• Title/Summary/Keyword: 도로 배수

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Application of the Fuzzy Models for the Efficient Operation of Pumping Station (배수펌프장의 효율적인 운영을 위한 퍼지모형의 적용)

  • Kim, Yun-Tae;Shim, Jae-Hyun;Chung, Jae-Hak;Ahn, Jae-Chan
    • Journal of the Korean Society of Hazard Mitigation
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    • v.4 no.3 s.14
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    • pp.51-60
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    • 2004
  • Urban flood damage has been caused by drainage deficiency. One of the methods to solve this problem is to construct detention basin and Pumping station and to pump out the water to the river. However, because of rapid urbanization, the capacity of drainage pipelines is sometimes not sufficient enough during the rainy season. Therefore, even though we have enough pumping stations, the inflow of surface water never reaches to the detention area, causing floods in urban area. This research is to find improvement of urban drainage system, estimating drainage pipeline risk. Also, eight models for a computer program were developed for practical use. The models were verified changing precipitation duration, intensity, design period, time distribution model, and etc. This verification was processed focusing that the model can regulate the water level in the detention basin and minimize the effect downstream. As a result Fuzzy models were found to be efficient to lower the water level in detention basin, and decreased about 8 cm in water level of downstream.

Relationship between fracture distribution and the acidity of mine drainage at the Il-Gwang Mine (일광광산의 절리분포 특성과 광산배수 산성도의 관계)

  • Choi, Jae-Young;Um, Jeong-Gi;Kwon, Hyun-Ho;Shim, Yon-Sik
    • The Journal of Engineering Geology
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    • v.20 no.4
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    • pp.425-436
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    • 2010
  • We established a stochastic 3-D fracture network system for fractured rock masses located in Il-Gwang Mine, Busan, to explore the relationship between the acidity of mine drainage and fracture geometry. A field scanline survey and borehole image processing were performed to estimate the best probability distributions of fracture geometry parameters. The stochastic 3-D fracture network system constructed for the rock masses was validated and deemed to be successful. The 3-D fracture network model was suitable for developing conceptual ideas on fluid flow in fractures at a field experimental site. An injection well and three observation wells were drilled at the field experimental site to monitor the acidity of mine drainage induced by the injection of fresh water. The field experiment, which was run for 29 days, yielded a significant relationship (with a high coefficient of determination) between the fracture geometry parameters and the acidity of mine drainage. The results show that pH increased with increasing relative frequency of fracture strike, and decreased with increasing fracture density. The concentration of $SO^{2-}_4$ decreased with increasing relative frequency of fracture strike, and increased with increasing fracture density.

Laboratory and Field Performance Evaluation of Acryl Resin Based Solar Radiation Reflective Pavement (아크릴 수지를 이용한 차열성 포장의 실내 및 현장 공용성 평가)

  • So, Kyung-Rock;Lee, Hyun-Jong;Baek, Jong-Eun;Lee, Sang-Yum
    • International Journal of Highway Engineering
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    • v.13 no.4
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    • pp.19-28
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    • 2011
  • This study developed a solar radiation reflection pavement, so called a cool pavement, to lessen the urban heat island effect by coating a pavement surface with acrylic resins mixed with light-colored pigments. From a laboratory test, simulating solar heating process in pavements, the cool pavement reduced more than $12^{\circ}C$ of pavement temperature at $60^{\circ}C$ compared to a control porous pavement. With the increase of the mixing ratio of the pigments to acrylic resins, the temperature reduction effect increased, but its workability became worse due to higher viscosity. As a result, an appropriate mixing ratio was determined as 15%. The cool pavement had better durability than the control pavement: One quarter of Catabro loss and twofold dynamic stability. Its adhesion was also higher enough not to be debonded under traffic loading. In-situ noise and friction tests conducted in two field sites showed that the cool pavement reduced its noise level by 3.7dB in average and increased its friction level by 30% compared to the control pavement. The permeability of the cool pavement was little lower than the control pavement, but higher enough to satisfy the minimum requirement for porous pavements.

A Study on the Probabilistic Risk Analysis for Safety Management in Construction Projects

  • Lee, Dong-Yeol;Kim, Dong-Eun
    • Journal of the Korea Society of Computer and Information
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    • v.26 no.8
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    • pp.139-147
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    • 2021
  • In this study, we proposed the possibility of reliability analysis of risk index by using Monte Carlo simulation as basic data of safety accident occurrence data and expert opinion by construction industry type. Through this, it is expected that risk index for safety accidents according to detailed types of works will be presented stochastically and it will be possible to predict the risk factors and the expected range of damage based on the reliability analysis in the construction safety management plan. It will also reduce many of the planning risks that are common to decision makers in the field of construction management. In identifying risks, road bridge construction was classified into earthworks, drainage works, and bridge construction, and possible safety accidents were classified based on expert data. The risk index was calculated for each detailed construction of road and bridge construction, drainage construction, and bridge construction.

