• 제목/요약/키워드: Cut River

검색결과 60건 처리시간 0.025초

낙동강하구의 어류 이동성 향상을 위한 수문운영 방안 제안 (The Gate Operation for Bolstering up Fish Migration in the Nakdong River Estuary)

  • 정석일;한정호;이지영;김화영
    • 한국환경생태학회지
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    • 제36권5호
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    • pp.468-480
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    • 2022
  • 낙동강하굿둑의 건설로 원활한 용수 공급이 이루어졌으나, 하구 수생태계의 종적 연결성을 단절시켰다. 이에 낙동강하굿둑 개방에 대한 사회적 요구가 지속적으로 제기되어 왔으며, 2017년부터 낙동강하구역 기수생태계 복원을 위한 노력이 본격화되었다. 낙동강 하구에는 다양한 어종이 서식해 왔으며, 이들의 서식·이동 특성은 상이하므로 이를 고려한 수문운영은 기수생태계 복원에 필수적이다. 이에 본 연구에서는 낙동강하구에 서식·이동하는 어류를 모니터링을 통해 확인하였으며, 방류 시 수문운영 형태별, 개도별 평균 유속을 산출하여, 어종에 따른 원활한 소상 가능성을 분석하였다. 또한 대상어종을 선정하고, 주 분포 수심에 따른 수문운영 형태를 제시하는 등 낙동강 하구역의 기수생태계 복원을 적극적으로 수행하기 위한 수문운영 방안을 제시하였다.

양구 두타연 인근 지역의 기반암 하상지형 연구 (A study on the bedrock erosional forms at Dutayeon, Yanggu)

  • 김종연;김창환
    • 한국지형학회지
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    • 제19권2호
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    • pp.31-49
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    • 2012
  • 강원도 양구군 수입천의 지류인 사태천은 북한에서 발원하여 남쪽으로 흘러 내려 오는 하천이다. 사태천의 유역분지는 한국전쟁 당시의 격전지로 현재도 민간인의 출입이 자유롭지 않은 민간인 통제선 이북에 위치하고 있다. 출입의 제한으로 인하여 이 지역의 자연 환경은 군사적인 이용으로 인한 것 이외의 훼손이 이뤄지지 않았다. 또한 출입의 제한으로 인하여 이 지역의 지형에 대한 학술적인 연구가 진행되지 못하였다. 사태천은 남북 방향의 임당 단층을 따라 흐르다가 서류하여 두타연에 도달한다. 과거의 사태천은 두타연 부근에서 북쪽 방향으로 곡류하고 있었다. 이 곡류는 침식에 강한 암석 또는 지질 구조의 영향에 의한 것으로 추정된다. 이후 이 곡류는 시기를 한정할 수 없는 과거에 절단 되었다. 단축된 하도는 과거 곡류의 공격 사면이었던 곡류경 부분으로 하류 방향으로부터 침식이 강화되면서 곡류의 절단이 일어난 것으로 보인다. 이 곡류의 절단으로 과거의 하식애는 유로의 일부가 되어 폭포가 형성되었으며 곡류경의 일부는 하천에 의한 침식을 통하여 마식지형 만들어졌다. 이후 하천의 유로가 안정화 되면서 유수는 좁은 구간에 집중되었으며 하도 인근의 포트홀과 러넬과 같은 지형들은 유기 되면서 하도 구간의 하부에는 대형 포트홀이 만들어 졌다. 이 포트홀들은 폭호로부터 기원하였을 가능성이 크며 주로 퇴적물의 마식에 의하여 현제의 모습이 만들어 졌다. 현재 두타연의 상부 기반암은 폭 1~10m의 하폭의 변동을 보이는 내부 하도를 형성하면서 개석되고 있다. 폭이 넓은 부분은 상대적으로 침식에 약한 부분에 성장한 포트홀이며 폭이 좁은 부분은 포트홀간의 연결 부분으로 이부분에서 하상의 고도도 된다한다. 따라서 형상적인 측면으로 본다면 이 내부 하도는 동상 파상 곡벽 내부 하도 중에 하나인 슬롯형 협곡으로 볼 수 있다.

