• Title/Summary/Keyword: gabion

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Behavior Analysis from the Site Monitoring Results of Geotextile Reinforced Wall (지오텍스타일 보강토벽의 계측결과에 의한 거동분석)

  • 원명수;이재열;김유성
    • Proceedings of the Korean Geotechical Society Conference
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    • 1999.03a
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    • pp.145-152
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    • 1999
  • In the applying of the reinforced soil method, it would be possible to obtain reinforcement effect more than before in terms of economic if high water content clayey soils could be used as embanking material. Futhermore it would be possible to expect the expansion of the applying field of reinforced soil method too. In this study, the authors describe the analysis results on the behavior of 5 meter high walls reinforced with nonwoven geotextile having the permeability and woven geotextile or geogrid having large tensile strength on the soil ground. The behavior of the walls were investigated for about 100 days after construction and the deformations of reinforcements, lateral soil pressures, vertical and horizontal displacements of the walls were examined by automatical measuring system. It was found that this kinds of reinforcing system might effectively improve the performance of the steep walls by virtue of the reciprocal action between soil and reinforcements, and it might be concluded that construction of the clayey reinforced soil walls with three kinds of geotextiles could be done successfully even on the comparative weak ground.

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The Standard Thesis of Objectivity Condition Evaluation for Infrastructure(Retaining Walls) (옹벽 시설물의 객관적인 상태평가 기준정립)

  • 이종영;신창건;장범수
    • Proceedings of the Korean Geotechical Society Conference
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    • 2003.06a
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    • pp.3.1-11
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    • 2003
  • Recently the problems related to the failure of the retaining wall structure has become great concern since the damage to the properties and human losses have occurred in the rainy season. However, a detail guideline on safety inspection and appropriate diagnosis on the retaining wall structure have not yet proposed and therefore, the inspection process and results are mainly dependant upon the engineers. The objective of this study is to propose objective and quantitative evaluation method for the condition based on the damage shapes and material types. In this purpose, composing materials of retaining wall are divided Into concrete, gabion, stone and reinforced earth, and then the evaluation items and method are suggested on the basis of the materials and structural characteristics of the retaining wall.

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Field Experiment on Iron and Aluminum Removal from Acid Mine Drainage Using an Apatite Drain System (인회석 배수시스템을 이용한 산성수의 철 및 알루미늄 제거에 대한 현장경험)

  • Choi, Jung-Chan;West, Terry R.
    • Economic and Environmental Geology
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    • v.29 no.3
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    • pp.315-323
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    • 1996
  • An apatite drain was constructed on September 30, 1994 at the Green Valley Abandoned Coal Mine site near Terre Haute in west central Indiana. The primary objective of this experiment is to evaluate the long-term ability of the apatite drain to mitigate acid mine drainage (AMD) under field conditions. The drain 9 m long, 3.3 m wide, and 0.75 m deep, contain 95 rum to No. 30 mesh-size apatite ore (francolite) and receive AMD seepage from reclaimed gob piles, and designed according to the laboratory testing. The apatite drain was covered with limestone riprap and filter fabric to protect the drainage system from stormwater and siltation. The drain consists of about 50 metric tons of apatite ore obtained from a phosphate mine in Florida. A gabion structure was constructed downstream of the apatite drain to create a settling pond to collect precipitates. Apatite effectively removed iron up to 4,200 mg/l, aluminum up to 830 mg/l and sulfate up to 13,430 mg/l. The pH was nearly constant for the influent and effluent, ranging between 3.1 and 4.3. Flow rate measured at the gabion structure ranged from 3 to 4.5 l/m. Precipitates of iron and aluminum phosphate (yellow and white suspendid solids) continued to accumulate in the settling pond.

