestic Dam Exhibition Centers - (콘텐츠 이해도 강화를 위한 전시방식에 관한 연구 - 국내 댐 전시관을 중심으로 -)

  • Yi, Joo-Hyoung
    • Korean Institute of Interior Design Journal
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    • v.19 no.3
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    • pp.196-204
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    • 2010
  • Human beings are having suffered from the unexpected climate changes which are caused by global warming leaded from air pollution. More than 3 billions of people will be forced to experience insufficient water in 2015. In Korea, over 70% of precipitation has been concentrating in Summer season. Furthermore, natural disasters has been occurred constantly all over the country. The unusual flood and drought have broken out not only victims but also, property damages. By the natural condition, the effective consuming and controlling system of water is going to be the core business field and constructing dams will be encouraged and promoted for the system. To convince the objectionable against the constructing dams, a dam exhibition center stands the very important position by being responsible for the presenting positive factors and highlighting the beneficial functions. The dam exhibition center is built as complex space combined by information center regarding water resources and visitor center for the community nearby the inundated area. Combined of the different purposes, the dam exhibition center can be confused to understand the concept and contents established in the space. To enhance the visitors' understanding contents of the dam exhibition center, the spatial composition and contents are being analyzed with existing centers and define the most effective exhibition methods between the spaces and visitors. This study will be the basic quantitative analysis data for the following design works those can get the better insight how to make visitors to get information and agreement of constructing dams effectively.

A Study on the Evaluation of Stream Naturalness for Stream Corridor (우리나라의 하천특성을 고려한 하천자연도평가)

  • Park, Bong Jin;Lee, Jun Yeol;Sung, Young Du
    • Proceedings of the Korea Water Resources Association Conference
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    • 2004.05b
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    • pp.516-520
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    • 2004
  • Stream Naturalness means the index of natural state in stream's ecosystem. The evaluation of stream naturalness can evaluate relatively the effect of environmental damages by human and to show how significantly current stream has been apart from its natural state. And it could be show what is the meaning of importance in stream's ecosystem by such distinctions and it Is done by showing the need how a large scale of action for restoration to be restored to natural state of stream system. In this study, a set of index for Stream Naturalness evaluation is proposed, which is referred to and modified problems with domestic and foreign study cases. This methodology is supposed to show well the characteristics of stream in Korea. A case study of Hong-Chun River shows how this methodology is applied to the Stream Naturalness evaluation. For improving the function of river which are water use and flood control and for preserving the function of inhabitation, the proposed methodology is expected to be used a index of direction for a environmental project related stream improvement by evaluation of ecologically sound function in streams.

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Development of Multi-hazard Fragility Surface for Liquefaction of Levee Considering Earthquake Magnitude and Water Level (수위와 지진을 고려한 제방의 액상화에 대한 복합재해 취약도 곡면 작성)

  • Hwang, Ji-Min;Cho, Sung-Eun
    • Journal of the Korean Geotechnical Society
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    • v.34 no.6
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    • pp.25-36
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    • 2018
  • Soil liquefaction is one of the types of major seismic damage. Soil liquefaction is a phenomenon that can cause enormous human and economic damages, and it must be examined before designing geotechnical structures. In this study, we proposed a practical method of developing a multi-hazard fragility surface for liquefaction of levee considering earthquake magnitude and water level. Limit state for liquefaction of levee was defined by liquefaction potential index (LPI), which is frequently used to assess the liquefaction susceptibility of soils. In order to consider the uncertainty of soil properties, Monte Carlo Simulation based probabilistic analysis was performed. Based on the analysis results, a 3D fragility surface representing the probability of failure by soil liquefaction as a function of the ground motion and water level has been established. The prepared multi-hazard fragility surface can be used to evaluate the safety of levees against liquefaction and to assess the risk in earthquake and flood prone areas.

A Development of Intelligent Pumping Station Operation System Using Deep Reinforcement Learning (심층 강화학습을 이용한 지능형 빗물펌프장 운영 시스템 개발)

  • Kang, Seung-Ho;Park, Jung-Hyun;Joo, Jin-Gul
    • Convergence Security Journal
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    • v.20 no.1
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    • pp.33-40
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    • 2020
  • The rainwater pumping station located near a river prevents river overflow and flood damages by operating several pumps according to the appropriate rules against the reservoir. At the present time, almost all of rainwater pumping stations employ pumping policies based on the simple rules depending only on the water level of reservoir. The ongoing climate change caused by global warming makes it increasingly difficult to predict the amount of rainfall. Therefore, it is difficult to cope with changes in the water level of reservoirs through the simple pumping policy. In this paper, we propose a pump operating method based on deep reinforcement learning which has the ability to select the appropriate number of operating pumps to keep the reservoir to the proper water level using the information of the amount of rainfall, the water volume and current water level of the reservoir. In order to evaluate the performance of the proposed method, the simulations are performed using Storm Water Management Model(SWMM), a dynamic rainfall-runoff-routing simulation model, and the performance of the method is compared with that of a pumping policy being in use in the field.

