• 제목/요약/키워드: Eco-river restoration

검색결과 57건 처리시간 0.025초

저영향개발기법 적용을 통한 비점오염원 저감 및 비용효율 분석에 관한 실증적 연구 - 울산광역시를 대상으로 - (Analyzing the Efficiency of LID Technique for Urban Non-point Source Management - Focused on City of Ulsan in Korea -)

  • 임용균;정주철;신현석;하경준
    • 한국환경복원기술학회지
    • /
    • 제17권2호
    • /
    • pp.1-14
    • /
    • 2014
  • The purpose of this study is to identify the efficiency of LID technologies for controlling non-point source pollution from urban areas. The recent technical responses to managing water resource and urban areas according to the influence of climate change is an important national policy, along with green growth. Through various reference studies reasonable ways to consider a wholistic plan on urban-eco-friendly river management, the Low Impact Development (LID) as the adequate river management method is being undertaken in foreign countries to technically apply to urban plans. However, the LID is at the initial stage in Korea, with no specific studies implemented. Thus, this study explored whether LID technologies can be efficient measures to control non-point source pollution on the cost side. Ulsan's Namgu and Bukgu have been chosen as case studies that illustrate the efficiency of the LID technologies. On investigation, if LID technologies are designed properly, the efficiency of them is expected to higher than that of sewage treatment plant.

1960년대 후반 청주 도심 내 물길에 관한 연구 (A Study on the Waterways in Traditional Urban Area of Late 1960s Cheongju Korea)

  • 김태영
    • 한국농촌건축학회논문집
    • /
    • 제17권2호
    • /
    • pp.27-34
    • /
    • 2015
  • As part of the waterway restoration to renew traditional urban area, this paper is to assume and research Gyoseocheon(Gyoseo waterway) in Late 1960s Cheongju Korea. The main stream of Gyoseocheon flew from Sangjwagol(the head of the valley) of Uam Mt. to the north gate under Cheongju castle at first, and meandering from Sangdang Park, flew through Sudongseongdang and Bangadari Road to Musimcheon since open railroad of 1920s. This waterway, the eco-friendly figure of Gyoseocheon, that flew to inside the downtown with a planted tree and that is open space was so. The sub stream of Gyoseocheon originated in Seoundong and Tapdong were divided into two parts. One was to join the main stream of Gyoseocheon on Sangdang Park via Munhwadong, and the other was to join the sub stream of Musimcheon at northwest corner via south and west gate of Cheongju castle. This waterway as branch sewer were built into the road culvert.

인공 수초재배섬에서 세균의 활성과 세균 군집 구조 (The Activity and Structure of Bacterial Community within Artificial Vegetation Island (AVI))

  • 전남희;박혜경;변명섭;최명재
    • 한국물환경학회지
    • /
    • 제23권5호
    • /
    • pp.676-682
    • /
    • 2007
  • The bacterial number, extracellular enzyme activities and structure of bacterial community which are major constituent of aquatic ecosystem within the artificial vegetation island (AVI) were compared to those of the nearby pelagic lake waters in order to evaluate the possibility of the AVI as a eco-technological measure for water quality improvement and restoration of littoral zone in man-made reservoirs. There was not a significant difference in the total number of bacteria, but the number of active (viable) bacteria within the AVI was about 0.7 to 4.1 times higher than nearby pelagic lake water. The ratio of the number of active bacteria versus the total number of bacteria was also higher in the AVI than nearby pelagic lake water. The activities of ${\beta}$-glucosidase and phosphatase were 1.0 to 13.1 and 0.8 to 7.3 times higher respectively in the AVI than nearby pelagic lake water, showing that microorganisms were more active within the AVI. The bacterial communities of the two waters, examined by FISH method, did not indicate a clear difference in the springtime when the growth of macrophytes was immature, but during summer and fall it showed a clear difference indicating the formation of distinct bacterial community within the AVI compared to nearby lake water. From the results of this study, we conclude that AVI can contribute to make up the littoral ecosystem which show rapid cycling of matters through active detritus food chain in the dam reservoirs which have unstable aquatic ecosystem due to short hydraulic residence time and to strengthen the self-purification capacity of the lake.

