• 제목/요약/키워드: Ecological flow

검색결과 405건 처리시간 0.025초

금강수계 하천에서의 어류 서식처적합도지수 산정 (Estimation of Habitat Suitability Index of Fish Species in the Geum River Watershed)

  • 강형식;임동균;허준욱;김규호
    • 대한토목학회논문집
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    • 제31권2B호
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    • pp.193-203
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    • 2011
  • 최근 하천 환경 및 생태학적 관심도가 증가함에 따라 다양한 하천 복원 및 서식 환경 조성 사업이 수행되고 있다. 서식처 복원 사업에 있어 중요한 것은 서식처에 필요한 유량을 산정하는 것이고, 이를 위해 미국 및 유럽의 많은 국가에서 유지유량증분법을 이용하여 서식처 필요유량을 산정하고 있다. 유지유량증분법은 하천 흐름과 관련되어 있는 생물의 서식처 평가와 적정 유량을 설정할 수 있는 개념으로서, 대상하천에서 유지유량증분법을 적용하기 위해서는 생물에 대한 서식처적합도지수가 반드시 필요하다. 그러나 국내의 경우 과거 현장 모니터링을 통해 피라미와 참갈겨니에 대한 적합도지수만이 존재하기 때문에 다양한 어종에 대한 서식처 유량을 산정하기 어려운 실정이다. 본 연구에서는 금강수계의 현장 모니터링을 통해 수심 및 유속과 같은 물리자료, 산성도 및 용존산소량과 같은 화학자료, 그리고 어종 및 개체수와 같은 생물자료를 구축하였다. 확보된 2,736개의 자료를 바탕으로 피라미, 참갈겨니, 돌마자, 쉬리, 돌고기, 모래무지 등 6가지 어종에 대한 서식처적합도지수를 산정하였으며, 기존에 제시된 서식처적합도지수와의 비교를 통해 새로운 서식처적합도지수를 제안하였다. 또한 각 어종별 프루드수, 산성도, 용존산소의 범위를 제시하였다. 본 연구에서 제안한 서식처적합도지수는 하천사업의 평가를 수행하기 위한 기초자료로 활용될 수 있을 것으로 예상된다.

초강천에서 어류의 최적 생태유량 산정 (Estimation of Optimal Ecological Flowrate of Fish in Chogang Stream)

  • 허준욱;김대희;강형식
    • Ecology and Resilient Infrastructure
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    • 제1권1호
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    • pp.39-48
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    • 2014
  • 하천복원과 환경유량을 위한 기초자료를 확립하고자 금강수계의 초강천에서 생물학적 건강성 및 최적 생태유량에 대하여 조사하였다. 출현한 어종은 총 9과 36종 4,669개체였으며, 잉어과가 66.7%(24종)로 가장 높았다. 참갈겨니가 1,588개체로 34.0%로 우점종이었으며, 아우점종은 피라미로 22.6%, 우세종은 쉬리 13.3%로 나타났다. IBI와 QHEI는 상류로부터 하류로 내려갈수록 값이 감소하는 것으로 나타났으며, IBI 값은 27.9~38.6으로 평균 32.2로 양호상태를 나타냈다. 참갈겨니, 쉬리 및 감돌고기에 대하여 서식도적합도지수(HSI) 및 최적 생태유량을 산정하였다. 참갈겨니의 경우, 유속과 수심의 HSI 값은 각각 0.1~0.4 m/s와 0.2~0.4 m 였다. 감돌고기는 유속이 0.2~0.5 m/s, 수심이 0.4~0.6 m 및 하상재료가 가는자갈~호박돌로 나타났다. 이를 기초로 하여 각 지점의 최적 생태유량은 하류로 내려갈수록 값이 증가하는 것으로 나타났으며, 이에 따라서 WUA 값도 증가하는 것으로 나타났다.

