• Title/Summary/Keyword: 통합수자원관리

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Correlationship Analysis of Physical Stream Assessment (물리적인 하천평가 체계의 상관성 분석)

  • Kim, Ki Heung;Park, Hyun Sub
    • Proceedings of the Korea Water Resources Association Conference
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    • 2017.05a
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    • pp.546-550
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    • 2017
  • 하천의 수리 및 하도의 특성으로 대표되는 물리적 환경(하도 및 수리 특성)은 생태계 기반으로서 수질특성과 더불어 생물에 미치는 영향이 아주 크다. 따라서 하천의 물리적 환경을 진단하고 평가하는 경우에는 상 중 하류의 위치에 따른 하도의 지형학적 특성과 하천의 규모 및 유량의 크기 등에 따라 하천의 유형을 분류하고 그 유형별 특성에 따라 하천환경의 평가시스템을 구축할 필요가 있다. 1980년 후반 이후에는 세계 각국에서 환경보전, 하천복원 및 하천관리 등 종합적인 하천공학적 관점에서 적용할 수 있는 하천분류체계가 제시되었으며 1990년대 이후 선진국들은 정성적 또는 정량적인 하천의 서식환경 평가시스템을 구축하여 적용하고 있으며 대표적으로 정량적 평가시스템을 운영하는 국가는 독일과 미국이고, 정성적 평가시스템을 운영하는 국가는 영국이며, 호주는 영국과 미국의 평가시스템을 통합한 시스템을 운영하고 있다. 한편, 국내에서는 하천환경에서 생태계 기반인 하천의 물리적 특성(구조)에 대한 평가 및 진단 절차도 없이 시행되고 있는 사례가 대부분이다. 또한 지금까지는 하천의 자연도 평가 연구 등에서 선진국들의 하천환경평가시스템을 여과 없이 적용함으로써 국내의 하천특성을 제대로 반영하지 못하는 문제점을 노출하고 있다. 따라서 국내 하천의 물리환경 평가시스템에서는 생물 서식의 기반이 되는 하천의 하도지형 특성 및 수리특성을 반영할 수 있어야 한다. 하천평가에 앞서 하천유형 분류에 따른 하도특성은 하상경사에 따라서 급경사 하천(high-gradient stream), 중경사 하천(mid-gradient stream), 완경사 하천(low-gradient stream)으로 구분하였으며 하천의 물리환경 평가시스템의 평가영역 및 평가지표는 정량적 평가시스템을 운영하는 독일(LAWA, 2004)과 미국(EPA, 2004)의 연구결과를 참고하여 공통지표를 추출하고, 우리나라의 하천이용 및 정비현황을 반영하여 하천유형을 3가지로 분류하고 각 하천유형에 대하여 3개 영역 10개 평가지표를 5개 등급으로 구분하여 평가시스템을 구축하였다. 하천에 대한 하천 지형특성과 현황을 조사할 항목은 수리 및 하도영역의 6개 항목, 하안영역의 2개 항목, 하천교란 영역 2개 항목으로 3개 영역으로 구분해서 평가하고 그 점수에 따라 1등급은 매우좋음(1등급)상태의 $20>{\sim}18{\geq}$점, 좋음(2등급)상태의 $18>{\sim}14{\geq}$점, 보통(3등급)상태의 $14>{\sim}8{\geq}$점, 나쁨(4등급)상태의 $8>{\sim}14{\geq}$점, 매우나쁨(5등급)상태의 4>점으로 등급을 산정하였다. 매우 좋음의 1등급은 참조하천이며 좋음~매우나쁨의 2등급~5등급은 비교하천으로 구분하였으며 보통보다 높은 경우는 자연하천, 낮은 경우는 인공하천으로 나누어 서식처 기반에 따라 평가체계를 구축하였다. 한국형 하천환경 물리평가 체계가 확실히 구축되기 위해서는 각자의 평가 등급이 적절하게 평가 되는지를 검증해야 하기 때문에, 본 연구에서는 하천유형별 자연하천과 인공하천을 비교 분석하였고 평가 영역별 평가지표를 기준으로 상관분석을 통한 상관성을 분석하고 더 나아가 가중치의 적절성 및 각각의 등급에 미치는 영향을 검토하고자 한다.

