• 제목/요약/키워드: Stream wetland

검색결과 169건 처리시간 0.03초

매노천에서 생태적수질정화비오톱(SSB)으로 창출된 생태어도 및 홍수터 배후습지의 생태계 복원과 생태적 수질정화효과 (The Effect of Ecological Restoration and Water Purification of Ecological Fish-way and Floodplain Back Wetland Created as Sustainable Structured Wetland Biotope at Maeno Stream)

  • 변찬우;김용민
    • 환경영향평가
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    • 제26권6호
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    • pp.508-523
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    • 2017
  • 본 연구는 매노천 생태하천복원을 위한 생태적수질정화비오톱 시스템과 생태어도(Fish-way) 등의 적용 대상지를 중심으로 생태하천 복원 전 후를 모니터링하였다. 어류는 복원전 서식이 확인되지 않았던 생태적수질정화비오톱 습지에서 총 11종 191개체가 창출복원된 것으로 조사되었다. 특히 복원목표종인 돌마자와 참종개가 생태적수질정화비오톱 습지에서 서식함이 모니터링되어, 미소서식처와 건전한 Fish-way가 창출되었음을 확인할 수 있었다. 양서류는 복원후 활동성이 높은 3차 조사시기에 습지와 그 주변에서 다수의 참개구리 서식으로 복원되었음이 확인되었다. 포유류는 수달이 습지와 Fish-way를 서식영역으로 활용하는 것이 확인되어 환경부 멸종위기 제1급이자 천연기념물인 수달 서식지가 복원된 것으로 조사되었다. 식물상의 경우 조사지역에 출현하는 관속식물은 복원 전 총 7과 13종, 복원직후 15과 19종, 복원후 총 22과 33종으로 증가되었다. 복원후 식생은 달뿌리풀 군락 등의 다양한 생태계의 기초생산자이자 수질정화에 기여하는 식재종인 정수식물군락이 형성된 것으로 조사되었다. 수질 모니터링 결과, 평균적으로 BOD 64.3%, T-N 47.2%, T-P 80.7%의 처리효율을 나타내었다. 생태계를 교란하는 제한요인(limiting factor)이 되는 비점오염원이 성공적으로 처리됨으로써 I, II등급수질에 서식하는 목표종이 창출적으로 복원되었다.

Wetland Construction: Flood Control and Water Balance Analysis

  • Kim, Duck-Gil;Kwak, Jae-Won;Kim, Soo-Jun;Kim, Hung-Soo;Ahn, Tae-Jin;Singh, Vijay P.
    • Environmental Engineering Research
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    • 제15권4호
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    • pp.197-205
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    • 2010
  • Recent years have witnessed increasing interest in wetland constructions in Korea as a flood control measure during the flood season and for consideration of the ecology during the non-flood season. In this study, hydraulic and hydrologic analyses were performed on a wetland construction plan for use as an alternative sustainable flood defense during the flood season, as well as a wetland that can protect the ecosystem during the non-flood season. The study area was the basin of the Topyeong-cheon stream, which is a tributary of the Nakdong River, including the Upo wetland, which is registered in the Ramsar Convention and the largest inland wetland in Korea. Wetlands were to be constructed at upstream and downstream of the Upo wetland by considering and analyzing seven scenarios for their constructions to investigate the effect of flood control during the flood season; it was found the best scenario reduced the flood level by 0.56 m. To evaluate the usefulness of the constructed wetlands during the non flood season, the water balance in the wetlands was analyzed, with the best scenario found to maintain a minimum water level of 1.3 m throughout the year. Therefore, the constructed wetlands could provide an alternative measure for flood prevention as well as an ecosystem for biodiversity.

