• Title/Summary/Keyword: Flood Stability

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A Case Study on Deformation Conditions and Reinforcement Method of Cavity behind the Lining of Domestic Old Tunnel (국내 재래식 터널의 변상현황과 배면공동 보강 사례연구)

  • Kim, Young-Muk;Lim, Kwang-Su;Ma, Sang-Joon
    • Proceedings of the Korean Geotechical Society Conference
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    • 2005.03a
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    • pp.1343-1350
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    • 2005
  • In this study, the whole deformation conditions of domestic old tunnels and reinforcement methods for deformation tunnels were investigated and analysed, and the present conditions, occurrence cause and reinforcement methods of cavity behind the tunnel lining were investigated and analysed comprehensively. The deformation causes of domestic old tunnels could be classified in three kinds : change of earth pressure operating tunnel ground, material problem of concrete lining, mistake of design and construction. As a result of analysis, the tunnel deformation was occurred by not specific cause but various cause As a result of investigation for 455 domestic tunnel data, more than 70% of the tunnel deformation was related to leakage and the other deformation cause also accompanied leakage mostly. An applied reinforcement method was related to leakage and flood prevention measures, but application of reinforcement method for boundary area between tunnel and ground and tunnel periphery which influence on the tunnel stability was still defective. The cavity of domestic old tunnel occupied about 16% of the total tunnel length and about 68% of cavity was located in the crown of tunnel, and besides, the occurrence cause of cavity was analysed to design, construction and management cause. The filling method for cavity using filling material was comprehensively appling to cavity behind tunnel lining.

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A Study on Application & Evaluation of Riverbed Techniques for the Formation of Hyporheic Zone (하상간극수역의 형성을 위한 하상공법의 적용과 평가)

  • Choi, Jungkwon
    • Journal of the Korean Society of Environmental Restoration Technology
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    • v.16 no.6
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    • pp.119-133
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    • 2013
  • The purpose of this study is to develop riverbed techniques to activating ecological function of hyporheic zone. Hyporheic zone maybe simply defined as an active eco-tone between surface water and groundwater, which facilitates to exchange water, nutrients and aquatic habitat occur in response to variation in discharge and bed geomorphology. The aim of this study is to evaluate the effectiveness of an applied riverbed technique for two years since its installation in the hyporheic zone. The experimental riverbed technique has been implemented on Anyang stream penetrating Anyang city in Gyunggi province. The dimension of the installed structure is 5.0 m in width, 46 m in length. Bottom layer is filled with rip-rap covered with gabion. After the implementation of the technique, the study conducts follow-up monitoring in two years of between 2011 and 2012. The results of follow-up monitoring for two years are as follows:1) In Hydro geomorphic process, the riverbed technique maintains hydraulic stability despite of several flood events in 2011, 2012. 2) After transformation to form pool-and-riffle habitat, for aquatic community composed of freshwater fish, macro invertebrate, and attached algae, the species diversity and population gradually increased. 3) The riverbed technique achieved desired effect on enhancement of ecological function in hyporheic zone.

Efficient crosswell EM Tomography using localized nonlinear approximation

  • Kim Hee Joon;Song Yoonho;Lee Ki Ha;Wilt Michael J.
    • Geophysics and Geophysical Exploration
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    • v.7 no.1
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    • pp.51-55
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    • 2004
  • This paper presents a fast and stable imaging scheme using the localized nonlinear (LN) approximation of integral equation (IE) solutions for inverting electromagnetic data obtained in a crosswell survey. The medium is assumed to be cylindrically symmetric about a source borehole, and to maintain the symmetry a vertical magnetic dipole is used as a source. To find an optimum balance between data fitting and smoothness constraint, we introduce an automatic selection scheme for a Lagrange multiplier, which is sought at each iteration with a least misfit criterion. In this selection scheme, the IE algorithm is quite attractive for saving computing time because Green's functions, whose calculation is a most time-consuming part in IE methods, are repeatedly re-usable throughout the inversion process. The inversion scheme using the LN approximation has been tested to show its stability and efficiency, using both synthetic and field data. The inverted image derived from the field data, collected in a pilot experiment of water-flood monitoring in an oil field, is successfully compared with that derived by a 2.5-dimensional inversion scheme.