생태수리학의 의의와 전망 (Ecohydraulics - the significance and research trends)

  • 우효섭
    • 한국수자원학회논문집
    • /
    • 제53권10호
    • /
    • pp.833-843
    • /
    • 2020
  • 생태수리학은 수생생태학을 한 축으로, 지형학, 수문학, 유체동력학 등을 또 다른 한 축으로 1990년대 초 탄생한 다학제간 연구분야이다. 생태수리학을 흐름, 유사이송, 지형, 동식물, 수리구조물 등 5가지 주요인자 간 상호 관계나 작용을 기준으로 구분하면 서식처수리( 환경유량 포함), 식생수리, 생태통로수리, 부영양화수리, 생태복원수리의 5개로 나눌 수 있다. 지난 20여 년간 관련 국제논문집에 게재된 생태수리학 관련연구는 물고기반응, 수리모델링, 물리서식처반응 분야에 치우쳤으며, 이는 아직 진정한 학제 간 상호반응적 연구단계로 진입하지 못했음을 의미한다. 한편 1997년 이후 한국수자원학회 논문집에 게재된 생태수리학 관련논문 수는 전체의 3% 수준에 불과하며, 생태수리학과 더 밀접한 응용생태공학회 논문집에 게재된 논문 수도 20% 수준에 머물렀다. 이 두 논문집에 게재된 논문들은 주로 서식처수리, 식생수리, 생태복원수리 분야이었으며, 난류모의를 포함한 동적 흐름모의, 동물유영모의, 부영양화수리 분야는 사실상 없는 것으로 나타났다. 국내의 하천특성 및 생태수리학의 사회적 수요를 고려하여 앞으로 연구개발이 시급한 분야는 1) 국내하천 여건에 맞는 환경유량의 평가기법, 2) 화이트리버의 그린리버 변화현상을 평가할 수 있는 동적 홍수터식생모형(DFVM)의 개발, 3) 정수역 및 유수역에서 수리조건 중심으로 조류생성을 평가할 수 있는 모형개발, 4) 하천지형복원이나 소형 보/댐의 가동정지(decommissioning) 및 철거에 따른 물리/화학/생물적 영향을 평가할 수 있는 모형개발 등이다.

보존지역의 합리적 관리를 위한 철새 서식 확률지도 구축 - 부산 Eco Delta City (EDC)를 중심으로 - (Probability Map of Migratory Bird Habitat for Rational Management of Conservation Areas - Focusing on Busan Eco Delta City (EDC) -)

  • 김근한;공석준;김희년;구경아
    • 한국환경복원기술학회지
    • /
    • 제26권6호
    • /
    • pp.67-84
    • /
    • 2023
  • In some areas of the Republic of Korea, the designation and management of conservation areas do not adequately reflect regional characteristics and often impose behavioral regulations without considering the local context. One prominent example is the Busan EDC area. As a result, conflicts may arise, including large-scale civil complaints, regarding the conservation and utilization of these areas. Therefore, for the efficient designation and management of protected areas, it is necessary to consider various ecosystem factors, changes in land use, and regional characteristics. In this study, we specifically focused on the Busan EDC area and applied machine learning techniques to analyze the habitat of regional species. Additionally, we employed Explainable Artificial Intelligence techniques to interpret the results of our analysis. To analyze the regional characteristics of the waterfront area in the Busan EDC district and the habitat of migratory birds, we used bird observations as dependent variables, distinguishing between presence and absence. The independent variables were constructed using land cover, elevation, slope, bridges, and river depth data. We utilized the XGBoost (eXtreme Gradient Boosting) model, known for its excellent performance in various fields, to predict the habitat probabilities of 11 bird species. Furthermore, we employed the SHapley Additive exPlanations technique, one of the representative methodologies of XAI, to analyze the relative importance and impact of the variables used in the model. The analysis results showed that in the EDC business district, as one moves closer to the river from the waterfront, the likelihood of bird habitat increases based on the overlapping habitat probabilities of the analyzed bird species. By synthesizing the major variables influencing the habitat of each species, key variables such as rivers, rice fields, fields, pastures, inland wetlands, tidal flats, orchards, cultivated lands, cliffs & rocks, elevation, lakes, and deciduous forests were identified as areas that can serve as habitats, shelters, resting places, and feeding grounds for birds. On the other hand, artificial structures such as bridges, railways, and other public facilities were found to have a negative impact on bird habitat. The development of a management plan for conservation areas based on the objective analysis presented in this study is expected to be extensively utilized in the future. It will provide diverse evidential materials for establishing effective conservation area management strategies.