화포천의 저서성 대형무척추동물 분포특성과 생태학적 정보 (Distribution Characteristics of and Ecological Information on Benthic Macroinvertebrates in the Hwapocheon Stream)

  • 배성우;황태원;윤춘식;홍성진;정선우
    • 한국환경과학회지
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    • 제31권2호
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    • pp.149-169
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    • 2022
  • Hwapocheon stream is located in Gimhae-si, Gyeongsangnam-do, and a part was declared a protected wetland area in 2017. In 2020 and 2021, we investigated the community structure of benthic macroinvertebrates of the Hwapocheon stream to provide ecological information for the management of the wetland. As a result, 4 phyla, 6 classes, 20 orders, 51 families, 83 species, and 2,621 individuals of benthic macroinvertebrates were identified. The average indices of diversity, richness, and evenness were the highest in the midstream area, whereas the highest average index of dominance was observed upstream. Seven biological water quality evaluations based on the distribution of benthic macroinvertebrates showed that the Biological Monitoring Working Party was an extremely suitable method for environmental evaluation of the Hwapocheon stream. Regarding functional feeding groups, the number of species of predators and gathering-collectors was the highest, and considering habitual dwelling groups, the number of species of clingers and sprawlers was the highest. The species number of Odonata, Hemiptera, and Coleoptera increased toward the downstream area, whereas the community loss index was the highest upstream. We also investigated relative resistance and resilience based on the distribution of aquatic insects and found that community stability was the highest downstream, whereas the lowest upstream.

담수습원의 범람과 곤충의 적응 (Flood and Adaptation of Insect at the Freshwater Wetland)

  • Park, Hee Cheon;Woen Kim;Chong Un Ri
    • The Korean Journal of Ecology
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    • 제8권4호
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    • pp.205-214
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    • 1985
  • At the Changnyeung natural bod, the flood in the freshwater wetland and the adaptation of the insect at this area were investigated by the species diversity index and the cluster analysis. Most dominant species was Diplonychus esakii collected at the site of the water edge and its dominance index was 0.797. This area had lower species diversity indices with the value of 0.340 to 1.712 than that of the grassland and water stream. The number of the species in this area was not rich. Some ground beetles inhabited at the flooded or wet area were important species for the pair group between the sites by the cluster analysis. The composition of the insect species at this natural wetland affected by the irregular flood was very simple and specific.

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하천통로에서 미세 지형 발달이 하천 식생에 미치는 영향 (Effects of Microtopography on the Development of Riparian Vegetation in Stream Corridors)

  • 정경진;김동엽
    • 한국조경학회지
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    • 제27권4호
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    • pp.39-49
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    • 1999
  • Urban streams have, recently, been straightened and widened to alleviate flooding problem. As a result, the stream have been modified inadvertently for ecological functions and microtopography. In this study, we investigated riparian vegetation and microtopography of the tributaries of Han River before and after the monsoon rain in summer. The purpose of this study was to relate the stream microtopography to the distribution of riparian vegetation. The stream microtopography was investigated for its scale and pattern. Vegetation was investigated from 131 plots by Braun-Blanquet method. The distribution of riparian vegetation was significantly correlated with the stream microtopography. Various herbaceous species occurred at stream bank slop, high terrace and channel side. However, at channel side and concave part of terrace where soils were in high moisture level, only a few wetland species were dominated. The complexity of the microtopography in the stream corridors led to heterogeneous riparian vegetation. The vegetation showed more stability against flooding at the stream corridors with natural and complex microtopography than at the urban-type stream corridors with simple topographical features. The results showed that the development of riparian vegetation was influenced by the changes in microtopography, which was primarily determined by the shape and characteristics of channel. It seemed that a close-to-nature river system would be restored more readily with an understanding of microtopographical features affecting the distribution of riparian vegetation.