Evaluation of Degradation and Safety of Small Agricultural Reservoir (소규모 농업용 저수지의 노후도 및 안전도 평가 -고삼 저수지에 대한 사례 연구-)

  • 장병옥;박영곤;우철웅
    • Magazine of the Korean Society of Agricultural Engineers
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    • v.40 no.1
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    • pp.49-56
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    • 1998
  • Ths study was peformed to evaluate the degree of degradation and safety of a small agricultural reservoir, Kosam Reservoir, in Kyungki Province. Evaluation was done by the program developed by the authors. Results of the study are as follows: 1) Although many burrows were found in downstream side of embankment and cracks were found in wall joining spillway, it appeared that degree of degradation of embankment was in good conditions. 2) Compressive strengths of concrete of crest, side channel, chute floor of spillway were in poor condition. But it appeared that overall degree of degradation of structures was in medium condition based on the criteria of the evaluation system 3) From the analysis of slope stability, safety factor of downstream slope was over 3.3 for the worst condition, such as flood and high water level and that of upstream slope was also over 3.6 for rapid drawdown. In case of earthquake, safety factors were over 2.5 for all conditions. Therefore embankment slopes of Kosam Reservoir were very stable for normal and earthquake condition. 4) As upon assumed failure of embankment of Kosam Reservoir, degree of damage was estimated to be very serious because of many loss of life and properties in the downstream area. 5) Overall grade of safety of Kosam Reservoir was in good condition. Therefore safety was considered to be "No problems" at the present time but further degradation may be proceeded partly and continuously as time goes by.e goes by.

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A Study on Decentralized Rainwater Management by Analysing the Spacial Properties in Urban Housing Complexes (공동주택단지의 공간적 특성 분석을 통한 분산식 빗물관리 방향 설정)

  • Han, Young-Hae;Yang, Byoung-E;Lee, Tae-Goo
    • KIEAE Journal
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    • v.5 no.3
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    • pp.17-24
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    • 2005
  • Until today, rainwater management was processed without disposing the peak discharge, which was due to rainfall, to provide stability against flood damage. In this process, the natural hydrologic cycle changed quickly, and because of this, some problems that could harm human beings and the environment arose. These problems need to be addressed accordingly. One of the proposals was to carry out decentralized rainwater management through a natural hydrologic cycle on site, including utilization, infiltration, detention, and retention of rainwater. This study aims to set the direction of applicable decentralized rainwater management to housing complex in Korea. Therefore, spacial properties in urban housing complexes were analysed such as the impervious area-to-land ratio, the green area-to-land ratio, artificial land-to-land ratio etc. As the result of this study, when a housing complex was small and developed by reconstruction, the impervious area, artificial land, the green area in the artificial land-to-land ratio were high. So, direction of decentralized rainwater management of these housing complexes is available to utilize and detain rainwater. On the other hand, those of big housing complexes in land development district were low relatively. So, direction of decentralized rainwater management of these housing complexes is available to infiltrate and evaporate rainwater.

A study on hydraulic stability assessment based on two-dimensional model in river flood plain (2차원 모형 기반 하천 홍수터에서의 수리적 안정성 평가 연구)