수생태계 현황 조사 및 건강성 평가결과를 활용한 수생태계 훼손원인 진단체계 구축 (Establishing Diagnosis Systems for Impaired Stream Ecosystem using Stream/River Ecosystem Survey and Health Assessment)

  • 이종원;이상우;황순진;장민호;원두희;안경진;박혜진;이정아
    • 생태와환경
    • /
    • 제53권1호
    • /
    • pp.1-10
    • /
    • 2020
  • 본 연구는 훼손된 하천 수생태계의 훼손원인을 식별하고 그 전이 과정을 규명하기 위해 수생태계 훼손원인 진단체계를 구축하고 정책적 활용 가능성을 보고자 하였다. 수생태계 현황 조사 및 건강성 평가결과는 하천의 훼손에 대한 전반적인 상황을 알 수 있어 하천 복원 및 관리의 판단 근거로 사용된다. 그러나 하천이 훼손된 원인이나 훼손이 발생하게 된 전이 과정을 고려하지 못한다는 한계를 가진다. 따라서 본 연구에서는 과학적이고 체계적인 진단체계를 제안하여 훼손원인과 그 전이 과정을 규명하였다. 미국, 호주, 유럽의 사례를 분석하여 우리나라에 맞는 진단체계를 제안하였다. 총 8단계로 구성되며, 기초자료 조사, 하천 수생태계 훼손 판단, 훼손 구간 설정, 훼손 유형화 및 잠재적 훼손원인 도출, 본 조사, 주훼손원인 진단 및 최적 훼손 모델 도출, 종합분석 및 하천 복원방안으로 이루어져 있다. 이러한 진단체계는 하천 생태계의 복잡하고 다양한 특성을 고려하여 훼손원인을 파악할 수 있으며 하천 복원 및 관리 방안을 제시하여 효율적인 의사결정을 지원할 수 있다.

경남의 지방하천에 설치된 하천횡단구조물의 현황과 개선방안 (Improvement study of river-crossing structures in geyongnam prefecture)

  • 김기흥;이형래;정혜련
    • 한국수자원학회논문집
    • /
    • 제49권10호
    • /
    • pp.809-821
    • /
    • 2016
  • 연구범위는 경남의 지방하천 671개소(총연장 3,741 km)이며, 연구내용을 간략히 요약하면 다음과 같다. 하천횡단구조물의 총수는 7,730개소로 조사되었으며, 하천연장 1 km 당 구조물이 평균 2.1개소씩 설치되어 있는 것으로 나타났다. 농업용수보가 4,006 (51.82%)개소였으며, 하상 유지시설(낙차공)은 3,670 (47.48%)개소였고 및 나머지(하상도로 등)는 54 (0.70%)개소로 조사되었다. 상하류에 큰 영향을 미치는 높이 1.0 m 이상은 3,897 (51%)개소, 영향이 비교적 미미한 높이 0.5 m 이하는 1,109 (14%)개소로 분석되었다. 어도는 153 (23%)개 하천에 640 (8%) 개소에 설치되어 있는 것으로 파악되었다. 하천횡단구조물이 치수적 측면에서 홍수시 수위상승을 초래하고 생태환경적 측면에서는 생태통로를 단절시키는 등 여러 문제점을 초래하고 있었다. 따라서, 도출된 문제점을 기초로 하천횡단구조물에 대한 공학적인 몇 가지 대책을 제시하였다.

무안 창포호의 자연생태친수공간 조성을 위한 관리방안 기초 연구 (The Management Plan for the Ecological Waterfront Space of Muan Changpo Lake)

  • 서정영
    • 한국환경복원기술학회지
    • /
    • 제22권3호
    • /
    • pp.15-30
    • /
    • 2019
  • Changpo Lake was created as a part of a land reclamation for refugee self-helping projects. It shows characteristics of a fresh water lake, and still retains the early appearance of reclamation that surrounding regions have not been developed into farm lands. Shallow wetland has formed around the lake, which provides great conditions for diverse lives, and surrounding earthiness is favorable for growth of vegetation and restoration of the ecosystem. However, as facilities of the Muan International Airport nearby Changpo Lake are expanding and barns are being constructed, artificialness is gradually increasing. Particularly, since pollution sources such as sport facilities, farm lands and barns are scattered around Changpo Lake, pollutants are flowing in constantly. Accordingly, the results for setting up management areas according to the spatial characteristics and creating natural ecological spaces near Changpo Lake, Taebongcheon stream and Hakgyecheon stream are as follows. First, the creation of a natural eco-friendly waterfront space should be promoted by securing the health of the aquatic ecosystem and restoring species and the ecosystem. In addition, a consultative body needs to be formed to lead local residents to participating in river investigation and monitoring, maintenance, and management through role sharing. Second, the basic direction of the spatial management plan is to keep the unique charm of Changpo Lake, maintain harmony with nature, create diverse waterfront areas, and secure the continuity of Changpo Lake and inflow streams. Moreover, the area should be divided into three zones such as a conservation zone, a restoration zone and a waterfront zone, and for each zone, the preservation of vegetation, the creation of ecological wetlands and restoration of the ecotone and ecological nature need to be promoted. Third, facilities and activity programs for each space of Changpo Lake should be operated for efficient management of protected areas. In order to suit the status of each space, biological habitats, water purification spaces, experiential and learning spaces, and convenience and rest spaces should be organized and designated as research, monitoring, education, and tourism areas. Accordingly, points of interest should be set up within the corresponding area. In this study, there are many parts that need to be supplemented for immediate implementation since the detailed plans and project costs for the promotion of programs by area are not calculated. Therefore, it is necessary to make detailed project plans and consider related projects such as water quality, restoration of habitats, nature learning and observation, and experience of ecological environments based on the categories such as research, monitoring, education and tourism in the future.