Study on the Decision of Watergate Stage Using Inundation Simulation for Inland (내수침수모의를 통한 배수문 높이결정에 관한 연구)

  • Choo, Tai Ho;Yun, Gwan Seon;Yoon, Hyeon Cheol
    • Journal of the Korea Academia-Industrial cooperation Society
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    • v.15 no.2
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    • pp.1149-1156
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    • 2014
  • In order to reduce flood damages, there should demand an appropriate design such as enlarging a bank, dredging a river bottom, building a hydraulic structure and so on. The installation locations about the Watergate are listed of the seven provisions in the river design standard, but it is not detailed. In order to compute proper place considering landuse and basin characteristics of inlands, internal inundation modeling that should be performed is regarded with quantitative evaluation. Anyway, that is very complex and taking a long time because that has to consider hydraulic and hydrologic characteristics. In the current study, therefore, the simple and convenient method for internal inundation modeling was proposed to overview the Watergate location.

A Time Domain Analysis of Moored Ship Motions Considering Tsunami Resonant Effects (쓰나미의 공진현상을 고려한 항내계류선박의 시계열 해석)

  • Cho Ik-Soon;Kong Gil-Young;Lee Yun-Sok
    • Proceedings of the Korean Institute of Navigation and Port Research Conference
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    • 2006.06b
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    • pp.191-197
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    • 2006
  • Recently, the earth scale disaster is occurring frequently. Under the effects of global warming, the weather has become unseasonable worldwide. Hence, the earth is experiencing unstable condition with many disasters such as storms and flood damages as well as earthquake. Therefore, it is necessary to consider what we can do to prevent disasters. A disaster like earthquake will inevitably occur in view of the probabilities. The active period of earthquakes and the inactive periods repeat alternatively. Consequently, recent warnings indicate that there is a potential risk of massive earthquakes. Consideration of the effects of tsunami to the moored ship is very important. Operational problems such as moored ship motions sometimes become remarkable with large amplitude and long periods in harbor. Moored ship motions may cause the breakage of mooring systems such as mooring lines, fenders or quay. Large and long period moored ship motions are caused by resonant effects. In this paper, the moored ship motions within a harbor by the large-scale tsunami and the effects on the motions and mooring loads with resonant effects are investigated by numerical simulations.

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Analysis of Urban Flood Damage Using SWMM5 and FLUMEN Model of Sadang Area in Korea

  • Li, Heng;Kim, Yeonsu;Lee, Seungsoo;Song, Miyeon;Jung, Kwansue
    • Proceedings of the Korea Water Resources Association Conference
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    • 2015.05a
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    • pp.396-396
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    • 2015
  • Frequent urban floods affect the human safety and economic properties due to a lack of the capacity of drainage system and the increased frequency of torrential rainfall. The drainage system has played an important role in flooding control, so it is necessary to establish the effective countermeasures considering the connection between drainage system and surface flow. To consider the connection, we selected SWMM5 model for analyzing transportation capacity of drainage system and FLUMEN model for calculating inundation depth and time variation of inundation area. First, Thiessen method is used to delineate the sub-catchments effectively base on drainage network data in SWMM5. Then, the output data of SWMM5, hydrograph of each manhole, were used to simulate FLUMEN to obtain inundation depth and time variation of inundation area. The proposed method is applied to Sadang area for the event occurred in $27^{th}$ of July, 2011. A total of 11 manholes, we could check the overflow from the manholes during that event as a result of the SWMM5 simulation. After that, FLUMEN was utilized to simulate overland flow using the overflow discharge to calculate inundation depth and area on ground surface. The simulated results showed reasonable agreements with observed data. Through the simulations, we confirmed that the main reason of the inundation was the insufficient transportation capacities of drainage system. Therefore cooperation of both models can be used for not only estimating inundation damages in urban areas but also for providing the theoretical supports of the urban network reconstruction. As a future works, it is recommended to decide optimized pipe diameters for efficient urban inundation simulations.

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An exploratory study of stress wave communication in concrete structures

  • Ji, Qing;Ho, Michael;Zheng, Rong;Ding, Zhi;Song, Gangbing
    • Smart Structures and Systems
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    • v.15 no.1
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    • pp.135-150
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    • 2015
  • Large concrete structures are prone to cracks and damages over time from human usage, weathers, and other environmental attacks such as flood, earthquakes, and hurricanes. The health of the concrete structures should be monitored regularly to ensure safety. A reliable method of real time communications can facilitate more frequent structural health monitoring (SHM) updates from hard to reach positions, enabling crack detections of embedded concrete structures as they occur to avoid catastrophic failures. By implementing an unconventional mode of communication that utilizes guided stress waves traveling along the concrete structure itself, we may be able to free structural health monitoring from costly (re-)installation of communication wires. In stress-wave communications, piezoelectric transducers can act as actuators and sensors to send and receive modulated signals carrying concrete status information. The new generation of lead zirconate titanate (PZT) based smart aggregates cause multipath propagation in the homogeneous concrete channel, which presents both an opportunity and a challenge for multiple sensors communication. We propose a time reversal based pulse position modulation (TR-PPM) communication for stress wave communication within the concrete structure to combat multipath channel dispersion. Experimental results demonstrate successful transmission and recovery of TR-PPM using stress waves. Compared with PPM, we can achieve higher data rate and longer link distance via TR-PPM. Furthermore, TR-PPM remains effective under low signal-to-noise (SNR) ratio. This work also lays the foundation for implementing multiple-input multiple-output (MIMO) stress wave communication networks in concrete channels.