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Distribution of Meiobenthic Arthropod Communities in the Hyporheic Zone of Nakdonggang

  • Lee, Chi-Woo;Park, Jong-Geun
    • Journal of Species Research
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    • v.5 no.1
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    • pp.157-165
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    • 2016
  • The hyporheic zone is an ecologically important area for investigating habitat biodiversity. However, only few studies have been conducted on this aspect in Korea. This study aimed to investigate the distribution of arthropod communities in the hyporheic zone of Nakdonggang River between 2012 and 2013. The meiobenthic arthropod communities found in the hyporheic zone were identified using a stereomicroscope and classified into 9 taxanomic groups. The abundance of arthropod communities was higher in the hyporheic zones of streams having well-formed sandbanks and gravelly areas. The arthropod communities found along the Nakdonggang River differed depending on the conditions of levees and the regions of the river from where they were collected. The frequency of species of the order Harpacticoida was high in the Nakdonggang main stream and western downstream region. The abundance of species belonging to Cyclopidae was high in the upstream region, midstream region, and eastern downstream region of the river. The frequency of species of the order Bathynellacea was high in the riverside parks or cement levees, but that of species belonging to Cyclopidae was high in the natural levees and gabion levees. Our findings suggested that arthropod communities preferred natural levees.

Seepage Behavior of Sea Dyke Final Closure with Tidal Variation (조위변화에 따른 방조제 끝막이 사석단면의 침투거동)

  • Yoo, Jeon-Yong;Oh, Young-In;Kim, Hyun-Tae;Jeung, In-Young
    • Proceedings of the Korean Geotechical Society Conference
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    • 2006.03a
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    • pp.800-807
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    • 2006
  • Sea dyke construction is simply defined that the cutting procedure of sea water flow. Sea dyke construction is more difficult than in-land construction because it’s placed on deep seabed and exposed sea wave attack. Especially, the final closure of sea dyke is most dangerous due to the fast velocity of tidal flow. The final closure section is consisted with vast rubble and heavy stone gabion, therefore the discharge velocity at land side of final close section is irregularly and sometime occur the fast discharge velocity. In this study, the seepage model test performed to evaluate seepage behavior with tidal variation of final closure and continuous sea dyke section such as discharge velocity, hydraulic gradient, and phreatic line. Based on the seepage model test results, the maximum discharge velocity of final closure section is 1.7m/sec. Also the local discharge velocity increment and vortex is occurred.

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Characteristics on Stabilization Measures for Cutting Slopes of Forest Roads (임도구조 요인에 따른 절토비탈면 안정구조물의 특성)

  • Baek, Seung-An;Ji, Byoung-Yun;Lee, Joon;Cha, Du-Song
    • Journal of Forest and Environmental Science
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    • v.30 no.1
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    • pp.71-75
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    • 2014
  • Forest roads failure is one of the most common problems caused by heavy rainfalls. This study investigated the characteristics on stabilization measures installed for cutting slopes failure of forest road resulted from heavy rainfalls. Three primary factors (slope length, slope gradient, soil type) affecting cutting slope failure were considered and stabilization measures were classified into two types (A type: wooden fence, vegetation sandbag, stone masonry; B type: wire cylinder, gabion, concrete retaining wall) through discriminant analysis based on their capacity of resistance to slope failure. Results showed that A type was mainly installed in such conditions as cut slope <8 m, cut slope gradient $30-40^{\circ}$ and soil type with soil while B type occurred in locational conditions as cut slope length >8 m, cut slope gradient < $30^{\circ}$ and > $30^{\circ}$, and soil type of gravelly soil and rock.

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.

The Fishways at Namdae-cheon and Osib-Cheon, and the Use of Migratory Fishes (양양 남대천과 영덕 오십천의 어동현황과 어류의 이용)

  • Hwang, Chong-Seo;Hur, Hyub
    • Proceedings of the Korean Society of Agricultural Engineers Conference
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    • 1999.10c
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    • pp.721-726
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    • 1999
  • The fishways on Namdae-cheon and Osib-cheon and the use of migratory fishes were investifated from July 1998 through Jung 1999. There are three types of fishways on these rivers. Those are baffled fishways, fish ladder, and fish ladder with gabion. Namdae-cheon has 7 baffled fishways and 19 fish ladder, and Osib-cheon has only fish ladder with gaboin. On Namdae-cheon 1,195 fishes of 24 species were collected. Amog these fishes 241 fishes of 9 species were anadromous fishes occupying 38% in species and 19% in number. On Osib-cheon 1,015 fishes of 24 species were collected. Among these fishes 240 fishes of 5 species were anadromous fishes occupying 21% in species and 24% in number. On Namdae-cheon the species number and auundance decreased gradually upstream. The poor structure of fishways seems to have worked as an obstacle to the upstream migration of fishes on Namdae-cheon. On Osib-cheon all the observed fish species except three -spined stickleback(Gasterosteus aculeatus aculeatus) which stay and spawn around downstream of river could migrate upstream. The good structure of fishways on this river is thought to have helped upstream fish migration.