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폐천의 습지 이용과 치수경제성 분석 (Wetland Utilization of the Cut River and Economic Analysis for Flood Control)

  • 김형수;이상식;정상만;박수영
    • 한국습지학회지
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    • 제4권1호
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    • pp.43-50
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    • 2002
  • The channel improvement plan has contributed to the flood damage reduction studies and the plan has mainly performed by the levee construction which creates the cut river. The cut river has mainly used as the agricultural and housing purposes. Recently, however, it is considered as a natural wetland for the purposes of a flood control and preservation of nature. So, this study compares the economical benefits according to the purposes of the cut river utilizations such as an agricultural, levee construction for flood damage reduction, and wetland. The study area is the downstream part of Kok-Neung stream which is a main tributary of Han river. The agricultural and levee construction benefits are estimated based on the 'Agricultural and Forestry Statistical Year' (2000) and the 'Standard for River Design' (2001). The benefit or value for the wetland utilization of the cut river is estimated by the enquete using questionnaire. As a results, for the case of which the cut river is used as an agricultural land, the present net benefit is estimated as 195.81 million won, for the levee construction, as 20853.00 million won and for the wetland, as 24692.89 million won. Therefore, the wetland is the best choice for the cut river utilization.

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갈대 및 부들 습지셀의 연못시스템 방류수 질소제거 비교 (Comparison of Nitrogen Removal Between Reed and Cattail Wetland Cells in a Treatment Pond System)

  • 양홍모
    • 한국환경농학회지
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    • 제23권4호
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    • pp.234-239
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    • 2004
  • [ $NO_3$ ]-N and T-N removal rates of cattail wetland cells were compared with those of reed wetland cells. The examined cells were a part of a pond-wetland system composed of two ponds in series and six wetland cells in parallel. Each wetland cell was 25m in length and 6m in width. Cattails (Typha angustifolia) were transplanted into three cells and reeds Phragmites australis) into another three ones in June 2000. Water of Sinyang stream flowing into Kohung Estuarine lake located in the southern part of the Korean Peninsula was pumped into the primary pond, its effluent was discharged into the secondary pond Effluent from the secondary pond was funneled into each cell. Two cattail and reed cells were chosen for this research. Water quantity and quality of influnt and effluent were analyzed front May 2001 through October 2001. The volume of influent and effluent of the cells averaged about $20.0\;m^3/day$ and $19.3\;m^3/day$, respectively. Hydraulic retention time was approximately 1.5 days. Influent $NO_3$-N concentration for the four cells averaged 2.39 mg/L. Effluent $NO_3$-N concentration far the cattail and reed cells averaged 1.74 and 1.78 mg/L, respectively. Average $NO_3$-N retention rate for the cattail and reed cells by mass was 30 and 29%, respectively. Influent T-N concentration far the four cells averaged 4.13 mg/L. Effluent T-N concentration for the cattail and reed cells averaged 2.55 and 2.61 mgL respectively. Average T-N retention rate for the cattail and reed cells by mass was 39 and 38%, respectively. $NO_3$-N and T-N concentrations in effluent from the cattail cells were significantly low (p=0.04), compared with those from the reed cells. Cattail wetland cells were more efficient for $NO_3$-N and T-N abatement than reed ones.

국가습지 DB를 활용한 남한 내륙습지의 토지피복 유형 특성 분석 (Analysis of Characteristics in the Land Cover Types of Inland Wetlands Using the National Wetland DB at South Korea)

  • 이예슬;윤혜연;이성호;장동호;윤광성;이창수
    • 한국지형학회지
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    • 제27권4호
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    • pp.71-88
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    • 2020
  • This study modified the properties and boundaries of the inland wetland types through the structural edit of the National Wetland DB, and analyzed the characteristics of the different land cover by area and the entire inland wetlands of South Korea. The inland wetlands of the Gangwon Basin had a small area of waters. In addition, the ratio of natural barren was high, reflecting the characteristics of the upper reaches of the large river in the east and west part of Gangwon Province. The Geum River Basin had a high percentage of aggregate land due to the development of large alluvial land, and the ratio of artistic barren was low, so various ecosystem service of wetland elements were distributed evenly. The Nakdong River Basin had a high proportion of waters as water level in the channel rose due to the installation of 4 Major Rivers Beam, and the ratio of Natural barren was low. Moreover, the water level of the main attributes flowing into the Nakdong River drainage system was not high, so the ratio of vegetation concentration was high. The Yeongsan River Basin showed that Waters had the high proportion. And the distribution of Natural barrens represented differently according to the Yeongsan River Basin and the Seomjin River Basin. Finally, Sand and Gravels supplied to rivers during precipitation were deposited in the main stream of the Han River Basin, and the differences between the side and high side was large in the area, reflecting the characteristics of the mouth of a river, so the Natural barren of Clay was distributed.