유기농업단지 주요경관요소의 경관형용사 특성에 관한 연구 (A Study on the Landscape adjective characteristics for the Major Landscape Elements in Organic farming)

  • 안필균;엄성준;김남춘;김상범
    • 한국환경복원기술학회지
    • /
    • 제23권4호
    • /
    • pp.69-84
    • /
    • 2020
  • Up to date, the majority research on the major landscape elements in organic farming has been mainly focused on the practice of seeking efficiency. The problem is that this type of study contributes to polluting the agricultural environment and damaging the ecological circulation system. As an alternative, there is a growing body of research on organic farming, but it is not widely applied that research on how to manage the landscape considering the scenic characteristics of farming villages practicing organic farming. Hence, in this paper we utilized landscape adjectives as a way to enhance the objectivity of the organic agricultural complex landscape assessment. More specifically, not only this study used a landscape image of an organic agricultural complex to identify a landscape adjective suitable for the landscape elements but also this study confirmed the suitability of landscape adjectives comparing to the opinions of experts and the public. To carry out, this study performed the experts survey which is composed of 12 major landscape elements, including rice paddies and fields, monoculture and diverse crops, dirt roads, windbreak trees, accent planting, dum-bung(small pond), natural small river, natural waterways, plastic film houses, one-storied houses, and pavilion. As a result of deriving the landscape adjectives from the main landscape elements, there were nine landscape adjectives that were consistent with experts and the public, including "clear" and "Artless" for rice paddies and fields, while the mismatched landscape adjectives were 'traditional'. The accent planting was a combination of landscape adjectives such as 'natural' and 'clear', while the windbreak trees was a consensus of all landscape adjectives. Only two adjectives, 'friendly' and 'wild', agreed on the dirt load, nine dum-bung(small pond), ten natural small river, nine duckery, eight one-storied houses, 10 pavilion, eight monoculture and diverse crops, and three natural waterways. The most common landscape adjectives were windbreak trees, pavilions, and natural small river, all 10 landscape adjectives. However, it is considered that only three of the 10 landscape types on the dirt road and the natural number are matched. Thus, additional management measures will be needed. In addition, it was analyzed that the most common landscape adjectives were "Artless" and "friendly" 13 times. The landscape adjectives of the organic farming complex responded by experts were analyzed to be suitable for natural, clear, zingy, silent, traditional, artless, friendly, wild and Leisurely, and consistent with the general public's opinion.

다중시기 Sentinel-1 픽셀-빈도 기법을 통한 고창 인천강 하구 습지의 지형 변화 매핑 (Mapping Topography Change via Multi-Temporal Sentinel-1 Pixel-Frequency Approach on Incheon River Estuary Wetland, Gochang, Korea)

  • 백원경;이명진;유하은;김정철;유주형
    • 대한원격탐사학회지
    • /
    • 제39권6_3호
    • /
    • pp.1747-1761
    • /
    • 2023
  • 습지는 일년 중 일정기간 물에 잠겨있거나 젖어있는 땅을 의미한다. 습지는 생물다양성 유지와 환경오염물질을 정화하는 역할을 수행하고 있다. 습지의 경계와 면적 변화에 대한 정량적인 자료를 필요로 하고 있다. 본 연구에서는 Sentinel-1 장기적인 수체 탐지 결과를 활용하여 습지의 시간에 따른 지형 변화를 매핑하고자 한다. 이를 위하여 운곡 습지와 연안 습지를 연결하는 인천강 하구 습지를 연구지역으로 설정하였다. 또한 2014년 10월 부터 2023년 3월 사이의 Sentinel-1 상향궤도 영상 196장을 수집하여 장기적인 면적 변화를 분석하였다. 픽셀-빈도기법을 적용하여 2020년을 기점으로 지형 변화를 산출하였을 때에 수위구간 2-3 m, 1-2 m, 0-1 m 그리고 0 m 이하 구간에서 각각 +0.0195, 0.0016, 0.0075 그리고 0.0163 km2의 면적 증가를 확인할 수 있었다. 이와 같은 사실에 따라 해당 지역에서의 습지 복원 사업은 유효한 것으로 판단된다.