  • Ku, Tae Geom;Song, Chang Geun;Park, Yong Sung;Kim, Young Do
    • Proceedings of the Korea Water Resources Association Conference
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    • 2017.05a
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    • pp.112-112
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    • 2017
  • 하천은 크게 하도와 홍수터 그리고 제방으로 나눌 수 있으며, 최근 대하천 및 중 소규모 하천의 홍수터 공간을 활용하여 인공습지, 체육시설 및 공원 등과 같은 다양한 친수시설들을 조성하여 활용하고 있다. 이러한 홍수터는 여름철 태풍이나 집중호우로 인해 침수되다가, 강우 사상이 종료된 이후에는 유사가 퇴적되어 복구비용이 반복적으로 발생하고 있다. 홍수시 홍수터에서의 수리적 안정성을 평가하기 위해서는 홍수터를 포함한 복단면에서의 흐름해석이 선행되어야 하며, 계산된 수리적 인자들을 이용하여 홍수터에서의 수리적 안정성을 평가할 수 있다. 국외에서는 국내와 다르게 하천 홍수터 공간을 거의 활용하지 않기 때문에 홍수터에서의 수리적 안정성 평가에 대한 연구사례는 드문 실정이며, 도시침수로 인한 제내지 홍수위험도 평가에 대한 연구가 주를 이루고 있다. 하지만 기존에 사용되고 있는 제내지 홍수위험도 지수를 국내 홍수터에 도입하여 수리적 안정성을 평가하기에는 침식 및 퇴적을 올바르게 고려할 수 없는 한계점이 있기 때문에 본 연구에서는 홍수시 홍수터 내에서 침식과 퇴적을 고려할 수 있는 홍수터 수리적 안정성 지수를 산정하고 과거 연구된 실내 수리실험 자료와 비교하여 적용성을 분석하고자 한다. 또한 자연하천에서의 실제 태풍 사상에 의한 침식 및 퇴적의 상대적 공간분포를 산정하여 홍수터에서의 수리적 안정성을 평가하고자 하였다.

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Flood Control Stability of Old Agriculture Reservoir (노후된 소규모 농업용저수지의 치수 안정성 검토)

  • Yang, Jun Seok;Ahn, Seoung Seop
    • Proceedings of the Korea Water Resources Association Conference
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    • 2017.05a
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    • pp.433-433
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    • 2017
  • 본 연구에서는 노후된 소규모 농업용저수지의 홍수에 대한 안전성이 부족하여 최근들어 노후된 소규모 농업용 저수지를 재설계하여 치수능력을 보강하고 있다. 이러한 노후 소규모 농업용 저수지의 홍수량을 재산정하기 위해 강우량을 수집하여 확률강우량을 재산정하고 빈도별 홍수량을 산정하였다. 산정된 빈도별 확률홍수량을 이용하여 현재의 치수적 안정성을 검토하고 현재기준에 적합한 저수지의 치수적 안정성을 갖추기 위해 댐을 증고하는 방안에 대해 검토하였다. 본 연구에서 저수지의 안정성을 검토한 결과 심천저수지의 홍수위는 200년 빈도에서 EL. 124.38m, 300년 빈도에서 EL. 124.43m 500년 빈도에서 EL. 124.48m로 현재 댐마루고 EL. 125.60m와 비교시 월류는 하지 않으나 댐설계기준(2011,국토해양부)에서 제시된 식에 따른 여유고와 비교한 결과 현재 상태에서는 여유고가 부족하여 증고가 필요한 것으로 분석되었다. 따라서 심천저수지의 현재 홍수량에 대한 검토를 위해 100년, 80년, 50년 빈도의 저수지 홍수추적결과 심천저수지의 여유고는 100년 빈도에서 0.028m부족, 80년 빈도에서 0.007m부족, 50년 빈도에서 기준여유고를 0.046m 만족하여 현재 상태에서는 50년 빈도에서 안정한 것으로 검토되었다.

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Development and assessment of pre-release discharge technology for response to flood on deteriorated reservoirs dealing with abnormal weather events (이상기후대비 노후저수지 홍수 대응을 위한 사전방류 기술개발 및 평가)