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Evaluating reliabilities of canal discharges by reservoir water balances (저수지 물수지에 의한 수로 공급량의 신뢰도 평가)

  • Seok Kyun Yu;Jaekyoung Noh
    • Proceedings of the Korea Water Resources Association Conference
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    • 2023.05a
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    • pp.128-128
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    • 2023
  • 우리나라 농업용 저수지는 저수량만을 참조하여 운영한다. 이러한 현실을 개선하기 위해, 유입량을 고정시키고 저수지 물수지 분석에 의해 방류량을 생산하는 체계를 구축했다. 2018년부터 2021년까지 총저수량 142만m3의 옥서저수지, 106만m3의 홍동저수지에 적용하여 일별로 저수량을 모의하여 관측값과 비교하고, 저수지 물수지 분석에 의해 실시간 계측되는 수로유량의 신뢰도를 평가하였다. 장기간의 계측 자료를 보유하고 있는 인근 다목적댐인 보령댐의 운영자료(2018~2021)를 이용하여 유입량 모형의 매개변수(α=3.500)를 결정하고, 저수지 유입량을 모의한 결과 NSE 0.854, R2 0.858의 높은 신뢰도를 얻었다. 유입량을 고정시키고, 저수지 물수지 분석에 의해 방류량을 계산한 결과 옥서저수지는 일최대 방류량 5.7m3/s, 일평균 0.2m3/s, 홍동저수지는 각각 5.9m3/s, 0.2m3/s로 나타났다. 총방류량을 측정 수로유량과 여수로 방류량으로 분할하고, 저수지 물수지 분석에 의해 수로유량의 신뢰도를 평가한 결과 옥서저수지는 R2가 0.771, 일평균 저수위 오차 88.6cm, 일평균 저수량 오차 9.4%, 홍동저수지는 R2가 0.086, 일평균 저수위 오차 69.9cm, 일평균 저수량 오차 18.0%로 오차가 크게 나타났다. 저수지 수위가 만수위(FWL) 이하일 때는 여수로 방류량을 0으로 하여 총방류량을 여수로 방류량과 수로유량으로 분할한 후, 물수지 분석에 의해 신뢰도를 평가한 결과, 옥서저수지의 경우 R2는 0.941, 일평균 저수위 오차 2.6cm, 일평균 저수량 오차 0.35%를 나타내, 신뢰도가 크게 증가했다. 그러나 홍동저수지의 경우는 R2는 0.521, 일평균 저수위 오차 2.2cm, 일평균 저수량 오차1.02%를 나타냈지만, 낮은 신뢰도를 보였다. 측정 수로유량의 신뢰도는 두 저수지 모두 낮게 나타났다. 수로유량 조정을 통해 옥서저수지의 신뢰도는 향상 시킬 수 있었지만 홍동저수지의 경우는 향상 시킬 수 없었다. 이는 여수토 비상수문조작 실적과 저수지 사통 수문 조작 실적이 없어, 그 결과를 정확히 반영할 수 없었기 때문인 것으로 결론을 내렸다.

