• 제목/요약/키워드: Tributary area

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하천생태계와 경관복원을 위한 도시소하천의 유지유량확보에 관한 연구 - 울산 무거천을 중심으로 - (A Study on Securing Instream Flow for Restoring Ecosystems and Riverine Aesthetics of a Degraded Urban Stream - Applied to the Mugeo Stream in the Ulsan Metropolitan Area -)

  • 이수식
    • 한국환경과학회지
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    • 제16권5호
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    • pp.649-655
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    • 2007
  • This study was focused on estimating instream flow, and its optimal alternative for securing the required total amount of instream flow was also researched in order to restore ecosystems and riverine aesthetics of the Mugeo Stream. the first tributary of the Taewha River flowing through the center of Ulsan. In this study the hydraulic and hydrologic conditions and water quality were investigated at specific channel reaches and representative stations of the Mugeo Stream to determine a proper estimate of instream flow. And riverine functions, such as the minimum flow, water duality conservation, fish habitat, and recreation, were considered to restore the environmental functions of the stream, As a result, the total amount of $11,500m^3/day$ was set as the target instream flow for the Mugeo Stream. It was chosen as the optimal alternative for securing the total external supply of $10,000m^3/day$ which have to be transfered from the riverbed flow diverted through the Taewha Main river at upstream of Samho bridge. The water duality throughout the Mugeo Stream channels will be improved considerably to 3-4 mg/l of BOD standard if the target instream flow is supplied and sewage is intercepted by the sanitary sewage system.

DEVELOPMENT OF A FLOOD PROTECTION SYSTEM BY THE USE OF MODEL TESTS

  • Knoblauch Helmut;Goekler Gottfried;Heigerth Guenther
    • Water Engineering Research
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    • 제3권1호
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    • pp.45-55
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    • 2002
  • The Szentgotthard Flood Protection Project is located in the southeasters part of Austria, very close to the Hungarian border and to the Hungarian town of Szentgotthard situated near the Junction of the rivers Lafnitz and Raab. During heavy rainstorms, this area has always been liable to severe floodings, affecting the town itself and upstream reaches, where major industrial and commercial development is planned. In order to solve these problems, several solutions have been developed by means of a series of model tests performed at the hydraulic laboratory of the Technical University of Graz, Austria. The model was constructed to scales 1:75 (lengths) and 1:25 (heights). This trebled scale allowed greater accuracy in the measurement of discharge depths. The results from the model tests have led to the following proposals: - Construction of a flood relief trough with an inflow section 3.5 km upstream of the junction of the rivers Lafnitz and Raab. - Use of a former river bed for the flood relief trough. - Design of a lowered embankment crest section to pass one-third of the maximum flood flow of the river Lafnitz. - Connection of the flood relief trough to the Lahnbach stream, a tributary of the river Raab.

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도시개발에 따른 수환경 변화 예측을 위한 소수계 유역·하천 통합 모델 연구 (A Study on the Integration of Watershed and Stream Models for Impact Assessment of Urban Development on Water Environment)

  • 강유선;박석순
    • 환경영향평가
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    • 제13권4호
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    • pp.153-164
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    • 2004
  • An integration study of time-variable small watershed and stream models (USEPA's SWMM and WASP5) was performed for impact assessment of urbanization on water environment. The study area, the Kyoungan Stream, the tributary of Paldang Lake, was divided into 111 subbasins, based on the topographic condition, land use, and drainage system. RUNOFF block of SWMM was applied to estimate runoff flow and quality. EXTRAN block computed daily and hourly flow according to simulated runoff flow, water supply, and drainage data. SWMM was connected to WASP5 by transforming output file of SWMM into input file of WASP5. The nonpoint source loads and flow data of SWMM were imported to WASP5. The stream was divided into 45 segments based on the watershed delineation. The study included three water quality parameters, BOD, TN, and TP. The validate models were used to examine the impact of urbanization on stream flow and water quality.