한강 단층대를 통과하는 하저터널의 안정성 확보에 관한 연구 (Stability Evaluation for a riverbed tunnel in the Han River at the Fault Zone Crossing)

  • 우종태;이송
    • 한국구조물진단유지관리공학회 논문집
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    • 제5권3호
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    • pp.225-231
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    • 2001
  • When building tunnels beneath riverbeds where very large quantities of groundwater inflow exist, added to high water head the soil supporting conditions are very poor because the soil consists of sand and silt, etc. It is necessary to have grouting and mini pipe roof installed in the region for ground reinforcement to decrease permeability. According to this result of horizontal boring and laboratory soil testing, ground reinforcement was achieved by L.W grouting for range of 3.0 times the tunnel radius, to increase stability of the tunnel we used the ling-cut method, 0.8m for one step excavation, shotcrete with 25cm thick, steel lib with H-$125{\times}125$. and a temporary shotcrete invert 20cm thick was installed to prevent deformation of the tunnel.

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곡류단절지에 입지한 마을의 경관특성;삼지마을을 사례로 (The Landscape Characteristics of Village Located in the Meander cut-off Area;The Case of Samji Village)

  • 임의제;최기수
    • 한국조경학회지
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    • 제28권2호
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    • pp.109-109
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    • 2000
  • This study seeks what kind of factors influence to locate dwellings and to establish scenic spots in nature by a case study focused on a meandering stream. The study specially concentrates on the interrelationship between both residences and beautiful sceneries and a meander cut-off-area that reveals a special topographical characteristics, located at Samji village in Youngyang-eup, Youngyang-gun, Koungsangbuk-do. The meander cut-off area, developed at the middle or upper reaches of a river, often makes up specific landscapes such as precipitous cliffs, sheer cliffs and caves. And the area where is specially created by sudden change of flow due to erosion perceived by the cut surface to be the most beautiful scenic spot. These beautiful landscapes were used to be called as Dae, Dam or Gul and managed by Confucian scholars who enjoy refined taste and devote themselves to the study in nature. Moreover, the Ku-Hado-literary means the area of ex-flow-made the scholars' lving with a well prepared basis for agriculture where supplied a cornucopia of organic matters and water. The merit of agriculture made it possible that the scholars became economically independent, and the fact might be the essential point why the meander cut-off area took noticed. Actually, Cho-family has been in Smaji Village for generations, producing a large number of scholars and keeping the actual power of the region. The physical shape of the meander cut-off area, cozily surrounded by mountains, is considered as a good place for the dwelling due to the influence of traditional sight of view for location and P'ungsuchiri which is known as Feng Shui in China and geomancy in the western world. It is a fruit in it own way that we could find the ancestors' discernment and wisdom from this study, who have lived their lives adapting themselves to the given natural environment and also utilizing the nature wisely. But this is a current-argued study on the meander cut-off area. Follow-up studies have to be continued about the landscapes of the meander streams and the meander cut-off areas scattered all over the country except Samji Village and draw the characteristics from the comparative analysis.

중국 감숙성의 황토특성과 황토사면특성 (Characteristics of Loess and Loessial Slopes in Gansu Province, China)

  • 홍성완
    • 한국지반공학회:학술대회논문집
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    • 한국지반공학회 1999년도 봄 학술발표회 논문집
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    • pp.47-78
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    • 1999
  • About 440,000 $\textrm{km}^2$, about twice the size of the Korean Peninsula is covered by loess deposits in China. Along the middle reaches of the Huanghe River, mainly in Shaanxi and in Gansu province loess plateau covers vast area amounting to 273,000 $\textrm{km}^2$ Chinese studies on loess and loessial slopes are summarized. And some of the U. S. study and others are also presented for comparison.

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충적층 차수벽으로서 CJM Grouting (CJM Grouting to Reduce the Permeability in Alluvium)

  • 천병식;양형칠
    • 한국지반공학회:학술대회논문집
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    • 한국지반공학회 2005년도 춘계 학술발표회 논문집
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    • pp.253-263
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    • 2005
  • There were no cases to use CJM Grouting to Reduce the Permeability of open-cut in Alluvium adjacent to Han River. In this paper, the applicability of CJM Grouting to Reduce the Permeability in Alluvium is reasonably estimated by in-situ Permeability test and coring. It is known that the range of improvement is decided by injection pressure, time of high pressure water and by slump, injection pressure of injection materials.