Growth Responses of the Filter-Feeding Clam Gafrarium tumidum to Water Flow: A Field Manipulation Experiment

  • Cheung, S.G.;Shin, Paul K.S.
    • Journal of Ecology and Environment
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    • 제30권2호
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    • pp.109-119
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    • 2007
  • The effect of water flow on the growth of Gafrarium tumidum was studied in the field using open cages constructed with stainless steel net and perspex in which holes were drilled. Cages with different flows (25, 50 and 75% of the control) were made by varying the area of perspex being drilled. Reduction in flow rate was directly proportional to the undrilled area, and the mean flow rate of the different treatment groups varied from 3.12 cm/s for the 25% exposure to 12.48 cm/s for the control cages. At the end of the 3-month experiment, no significant differences in sediment characteristics were found among the treatments. Growth in shell length, shell weight and tissue dry weight was, however, positively correlated with flow rate. Percentage increases ranged from $3.0{\sim}8.3%$ for shell length, $9.9{\sim}23.1%$ for shell weight and $17.2{\sim}53.3%$ for tissue dry weight. Condition index of the clam was not significantly different among the treatments. Seston depletion effect could reduce growth in G. tumidum only when water flow was reduced to 25% of the control. G. tumidum also exhibited different responses in shell and tissue growth at low flow rates, in which shell growth continued to decrease as flow rate decreased whereas tissue growth was relatively independent of low flows at 25 and 50% of the control. It was suggested that when seston flux was reduced at slow flows, it would be a better strategy for G. tumidum to channel energy for gonad development instead of shell growth during the reproductive stage.

Time Lags between Hydrological Variables and Phytoplankton Biomass Responses in a Regulated River (the Nakdong River)

  • Kim, Myoung-Chul;Jeong, Kwang-Seuk;Kang, Du-Kee;Kim, Dong-Kyun;Shin, Hyun-Suk;Joo, Gea-Jae
    • Journal of Ecology and Environment
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    • 제32권4호
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    • pp.221-227
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    • 2009
  • This study describes time lag responses between hydrological variables and phytoplankton biomass in a regulated river system, the lower Nakdong River in South Korea. The lower Nakdong is a typical flow-controlled lotic system, and its limnological characteristics are influenced by climatic variation such as monsoons and summer typhoons. Mean rainfall in the area during summer is about 1,200 mm, which comprises >60% of annual rainfall. Our results show that the regulation of flow in the Nakdong by multi-purpose dams from 1995 to 2004 affected phytoplankton dynamics. Diatom blooms occurred in winter, when the limited discharge allowed for proliferation of the phytoplankton community. Using multiple regression analysis, we detected significant time-delayed relationships between hydrological variables and phytoplankton biomass. These results may be useful for water resource managers, and suggest that 'smart flow' control would improve water quality in large regulated river systems of the Republic of Korea.

공동주택에 적용된 Shaft Box형 발코니의 환경성능 검토 (An Investigation of Environmental Performance on Shaft Box Type Balcony Adopted to Apartment Building)

  • 노지웅
    • KIEAE Journal
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    • 제13권4호
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    • pp.27-32
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    • 2013
  • This study focus on shaft box facade, special form of box window construction. It consists of a system of box window with continuous vertical shafts that extend over a number of stories to create a stack effect. The subject building was decided by analyzing various types of exiting apartments. Shaft box type balcony was devised by setting up shaft space at a part of balcony. Air flow and indoor air temperature were simulated, performance of shaft box type balcony was compared with existing types using VE computer simulation program. Research consequence can be summarized as follow: 1) In the case of existing types, the change of window opening rate has only a little effect on the improvement of indoor temperature. But, air flow rate increased two times in the case that changed opening rate 20% to 40% 2) In the case of existing types, the growth of air flow rate has little effect on the improvement of indoor temperature. But, shaft box type represented the remarkable effect on the improvement of indoor temperature as well as the growth of air flow rate.