Spatial Estimation for Establishing Fireflies Habitat in Daegu City and Gyeongbuk Province

  • Lee, Do-Hun;Kim, Tae-Su;Kim, Jong-Yong;Park, In-Hwan;Jang, Gab-Sue
    • Journal of Forest and Environmental Science
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    • 제35권1호
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    • pp.61-68
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    • 2019
  • The purpose of this study is to evaluate the natural habitat of Hotaria unmunsana Doi, which was first discovered at Mt. Unmun also represents a landscape indicator species for Daegu and Gyeongbuk provinces, and Luciola lateralis Motschulsky, which is the object of experiential activation at festivals in some cities in the region. The spatial range of this study is limited by Daegu City and Gyeongbuk province, and is used to predict the preference of firefly for altitude, slope, direction, shaded relief, riparian buffer zone, river environment, and farmland to analyze the area that best matches the habitat of fireflies. As a result, fireflies are highly influenced by altitude and there may be no large-scale habitats in some areas through the Nakdong and the Baekdu mountain ranges, which occur at high altitude. In most of the cities, we found major habitats around the streams and wetlands. By region, the sites were widely distributed around the cities focused on Nakdong River, and many habitats emerged around the Nakdong River tributary and gentle slopes. In order to preserve and spread the habitat of fireflies, the physical environment as well as their relationship with food chains and symbiotic organisms should be established, and excessive use of pesticides and herbicides in agricultural areas should be avoided.

업데이트된 집중질량스틱모델과 진동대실험 지진응답 비교 (Comparison of Seismic Responses of Updated Lumped-Mass Stick Model and Shaking Table Test Results)

  • 선휘창;홍상현;노화성
    • 한국지진공학회논문집
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    • 제23권4호
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    • pp.231-238
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    • 2019
  • A conventional lumped-mass stick model is based on the tributary area method to determine the masses lumped at each node and used in earthquake engineering due to its simplicity in the modeling of structures. However the natural frequencies of the conventional model are normally not identical to those of the actual structure. To solve this problem, recently an updated lumped-mass stick model is developed to provide the natural frequencies identical to actual structure. The present study is to investigate the seismic response accuracy of the updated lumped-mass stick model, comparing with the response results of the shaking table test. For the test, a small size four-story steel frame structure is prepared and tested on shaking table applying five earthquake ground motions. From the comparison with shaking table test results, the updated model shows an average error of 3.65% in the peak displacement response and 9.68% in the peak acceleration response. On the other hand, the conventional model shows an average error of 5.15% and 27.41% for each response.

설악산 계류의 고도별 저서성 대형무척추동물의 분포특성 (Altitudinal Distribution Aspect of Benthic Macroinvertebrates in a Mountain Stream of Seoraksan)

  • 손세환;김진영;조재익;공동수
    • 한국물환경학회지
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    • 제27권5호
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    • pp.680-688
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    • 2011
  • This study was performed to find out the distribution aspect of benthic macroinvertebrates according to altitude in a mountain stream (a main stream: Buk stream, a tributary: Hangye stream) of Seoraksan. The survey was conducted from August to November in 2010. All survey sites were very sound because the mountain was being maintained as a protection area of the national park. Water quality and the composition of substrata were similar in all sites. Benthic macroinvertebrates of 3 phyla, 4 classes, 9 orders and 84 species occurred in the stream. Along with the decline of altitude, shredders of the functional feeding groups (FFGs) decreased, while collector filterers increased. In particular, collector filterers increased sharply at the altitude of 600 ~ 500 m (S.E.L.). Benthic macroinvertebrates showed low similarity between the uppermost site and the lower sites. Altitude appeared to be a significant factor that influence the structure and distribution of benthic macroinvertebrate community.

Measurements and analysis of load sharing between piles and raft in a pile foundation in clay

  • Watcharasawe, Kongpop;Jongpradist, Pornkasem;Kitiyodom, Pastsakorn;Matsumoto, Tatsunori
    • Geomechanics and Engineering
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    • 제24권6호
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    • pp.559-572
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    • 2021
  • This research presents the monitoring results and their interpretation on load sharing of the pile foundation during the construction of a high-rise (124 m in height) building in Bangkok, in soft clayey ground. Axial forces in several piles, pore water pressure and earth pressures beneath the raft in a tributary area were monitored through the construction period of the building. The raft of the pile foundation in soft clayey ground can share the load up to 10-20% even though the foundation was designed using the conventional approach in which the raft resistance is ignored. The benefit from the return of ground water table as the uplift pressure is recognized. A series of parametric study by 3D-FEA were carried out. The potential of utilizing the piled raft system for the high-rise building with underground basement in soft clayey ground was preliminarily confirmed.