Effects of Network Density on Gridded Horizontal Distribution of Meteorological Variables in the Seoul Metropolitan Area (관측망 밀도가 기상 자료의 격자형 수평 분포에 미치는 영향)

  • Kang, Minsoo;Park, Moon-Soo;Chae, Jung-Hoon;Min, Jae-Sik;Chung, Boo Yeon;Han, Seong Eui
    • Atmosphere
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    • v.29 no.2
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    • pp.183-196
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    • 2019
  • High-quality and high-resolution meteorological information is essential to reduce damages due to disastrous weather phenomena such as flash flood, strong wind, and heat/cold waves. There are many meteorological observation stations operated by Korea Meteorological Administration (KMA) in Seoul Metropolitan Area (SMA). Nonetheless, they are still not enough to represent small-scale weather phenomena like convective storm cells due to its poor resolution, especially over urban areas with high-rise buildings and complex land use. In this study, feasibilities to use additional pre-existing networks (e.g., operated by local government and private company) are tested by investigating the effects of network density on the gridded horizontal distribution of two meteorological variables (temperature and precipitation). Two heat wave event days and two precipitation events are chosen, respectively. And the automatic weather station (AWS) networks operated by KMA, local-government, and SKTechX in Incheon area are used. It is found that as network density increases, correlation coefficients between the interpolated values with a horizontal resolution of 350 m and observed data also become large. The range of correlation coefficients with respect to the network density shows large in nighttime rather than in daytime for temperature. While, the range does not depend on the time of day, but on the precipitation type and horizontal distribution of convection cells. This study suggests that temperature and precipitation sensors should be added at points with large horizontal inhomogeneity of land use or topography to represent the horizontal features with a resolution higher than 350 m.

Analysis of flood damages in paddy field by motorized gate (전동식 수문 설치 전·후의 농경지 침수 피해 분석)

  • Seung Wook Lee;Da Ye Kim;Seung Jin Maeng;Sung Chul Seo
    • Proceedings of the Korea Water Resources Association Conference
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    • 2023.05a
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    • pp.357-357
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    • 2023
  • 2017년 7월 16일 집중호우로 인해 무심천 상류에 위치한 충청북도 청주시 상당구 남일면 고은리 655번지의 농경지 침수 피해가 발생하였다. 대상지역의 우안 제방에는 기존에 수동식 수문이 설치되어 있었으나 내구연한이 지나고 부식되어 수년전에 망실되었으며, 2017년 7월 홍수 이후 유사한 규모의 홍수가 발생 할 경우 대상지역은 홍수피해를 겪을 수밖에 없는 상황에 처해 있다. 이에 따라 홍수방어 시설인 전동식 수문을 설치하여 설치 전·후의 침수 피해를 분석하였다. 본 연구에서는 청주 수위관측소의 2017년 7월 15~16일 수위자료를 수집하여 수위-유량관계곡선식(Rating Curve)을 적용한 시간당 유량자료를 산정하였으며, 수문설치 지점인 고은리 655번지를 시점으로 하류 약 15.871km에 위치한 흥덕교까지 HEC-RAS 모형을 이용하여 홍수분석을 수행하였다. 무심천 우안 제방 내 수문이 설치되기 전과 후에 따른 대상지역의 제내지 침수구역 범위를 산정하여 비교 분석하였다. 측점은 96개의 횡단면으로 구성하였으며, 부정류 해석을 위한 경계조건으로 상류단 유입량, 측방 유입량 및 하류단 수위를 적용하였다. 홍수분석 결과 단면별 최대수위는 EL.41.92m~EL.66.29m의 범위를 나타내고 있으며, 적용 홍수에 따른 최대 유속은 3.17 m/s로나타났다. 수문설치 지점의 하천 횡단에서 발생하는 최고 수위는 EL.66.29m로 산정되었으며, EL.66.29m를 기준으로 전동식 수문이 설치되기 전과 후의 침수범위를 분석하였다. 설치 전 홍수분석 결과 제내지 침수구역의 면적은 141,309.3m2로 분석되었다. 전동식 수문을 설치함에 따라 대상지역의 제내지 침수 피해를 겪지 않은 것으로 분석되었다. 향후 전동식 수문과 IoT기술을 접목하여 지자체의 재난관리 시스템과 연동할 수 있다면, 유사한 침수피해를 최소화 하는데 기여할 것으로 판단된다.

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