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Box-Behnken 및 반응표면 분석법을 이용한 음식물류 폐수 부상 스컴의 혐기성 소화를 위한 열-알칼리 전처리 최적화 (Optimization of Thermal-alkaline Pre-treatment for Anaerobic Digestion of Flotation Scum in Food Waste Leachate Using Box-Behnken Design and Response Surface Methodology)

  • 이동영;최재민;김정광;한선기;이채영
    • 상하수도학회지
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    • 제29권2호
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    • pp.183-192
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    • 2015
  • Response surface methodology (RSM) based on a Box-Behnken Design (BBD) was applied to optimize the thermal-alkaline pre-treatment operating conditions for anaerobic digestion of flotation scum in food waste leachate. Three independent variables such as thermal temperature, NaOH concentration and reaction time were evaluated. The maximum methane production of 369.2 mL $CH_4/g$ VS was estimated under the optimum conditions at $62.0^{\circ}C$, 10.1% NaOH and 35.4 min reaction time. A confirmation test of the predicted optimum conditions verified the validity of the BBD with RSM. The analysis of variance indicated that methane production was more sensitive to both NaOH concentration and thermal temperature than reaction time. Thermal-alkaline pretreatment enhanced the improvement of 40% in methane production compared to the control experiment due to the effective hydrolysis and/or solubilization of organic matters. The fractions with molecular weight cut-off of scum in food waste leachate were conducted before and after pre-treatment to estimate the behaviors of organic matters. The experiment results found that thermal-alkaline pre-treatment could reduce the organic matters more than 10kD with increase the organic matters less than 1kD.

시설물별 태풍에 따른 피해특성 및 원인분석 (The Analysis of Damage Characteristic and Cause on Infrastructures by Typhoon)

  • 신창건;이종영;김석조;지영환
    • 한국지반공학회:학술대회논문집
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    • 한국지반공학회 2005년도 춘계 학술발표회 논문집
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    • pp.1602-1610
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    • 2005
  • In this study was investigated and analyzed of damage characteristics for infrastructures by typhoon that have been many occur. The objective Structures were the road and hydraulic structure. The road structure was included the cut-slopes, retaining walls and bridges. The hydraulic structure is divided with the dike, small-scale dam, reservoir and floodgate. The analysis result of the bridge damage cause is river bottom height increase and passage ability decrease. The principal damage reasons of the cut-slope structure are weakening the ground due to the localized torrential downpour and drainage defective. Also, the principal damage reasons of the small-scale dam, reservoir, dike and the floodgate are continuous collapse of dike beside the floodgate.And we divided a typhoon damage occurrence cause with artificial and natural. As the result of analysis, the many damage occurrence cause will be removed by system improvement and technical development.

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서울 지하철공사 발파공법의 표준화 (Blasting Standardization works for NATM on the Seoul Subway Construction by Dr, Ginn Huh)

  • 허진
    • 기술사
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    • 제16권3호
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    • pp.5-23
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    • 1983
  • On the Seoul Metropolitan Subway Construction of No. 3, 4 Line, the total length is 57 Km and it is now undergoing almost 55% progress. The working method is classified into Open Cut of 70% and the rest of 30% tunnelling method in the 48 job site. Above tunnelling method is execute by American Steel Support System and the rest of 10 job site carried out by New Austria Tunnelling Method. This paper describes Blasting Standardizations works on the above Tunnelling ' Open Cut Method under big slogan, first safety, second execution. As a superintendent, I strived standardization of works with Better powder, Better Drills ' Better Pattern. Geological structure of Seoul area is composed by Jurassic Granite and also the above rockgroup are over burden by Alluviums as a Unconformity. First of all, I carried out the standard amount of powder and burden through experimental standard blasting by each powder as following Blasting works in the subway construction is surrounding shop Building, under pass the city river and also under pass highest building basement floor. I made allowable Blasting Vibration Value by West-Germany Vornorm DIN 4150, Teil 3 and should measure each blasting works as fellows all of powder is used basically Low-Gravity and Low Velocity such as Slurry, Ammonium Nitrate ' Finex I, II. for Smooth Blasting Instead of Gelatin Dynamite. Electric Detonation Cap is used basically M/S Delay Cup instead of Electric delay ' Simultaneous cap. I applied following formula V=KW3/4 $D^{-2}$ V=Particle Velocity (Cm/sec) K=Ginh Huh's Value W=Delay Charge (Kg) D=Distance(m) In the Open Cut, within 1m distance from H-pile I made to use the Concrete breaker, as following V=7W/$^{0.5}$V/$^{-1.75}$ On the Concentrate Building area, I advise to use Light class drill ø36m Bit and advance 1.1m per round blasting the three boom jumbo drill over ø45mm used only suburb of city.e Light class drill ø36m Bit and advance 1.1m per round blasting the three boom jumbo drill over ø45mm used only suburb of city.