Transformation of dissolved organic matter in a constructed wetland: A molecular-level composition analysis using pyrolysis-gas chromatography mass spectrometry

  • Park, Jongkwan;Choi, Mijin;Cho, Jaeweon;Chon, Kyongmi
    • Environmental Engineering Research
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    • 제23권4호
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    • pp.390-396
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    • 2018
  • This study investigated the transformation of dissolved organic matter (DOM) in a free-water surface flow constructed wetland. Pyrolysis gas chromatography-mass spectrometry (Py-GC/MS) coupled with preparative high-performance liquid chromatography (prep-HPLC) was used to analyze the compositions of biopolymers (polysaccharides, amino sugars, proteins, polyhydroxy aromatics, lipids and lignin) in DOM according to the molecular size at three sampling points of the water flow: inflow, midflow, and outflow. The prep-HPLC results verified the decomposition of DOM through the decrease in the number of peaks from three to one in the chromatograms of the sampling points. The Py-GC/MS results for the degradable peaks indicated that biopolymers relating to polysaccharides and proteins gradually biodegraded with the water flow. On the other hand, the recalcitrant organic fraction (the remaining peak) in the outflow showed a relatively high concentration of aromatic compounds. Therefore, the ecological processes in the constructed wetland caused DOM to become more aromatic and homogeneous. This indicated that the constructed wetland can be an effective buffer area for releasing biochemically stable DOM, which has less influence on biological water quality indicators, e.g., biochemical oxygen demand, into an aquatic ecosystem.

농업용저수지를 이용한 환경생태유량 확보방안 경제성 비교 연구 - 동복천을 중심으로 - (A Economic Feasibility Study on Environmental Ecology Flow Supply Plan using Agricultural Reservoir - Focused on Dongbok River -)

  • 박진현;고재한;성무홍;정형모;박태선;곽영철;최우영;범진아;정민혁;유승환;윤광식
    • 한국농공학회논문집
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    • 제61권5호
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    • pp.33-47
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    • 2019
  • The environmental ecological flow (EEF) of stream or river will be designated according to the enforcement of the Water Environment Preservation Act. Previous researches by Ministry of Environment have proposed agricultural reservoirs as alternative resources to secure river flow where multi-purpose dam does not exist. However, agricultural reservoirs are constructed for the supply of agricultural water, and in fact, there is not a sufficient amount of water to be supplied to rivers as EEF. Therefore, this study examines the economic feasibility of securing EEF through the remodeling or construction of agricultural reservoirs. We investigated water balance of reservoir through simulation of three types of water supply demands such as agricultural water, agricultural water and river maintenance flow, and agricultural water and environmental ecology flow. The economics analysis was conducted on water supply demands and corresponding remodeling or construction of reservoirs. As a result, it was found that the method of securing through heightening existing reservoir enhancement is economically feasible. However, it was not possible to secure all the amount of the EEF due to the size limitation of existing reservoirs or constrain of the watershed for newly built reservoir. Therefore, in order to secure all of the EEF, the utilization of other alternatives as well as agricultural reservoirs should be considered. This study demonstrated the method of economical feasibility study of securing river maintenace flow and EEF using agricultural reservoirs and other considerations.

시스템 사고를 통한 다기능 생태저류지의 관리방안 - 광명 안터생태공원을 중심으로 - (The Management Methods of Multi-Purpose Ecological Reservoir by System Thinking - Focused on Anteo Eco Park -)