  • Moon, Soojin;Jeong, Changsam;Choi, Byounghan;Kim, Seungwook;Jang, Daewon
    • Journal of Korea Water Resources Association
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    • v.56 no.11
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    • pp.775-784
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    • 2023
  • With the increasing trend of extreme rainfall that exceeds the design frequency of man-made structures due to extreme weather, it is necessary to review the safety of agricultural reservoirs designed in the past. However, there are no local government-managed reservoirs (13,685) that can be discharged in an emergency, except for reservoirs over a certain size under the jurisdiction of the Korea Rural Affairs Corporation. In this case, it is important to quickly deploy a mobile siphon to the site for preliminary discharge, and this study evaluated the applicability of a mobile siphon with a diameter of 200 mm, a minimum water level difference of 6 m, 420 (m2/h), and 10,000 (m2/day), which can perform both preliminary and emergency discharge functions, to the Yugum Reservoir in Gyeongju City. The test bed, Yugum Reservoir, is a facility that was completed in 1945 and has been in use for about 78 years. According to the hydrological stability analysis, the lowest height of the current dam crest section is 27.15 (EL.m), which is 0.29m lower than the reviewed flood level of 27.44 (EL.m), indicating that there is a possibility of lunar flow through the embankment, and the headroom is insufficient by 1.72 m, so it was reviewed as not securing hydrological safety. The water level-volume curve was arbitrarily derived because it was difficult to clearly establish the water level-flow relationship curve of the reservoir since the water level-flow measurement was not carried out regularly, and based on the derived curve, the algorithm for operating small and medium-sized old reservoirs was developed to consider the pre-discharge time, the amount of spillway discharge, and to predict the reservoir lunar flow time according to the flood volume by frequency, thereby securing evacuation time in advance and reducing the risk of collapse. Based on one row of 200 mm diameter mobile siphons, the optimal pre-discharge time to secure evacuation time (about 1 hour) while maintaining 80% of the upper limit water level (about 30,000 m2) during a 30-year flood was analyzed to be 12 hours earlier. If the pre-discharge technology utilizing siphons for small and medium-sized old reservoirs and the algorithm for reservoir operation are implemented in advance in case of abnormal weather and the decision-making of managers is supported, it is possible to secure the safety of residents in the risk area of reservoir collapse, resolve the anxiety of residents through the establishment of a support system for evacuating residents, and reduce risk factors by providing risk avoidance measures in the event of a reservoir risk situation.

Stability analysis of an existing utility tunnel due to the excavation of a divergence tunnel emerging from double-deck tunnel (복층터널의 분기터널 굴착에 따른 지하 공동구의 안정성 분석)

  • Nam, Kyoung-Min;Choi, Min-ki;Kim, Jung-Joo;Jafri, Turab H.;Yoo, Han-Kyu
    • Journal of Korean Tunnelling and Underground Space Association
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    • v.19 no.2
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    • pp.231-248
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    • 2017
  • Government plans to construct a double-deck tunnel under a portion of Gyeongbu Expressway that will solve traffic problems and could also be used as a flood storage facility. Divergence tunnels connect the main tunnel to the urban areas and their construction effects on adjacent structures at shallow depth need to be analyzed. This study primarily includes the numerical analysis of construction effects of divergence tunnels on utility tunnels. The utility tunnel was analyzed for three cases of volume loss applied to the divergence tunnel and two cases of the angle between main tunnel and divergence tunnel ($36^{\circ}$ and $45^{\circ}$). The results show that the more the volume loss was applied and the shorter the distance was between utility tunnel and divergence tunnel, the more the utility tunnel was affected in terms of induced displacements, angular displacement and stability. The worst scenario was found out to be the one where the angle between main tunnel and divergence tunnel was $36^{\circ}$ and the distance between divergence tunnel and utility tunnel was 10 m, resulting in the largest displacement and differential settlement at the bottom of the utility tunnel. A relationship between the angular displacement and the distance to diameter ratio was also established.

A Study on Optimization for Location and type of Dam Considering the Characteristic of Large Fault (대규모 단층특성을 고려한 최적 댐위치 및 형식 선정)

  • Kim, Han-Jung;Lyu, Young-Gwon;Kim, Young-Geun;Lim, Hee-Dae
    • Tunnel and Underground Space
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    • v.22 no.4
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    • pp.227-242
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    • 2012
  • Youngju multipurpose dam is planned to minimizing the damage by flood and obtaining the water for industrial use in Nakdong river region. Faults in rock mass have strong influences on the behaviors of dam structure. Thus, it is very important to analyse for the characteristics of fault rocks in dam design. However, due to the limitation of geotechnical investigation in design stages, engineers have to carry out the additional geological survey including directional boring to find the distribution of faults and the engineering properties of faults for stability of dam. Especially, the selection of location of dam and type of dam considering fault zone must be analyzed through various experimental and numerical analysis. In this study, various geological survey and field tests were carried out to analyse the characteristics of the large fault zone through the complex dam is designed in foundation region. Also, the distribution of structural geology, the shape of faults and the mechanical properties of fault rock were studied for the reasonable design of the location and type of dam for long-term stability of the complex dam.