시화호 유역에서 배수시스템별 하천수의 비옥도 비교 (Comparison of the Fertility of Stream Waters Depending on the Drainage Systems in the Lake Shihwa Watershed, Korea)

  • 신재기;김동섭;강창근;황순진
    • 생태와환경
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    • 제36권3호통권104호
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    • pp.381-388
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    • 2003
  • The fertility of stream water in major streams of the Lake Shihwa Watershed was compared using water analyses and algal growth potential test (AGPT) in typical drought seasons from December 2001 to April 2002, The water quality varied considerably depending on streams. These streams were very rich in inorganic nutrients that the nutrient levels and characteristics of each stream could be easily determined. Through AGPT, 63.6% of growth was observed in the average values of each stream, with non-growth accounting for 36.4%. AGPT results showed that 40.9% of the 22 stations were in hypertrophic condition and 54.5% in eutrophic condition. AGPT values were significantly correlated with TIN, $NH_4$, and SRP (p <0.001); compared to other nutrients, however, they were more related to SRP and $NH_4$. Moreover, the values increased with high concentration of N and P and low N/P ratios. Nonetheless, the values were more dependent on P concentration than N concentration. This suggests that the effect of P on the water quality of lake situated in downstream may serve as a potential indicator of phytoplankton development. Depending on the drainage pattern of streams, the wastewaters of wastewater treatment plant (WwTP) and untreated wastewater (UTW) were found to have 53.4% and 46.6%, respevtively, of TIN, 51.9% and 48.1% of $NH_4$, 62.9% and 37.1% of $NO_3$, 62.6% and 37.4% of SRP, and 44.1% and 55.9% of SRSi. The AGPT value was 51.1% in WwTP wastewater and 48.9% in UTW wastewater, the concentration of WwTP wastewater was slightly higher. For untreated wastewaters flowing into the constructed wetland and into the lake, TIN accounts for 43.0% and 57.0%, respectively, of nitrogen components, $NH_4$ 44.4% and 55.6%, $NO_3$ 39.6% and 60.4%, SRP 53.5% and 46.5%, and SRSi 52.3% and 47.7%, respectively. The AGPT value was 58.0% in the constructed wetland and 42.0% in Lake Shihwa; the concentration in streams flowing into the wetland was slightly higher. Therefore, Persistent and large development of phytoplankton in Lake Shihwa cannot be prevented unless a measure tophytoplankton control is implemented. This is because the concentration of nutrients in specific streams flowing into the lake is very high, even though the inflow of water is low.

우포늪 저서성 대형무척추동물 군집의 장기생태모니터링을 위한 기반조사 (Fundamental Investigation for Long-term Ecological Monitoring on Community of Benthic Macroinvertebrates in Wetland Woopo)

  • 이동준;윤춘식;이준철;성성훈;박다라;정선우
    • 한국환경과학회지
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    • 제18권12호
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    • pp.1399-1410
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    • 2009
  • The study on community structure of benthic macroinvertebrates from wetland Woopo was conducted for the long-term ecological monitoring. The wetland Woopo is located in Changnyeong-Gun, Gyeongsangnam - Do of Korea. In 2006, we investigated the seasonal variation of benthic macroinvertebrates with quantitative and qualitative collecting methods. The collection was performed monthly at four surveying region, Woopo, Sajipo, Mokpo and Topyong stream. In this study, 6 classes, 16 orders, 48 families, 95 species were identified on group of benthic macroinvertebrates. The species diversity index and the species richness index were the highest in Topyung region and it was 3.222 and 10.216 respectively. The two species, Cercion calamorum and Cloeon dipterum were quantitatively collected for 9 months. The changes of body lengths of 50 individuals were recorded and the advanced growth on the two species was expected from present study.