  • 이현지;유수진;전진형
    • 한국환경복원기술학회지
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    • 제18권2호
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    • pp.1-17
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    • 2015
  • Ecological reservoir is a multifunctional space where provides the functions of retention, animal habitat and improvement of ecosystem health and landscape. The ecological reservoir of Anteo Eco Park located in Gwangmyeong-si has established to functions for water purification, maintenance of healthy aquatic ecosystem. Because the Anteo Eco Park is located in the site where nonpoint pollutant materials flow in, Anteo Eco Park has potential factors which aquatic ecosystem health deteriorates and damages the habitat of golden frog(Rana plancyi chosenica) which is restoration target species. Therefore, the purpose of this study is to suggest the plan to manage the variables which impede the right functions of aquatic ecosystem by understanding the causal loop diagram for the change of water quality environment and the interaction of predator-prey through system thinking. The results are as follows. First, the study showed that the individual number of golden frog which is an indicator species of Anteo Eco Park is threatened by snakeheaded fish, which is an upper predator. Therefore, balanced food chain should be hold to protect golden frog by capturing the snakeheaded fish which is individual number's density is high, and the monitoring management of the individual number for predator(snakeheaded fish)-prey(golden frog) should be performed. Second, the study represented that water pollution and carnification is caused by the sediment as the dead body of the large emergent vegetation in the winter cumulates as sediment. Ecological reservoir in Anteo Eco Park has been managed by eliminating the dead body of the large emergent vegetation, but the guideline for the proper density maintenance of vegetation community is additionally needed. Lastly, the study showed that aquatic ecosystem of Anteo Eco Park where is contaminated from the inflow of nonpoint pollutants affects the individual number's decline of golden frog and snakeheaded fish. Accordingly, the creation of a buffer area and a substitution wetland is needed in the periphery of the Anteo Eco Park to control the inflow of nonpoint pollutants including organic matters, nutrients and heavy metals. This study will be helpful that Anteo Eco Park improves the regional landscape and maintain healthy aquatic ecosystem space for the park visitors including local residents.

하천유지유량과 환경생태유량의 기술·제도적 방향성 (Technical and Institutional Directivity of Instream Flow and Environmental Ecological Flow)

  • 강성규;최시중;김현정;이동률
    • 한국수자원학회:학술대회논문집
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    • 한국수자원학회 2019년도 학술발표회
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    • pp.420-420
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    • 2019
  • 법적인 정의를 차치하고 나면 하천유지유량의 정의는 사람과 자연이 한정된 수자원을 바람직하게 공유하기 위한 유량 측면의 범위로 나타낼 수 있다. 하천유지유량의 산정과 관리는 사람의 물이용과 배치되면서 동시에 진행해야 하는 하천수 관리의 핵심요소이다. 물관리 일원화 이전에 물관리 업무가 분산되어있는 상황에서 당시 환경부는 환경생태유량이라는 건강한 생태계유지에 주 목적이 있는 개념을 생산하였고, 시범사업을 거쳐 고시를 추진하고 있다. 하천유지유량과 환경생태유량은 다루는 범위와 공간적 차이가 있을 뿐이며 근본적인 개념과 생성의 원인은 같은 것이다. 따라서 본 연구에서는 하천유지유량과 환경생태유량의 개념과 본질을 살펴보고 효율적인 제도적 장치 마련의 방향성, 기술적 방향성에 대해 논하였다.

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공동주택단지 급수계통의 유량특성에 미치는 감압밸브의 영향 (Influence of Pressure Reducing Valves on Flow Characteristics of the Water Supply System for an Apartment Complex)

  • 김태진;차동진
    • KIEAE Journal
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    • 제12권6호
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    • pp.23-28
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    • 2012
  • Pressure distribution in the water supply system of an apartment complex consisting of 12 buildings and 635 units in total have been investigated numerically. The complex incorporates two zone booster pump system, and around a half of units have pressure reducing valves (PRVs) in them. Calculated hydrostatic pressure without the water flow were compared with their designed and measured counterparts, and they agreed quite well with each other. Then, the pressure and volumetric water flow rate at all units were analyzed, indicating that there are noticeable differences in pressure and flow rate in one unit to another, although the aforementioned minimization technologies of pressure deviation were employed. In order to further reduce the difference in the water flow rate, it is suggested that all the units in the complex have PRVs installed in their water supply system. The effect of setting pressure of the PRVs on the non-uniformity of the flow in each unit and on the reduction of total water supply for the apartment complex have been studied. With the same PRV setting pressure of 3.952 bar (or the gauge pressure of $3.0kg_f/cm^2$), it has been estimated that the suggested system improves the non-uniformity (the coefficient of variation) of the flow rate of apartment complex over the current system, from 8.02% to 6.66%, and reduces the total water supply, from $0.02804m^3/s$ to $0.02766m^3/s$.