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How effective has the Wairau River erodible embankment been in removing sediment from the Lower Wairau River?

  • Kyle, Christensen
    • 한국수자원학회:학술대회논문집
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    • 한국수자원학회 2015년도 학술발표회
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    • pp.237-237
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    • 2015
  • The district of Marlborough has had more than its share of river management projects over the past 150 years, each one uniquely affecting the geomorphology and flood hazard of the Wairau Plains. A major early project was to block the Opawa distributary channel at Conders Bend. The Opawa distributary channel took a third and more of Wairau River floodwaters and was a major increasing threat to Blenheim. The blocking of the Opawa required the Wairau and Lower Wairau rivers to carry greater flood flows more often. Consequently the Lower Wairau River was breaking out of its stopbanks approximately every seven years. The idea of diverting flood waters at Tuamarina by providing a direct diversion to the sea through the beach ridges was conceptualised back around the 1920s however, limits on resources and machinery meant the mission of excavating this diversion didn't become feasible until the 1960s. In 1964 a 10 m wide pilot channel was cut from the sea to Tuamarina with an initial capacity of $700m^3/s$. It was expected that floods would eventually scour this 'Wairau Diversion' to its design channel width of 150 m. This did take many more years than initially thought but after approximately 50 years with a little mechanical assistance the Wairau Diversion reached an adequate capacity. Using the power of the river to erode the channel out to its design width and depth was a brilliant idea that saved many thousands of dollars in construction costs and it is somewhat ironic that it is that very same concept that is now being used to deal with the aggradation problem that the Wairau Diversion has caused. The introduction of the Wairau Diversion did provide some flood relief to the lower reaches of the river but unfortunately as the Diversion channel was eroding and enlarging the Lower Wairau River was aggrading and reducing in capacity due to its inability to pass its sediment load with reduced flood flows. It is estimated that approximately $2,000,000m^3$ of sediment was deposited on the bed of the Lower Wairau River in the time between the Diversion's introduction in 1964 and 2010, raising the Lower Wairau's bed upwards of 1.5m in some locations. A numerical morphological model (MIKE-11 ST) was used to assess a number of options which led to the decision and resource consent to construct an erodible (fuse plug) bank at the head of the Wairau Diversion to divert more frequent scouring-flows ($+400m^3/s$)down the Lower Wairau River. Full control gates were ruled out on the grounds of expense. The initial construction of the erodible bank followed in late 2009 with the bank's level at the fuse location set to overtop and begin washing out at a combined Wairau flow of $1,400m^3/s$ which avoids berm flooding in the Lower Wairau. In the three years since the erodible bank was first constructed the Wairau River has sustained 14 events with recorded flows at Tuamarina above $1,000m^3/s$ and three of events in excess of $2,500m^3/s$. These freshes and floods have resulted in washout and rebuild of the erodible bank eight times with a combined rebuild expenditure of $80,000. Marlborough District Council's Rivers & Drainage Department maintains a regular monitoring program for the bed of the Lower Wairau River, which consists of recurrently surveying a series of standard cross sections and estimating the mean bed level (MBL) at each section as well as an overall MBL change over time. A survey was carried out just prior to the installation of the erodible bank and another survey was carried out earlier this year. The results from this latest survey show for the first time since construction of the Wairau Diversion the Lower Wairau River is enlarging. It is estimated that the entire bed of the Lower Wairau has eroded down by an overall average of 60 mm since the introduction of the erodible bank which equates to a total volume of $260,000m^3$. At a cost of $$0.30/m^3$ this represents excellent value compared to mechanical dredging which would likely be in excess of $$10/m^3$. This confirms that the idea of using the river to enlarge the channel is again working for the Wairau River system and that in time nature's "excavator" will provide a channel capacity that will continue to meet design requirements.

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