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Building test bed of submerged gabion groyne to prevent bank erosion of curved channel (하천 만곡부 세굴 방지를 위한 잠형 수제 Test bed 구축)

  • Kim, Chang Sun;Lim, Dae Sik;Chung, Sun Kil;Lee, Hyun Jae;Hyun Jae, Lee
    • Proceedings of the Korea Water Resources Association Conference
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    • 2019.05a
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    • pp.86-86
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    • 2019
  • 일반적으로 하천에 설치하는 각종 이수 및 치수 시설물들은 각각의 고유기능을 충분히 발휘하도록 계획하고 설치하고 있으나, 이러한 하천 시설물 중에는 하천의 자연 환경에 부정적인 영향을 일으킬 수 있는 환경과 조화롭지 못한 시설물이 있기도 하다. 하도 만곡부에 설치하는 전통적인 수제, 즉 하안부에서 수로 중심방향으로 돌출하는 형식의 횡수제, 역시 외곽부 하안의 침식을 방지하기 위해 설치하는 시설물이지만 하천의 자연환경 측면에서는 바람직하지 못 한 현상을 일으키기도 한다. 본 연구에서 소개하는 잠형의 방틀공 수제는 하안부에 돌출하여 설치하는 기존 수제와 달리 만곡부 외측 하안에 근접하여 유수 방향으로 하상에 고정시키고 홍수 시에는 잠길 수 있는 높이로 방틀공을 설치하여 하천수의 흐름을 제어하는 시설물이다. 이와 같은 시설물은 만곡부에서 발생하는 2차류 흐름을 방지하고 유수의 수충력을 흡수 혹은 반사시킴으로써 하안부를 세굴로부터 보호할 뿐만 아니라 심각한 하상 세굴과 퇴적을 완화하는 하도의 안정 기능도 발휘하게 된다. 치수의 기능 외에도 하천 환경 측면에서는 수제의 안쪽에 형성되는 못 (pool)에 다양한 생물이 서식하는 서식기능을 담당하기도 한다. 본 고에서는 현재까지 국내에 설치한 사례가 없는 잠형 방틀형 수제의 효과를 검증하기 위해 강원도 양양 남대천에 구축하는 Test bed를 소개하고자 한다. 산지하천의 만곡부 하안부를 세굴로부터 보호하기 위해 설치하는 잠형 수제에 대한 Test bed 구축 배경과 설치 과정 등을 소개하여 이와 관련한 하천 기술자들에게 새로운 패러다임의 수제 설계가 이루어질 수 있는 계기를 제공하고자 한다.

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Seepage Behavior of Sea Dyke Final Closure with Installation of Bottom Protection Filter Mat (근고공 필터매트 설치에 따른 방조제 끝막이구간의 침투거동)

  • Oh, Young-In;Yoo, Jeon-Yong;Kim, Hyun-Tae
    • Journal of the Korean Geosynthetics Society
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    • v.5 no.1
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    • pp.25-32
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    • 2006
  • Sea dyke construction is simply defined as a cutting procedure of sea water flow. Sea dyke construction is more difficult than in-land construction because it is placed on deep seabed and exposed sea wave attack. Especially, the final closure of sea dyke is most dangerous due to the fast velocity of tidal flow. The final closure is consisted with vast rubble and heavy stone gabion, therefore the discharge velocity at land side of final close section is irregularly and sometime occur the fast discharge velocity. In this paper, the seepage model test performed to evaluate seepage behavior of final closure and continuous sea dyke section such as discharge velocity, hydraulic gradient, and phreatic line with installation of bottom protection filter mat. Based on the seepage model test results, the maximum discharge velocity of final closure section is 1.7m/sec and the discharge velocity is decreased maximum 23.7% with installation of bottom protection filter mat.

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