The assessment of the relative contribution of the shape of instantaneous unit hydrograph with heterogeneity of drainage path (배수경로 이질성에 의한 순간단위도 형상의 상대적 기여도 평가)

  • Choi, Yong-Joon;Kim, Joo-Cheol;Kim, Jae-Han
    • Journal of Korea Water Resources Association
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    • v.42 no.11
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    • pp.897-909
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    • 2009
  • The relative contribution of between hillslope-flow and stream-flow by heterogeneity of drainage path are quantitatively assessed in the present study with GIUH model based on grid of GIS. Application watersheds are selected Pyeongchang, Bocheong and Wi river basin of IHP in Korea. The mean and variance of hillslope and stream length are estimated and analyzed in each watershed. And coupling with observation storm events, estimate hillslope and stream characteristic velocity which dynamic parameters of GIUH model. The mean and variance of distribution of travel time (i.e. IUH) calculate using estimated pass lengths and characteristic velocities. And the relative contributions are assessed by heterogeneity of drainage path. As a result, the effect of the variance that determine shape of IUH dominate with hillslope's effect in the small watershed area (within 500 $km^2$). Thus, GIUH in the small watershed area must consider hillslope-flow.

The Strength Properties of Permeable Hot Mix Asphalt for Surface Course (배수성 아스팔트 표층용 혼합물의 강도특성)

  • Lee, Kwan-Ho;Ham, Sang-Min
    • Journal of the Korea Academia-Industrial cooperation Society
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    • v.12 no.7
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    • pp.3296-3301
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    • 2011
  • The Porous pavement gains popularity because of several benefits. It is to minimize hydro-planning condition, spraying condition, and splash to increase friction resistance, and decrease noise. Also, other studies showed that it is important to have appropriate porosity to reduce noise and water flush. The purpose of this study is an evaluation on the mechanical properties of asphalt pavements for surface course. In this study the specimen was manufactured using the Gyratory compactor in order to compact the strengthened surface course that involved the two-layer pavement. This study is conducted by using Marshall stability test(KS F 2377), Impact resonance test, Schmidt hammer test(KS F 2730), and the Uniaxial compression test(KS F 2314). Using the Uniaxial compression test and Schmidt hammer test, the values of compressive strength and bearing capacity were measured, and the modulus of elasticity for each specimen was respectively measured using the Uniaxial compression test, Impact Resonance test.

Application of Improved Invert in Combining Manhole (합류맨홀에서 개선형 인버트의 적용)

  • Jo, Jun Beom;Lee, Min Sung;Rim, Chang Soo;Yoon, Sei Eui
    • Proceedings of the Korea Water Resources Association Conference
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    • 2018.05a
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    • pp.287-287
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    • 2018
  • 우수관거 시설에서 맨홀은 관거의 접합을 위해 반드시 설치되어야 하는 중요한 요소이다. 이러한 맨홀 접합부에서는 유입관으로 유입되는 유량의 급격한 확대와 유출관으로 배수되는 유량의 급격한 축소 등 흐름의 복잡한 변화가 발생한다. 맨홀에서의 복잡한 흐름은 설계강우를 초과하지 않는 강우량에서 과부하 조건을 형성하며 도심지 침수의 심각한 영향을 미친다. 특히 여러 관이 접합되어 있는 합류맨홀의 경우 유출관거로의 원활한 배수가 유도되지 않을 뿐 아니라 다양한 방향의 흐름이 서로 상충하며 급격한 에너지 손실을 유발한다. 도심지 중 하류부에서 주로 발생하는 침수피해는 복잡한 우수관거 시설의 구성에 따른 합류맨홀의 증가로 인해 그 규모가 늘어나는 추세이다. 바닥이 평평한 기본형태의 맨홀에서 발생되는 과부하 흐름과 여러 유량 조건에서의 에너지 손실에 관한 연구는 지속적으로 수행되어왔다. 최근 맨홀 내부에 흐름을 유도시켜주는 인버트를 설치하여 에너지 손실을 저감하려는 연구가 활발히 이루어지고 있지만 이를 실제 도시지역에 적용하여 침수해석이나 관거 배수능력 평가를 수행하기 위한 필요한 기초자료는 미비한 실정이다. 본 연구에서는 인버트가 설치된 개선형 4방향 합류맨홀의 유량 조건을 다양하게 변화시키며 유입유량 조건에 따른 개선형 맨홀의 손실계수를 분석하였다. 유량 조건은 세 개의 유입관에서 각각 설계유량 $1{\ell}/s$의 유량이 유입되는 총 유입유량 $3{\ell}/s$를 기준으로 각 유입관의 유입유량을 10%씩 변화시킨 40case의 유량 조건을 선정하였다. 이렇게 선정된 유량 조건은 경우에 따라 중간 맨홀, 3방향 합류맨홀 또는 4방향 합류맨홀의 흐름을 다양하게 나타내었으며, 40case의 손실계수를 분석하여 모든 맨홀 접합 조건에서의 손실계수를 파악할 수 있었다. 합류맨홀에서의 개선형 인버트 적용성을 확인하기 위하여 인버트가 설치된 개선형 맨홀에서 산정된 손실계수를 기초로 모든 유입유량 조건에서 적용이 가능한 손실계수 범위도를 작도하였다. 손실계수 범위도는 통계분석에 활용되어 개선형 맨홀의 유입유량 조건에 따른 손실계수 산정식을 도출하는 기초자료로 활용되었다. 이와 같이 도출된 산정식을 적용하면 실제 도심지에 개선형 맨홀을 적용하였을 경우에도 정확한 침수 해석이나 관거 배수능력 평가가 가능할 것으로 판단된다.