주암호 용수 유입에 의한 영산강 지류 광주천의 수질 및 식물플랑크톤 변화 (Change in Water Quality and Phytoplankton of Gwangju Stream due to Water Input from Lake Juam)

  • 정병관;김세희;신용식
    • 한국환경과학회지
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    • 제31권5호
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    • pp.431-445
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    • 2022
  • The Gwangju Stream is a major tributary of the Yeongsan River. To maintain environmental and ecological functions in the stream, the flow is secured by natural water from the Mudeung Mountain as well as waters discharged from Lake Juam and the Gwangju sewage treatment plants. A substantial amount of water is supplied into the upper reaches of Gwangju Stream from Lake Juam. To examine the ecological effects of the water input from Lake Juam on the Gwangju Stream, a field survey of phytoplankton community species and an evaluation of water properties was conducted at five stations, from station GJ1 before the inflow to station GJ5 in the lower region. Nutrient levels decreased in the vicinity of the Lake Juam inflow, suggesting that this water inflow can contribute to the reduction of eutrophication in the stream. The phytoplankton community was mainly composed of Bacillariophyceae, Chlorophyceae, and Cyanophyceae, and the community structure was similar to that of the other study sites located near the water inflow regions. The inflow of water from Lake Juam can affect water quality and the phytoplankton community over a limited area, reducing eutrophication and increasing water flow in the Gwangju Stream.

Aerodynamic modification of setback distance at half height of the tall building to minimize the wind effect

  • Bairagi, Amlan Kumar;Dalui, Sujit Kumar
    • Wind and Structures
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    • 제35권3호
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    • pp.193-211
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    • 2022
  • The present study focuses on aerodynamic parameters behaviors and control on the single and double side setback building models at the buildings mid-height. The study is conducted by computational fluid dynamics (CFD) simulation. This study estimates the face wise pressure coefficient on single side setback buildings with a setback range of 20%-50% and double side setback buildings with setbacks ranging from 10%-25%. The polynomial fitted graphs from CFD data predict the Cp on different setback model faces within permissible limit ±13% error. The efficient model obtained according to the minimum drag, lift, and moment consideration for along and across wind conditions. The study guides the building tributary area doesn't control the drag, lift, and moment on setback type buildings. The setback distance takes a crucial role in that. The 20% double side setback model is highly efficient to regulate the moment for both along and across wind conditions. It reduces 17.5% compared to the 20% single side setback and 14% moment compared to the 10% double side setback models. The double side setback building is more efficient to control 4.2% moment than the single side setback building

한강 지류 취약지점에서의 계절별 환경생태유량 분석 (Analysis of seasonal environmental ecological flow at Han River tributary vulnerability points)

  • 노연정;김성준;홍은미
    • 한국수자원학회:학술대회논문집
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    • 한국수자원학회 2023년도 학술발표회
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    • pp.146-146
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    • 2023
  • 우리나라의 하천은 도시의 급격한 산업화와 공업화로 인해 이수, 치수 목적을 중심으로 관리되어왔다. 그러나 최근 기후변화의 가속화와 댐과 같은 인공 구조물로 인해 하천의 수질 및 흐름이 위협받으면서 하천 환경개선에 대한 문제가 사회적으로 대두되고 있다. 하천의 생태기능은 하천에서 살아가는 각종 생물의 서식 조건을 유지함으로써 하천이 환경적으로 건강한 상태를 유지하도록 하는데 중요한 역할을 한다. 따라서 하천 환경개선을 위해서는 하천 생태기능 유지를 위한 최적 유량을 확보해야 한다. 일반적으로 하천의 생태기능을 보존하는데 필요한 최적 유량에 대한 평가에는 USGS(United States Geological Survey)에서 개발한 어류에 대한 유량과 서식지 가용성사이의 관계를 바탕으로 하는 물리적 서식처 모형 (Pysical HABitat SIMulation, PHABSIM)이 널리 사용되고 있다. PHABSIM은 가중가용면적(Weighted Useable Area, WUA)과 유량의 관계곡선을 산출하여 생태유량을 산정할 수 있게 한다. 본 연구에서는 최근 10년 동안 어류 건강성 평가에서 낮은 등급을 받은 탄천 대왕교 지점을 대상으로 PHABSIM을 이용한 어류의 계절별 최적 생태유량을 산정했다. 연구에 사용된 유량자료는 2012부터 2021년까지의 데이터가 사용되었다. 탄천의 대표 어종으로는 각 하천에서 우점종으로 선정된 Zacco platypus가 사용되었다. 각 연도별 그리고 계절별 하천 유량의 변화에 따른 환경생태유량 분석을 통해 제시된 각 하천의 최적 환경유지유량에 대한 결과는 한강권역 환경생태유량 산정 및 하천 관리를 위한 기초자료로 활용할 수 있을 것이다.

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