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A Study on the Type of Pavement Base and Drainage in Mountain Road for the Prevention of the Pavement Damage by Uplift Water Pressure (수치해석을 활용한 산지도로의 상향침투수압으로 인한 포장파손방지를 위한 포장기층종류 및 배수형태의 고찰)

  • Lim, Young-Kyu;Yune, Chan-Young;Lee, Seung-Woo
    • International Journal of Highway Engineering
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    • v.12 no.1
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    • pp.1-8
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    • 2010
  • Construction of road closed to mountains is inevitable in Korea because the mountainous region in Korea is more than 70% in area. Recently, due to global warming, typhoons or heavy rainfalls frequently occur, and accordingly, mountain roads are seriously damaged by landslides, debris flows, and uplift pressure below pavement. in this study, damage on pavement by uplift pressure was investigated. Various influencing factors such as slope angle, reinforcement of slope surface, thickness of soil cover underlain by rock, and types of drainage system were considered to evaluate uplift pressure acting on the bottom of pavement. Raising of water table up to the surface of slope may depend on the duration and intensity of rainfall. It shows that the installation of subdrain can reduce the uplift water pressure. Therefore, It is concluded that the use of subdrain system is effective to decrease uplift pressure and cement treated base is more endurable than typical crushed-stone base.

Experimental Investigation of Effects of Sediment Concentration and Bed Slope on Debris Flow Deposition in Culvert (횡단 배수로에서 토석류 퇴적에 대한 유사농도와 바닥경사 영향 실험연구)

  • Kim, Youngil;Paik, Joongcheol
    • KSCE Journal of Civil and Environmental Engineering Research
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    • v.31 no.5B
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    • pp.467-474
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    • 2011
  • Debris flow is one of the most hazardous natural processes in mountainous regions. The degradation of discharge capacity of drainage facilities due to debris flows may result in damages of properties and casualty as well as road. Understanding and accurate reproducing flow behaviour of debris flows at various conditions, such as sediment volume concentration and approaching channel and culvert slopes, are prerequisite to develop advanced design criteria for drainage facilities to prevent such damages. We carried out a series of laboratory experiments of debris flows in a rectangular channel of constant width with an abrupt change of bottom slope. The experimental flume consists of an approaching channel part with the bed slope ranging $15^{\circ}$ to $30^{\circ}$ and the test channel with slope ranging from $0^{\circ}$ to $12^{\circ}$ which mimics a typical drainage culvert. The experiments have been conducted for 22 test cases with various flow conditions of channel slopes and sediment volume concentration of debris flows to investigate those effects on the behaviour of debris flows. The results show that, according to sediment volume concentration, the depth of debris flow is approximately 50% to 150% larger than that of fresh water flow at the same flow rate. Experimental results quantitatively present that flow behaviour and deposit history of debris flows in the culvert depend on the slopes of the approaching and drainage channels and sediment volume concentration. Based on the experimental results, furthermore, a logistic model is developed to find the optimized culvert slope which prevents the debris flow from depositing in the culvert.