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Survey of coastal topography using images from a single UAV (단일 UAV를 이용한 해안 지형 측량)

  • Noh, Hyoseob;Kim, Byunguk;Lee, Minjae;Park, Yong Sung;Bang, Ki Young;Yoo, Hojun
    • Journal of Korea Water Resources Association
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    • v.56 no.spc1
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    • pp.1027-1036
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    • 2023
  • Coastal topographic information is crucial in coastal management, but point measurment based approeaches, which are labor intensive, are generally applied to land and underwater, separately. This study introduces an efficient method enabling land and undetwater surveys using an unmanned aerial vehicle (UAV). This method involves applying two different algorithms to measure the topography on land and water depth, respectively, using UAV imagery and merge them to reconstruct whole coastal digital elevation model. Acquisition of the landside terrain is achieved using the Structure-from-Motion Multi-View Stereo technique with spatial scan imagery. Independently, underwater bathymetry is retrieved by employing a depth inversion technique with a drone-acquired wave field video. After merging the two digital elevation models into a local coordinate, interpolation is performed for areas where terrain measurement is not feasible, ultimately obtaining a continuous nearshore terrain. We applied the proposed survey technique to Jangsa Beach, South Korea, and verified that detailed terrain characteristics, such as berm, can be measured. The proposed UAV-based survey method has significant efficiency in terms of time, cost, and safety compared to existing methods.

Status of Groundwater Potential Mapping Research Using GIS and Machine Learning (GIS와 기계학습을 이용한 지하수 가능성도 작성 연구 현황)

  • Lee, Saro;Fetemeh, Rezaie
    • Korean Journal of Remote Sensing
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    • v.36 no.6_1
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    • pp.1277-1290
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    • 2020
  • Water resources which is formed of surface and groundwater, are considered as one of the pivotal natural resources worldwide. Since last century, the rapid population growth as well as accelerated industrialization and explosive urbanization lead to boost demand for groundwater for domestic, industrial and agricultural use. In fact, better management of groundwater can play crucial role in sustainable development; therefore, determining accurate location of groundwater based groundwater potential mapping is indispensable. In recent years, integration of machine learning techniques, Geographical Information System (GIS) and Remote Sensing (RS) are popular and effective methods employed for groundwater potential mapping. For determining the status of the integrated approach, a systematic review of 94 directly relevant papers were carried out over the six previous years (2015-2020). According to the literature review, the number of studies published annually increased rapidly over time. The total study area spanned 15 countries, and 85.1% of studies focused on Iran, India, China, South Korea, and Iraq. 20 variables were found to be frequently involved in groundwater potential investigations, of which 9 factors are almost always present namely slope, lithology (geology), land use/land cover (LU/LC), drainage/river density, altitude (elevation), topographic wetness index (TWI), distance from river, rainfall, and aspect. The data integration was carried random forest, support vector machine and boost regression tree among the machine learning techniques. Our study shows that for optimal results, groundwater mapping must be used as a tool to complement field work, rather than a low-cost substitute. Consequently, more study should be conducted to enhance the generalization and precision of groundwater potential map.

The Background and Direction of R&D Project for Advanced Technology of Wastewater Treatment and Reuse (하.폐수 고도처리 기술개발사업 추진배경과 개발방향)

  • Kim, Ji-Tae;Hwang, Hae-Young;Hong, Byung-Pyo;Byun, Hong-Sik
    • Membrane Journal
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    • v.21 no.3
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    • pp.277-289
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    • 2011
  • Since 1980s, wastewater treatment facilities in Korea have been rapidly expanded by 90 percent as the government invested them continuously. Considering social and environmental factors such as the needs of alternative water resources for water shortages, energy saving and new energy production sources for decrease of greenhouse gases, and the demand for the improvement of the water quality in rivers and lakes, advanced technologies in wastewater treatment are essential in the 21st century. In this aspect, new conceptual technology is systematically combined with the advanced treatment technology such as the control and treatment technology of hazardous and toxic material, customized reusing skill, and energy saving/recovery technology. The new R&D project for advanced technology of wastewater treatment and reuse will focus on these advanced technologies which will improve the water quality and foster the competitiveness in world environmental markets, building a solid foundation particularly in the market of developing countries. The project will be divided up into high quality reusing of wastewater, energy self-sufficiency, and integrated management system. It will be carried out for five years, 2011~2015, as Phase I.

A Study on the Design of Data Collection System for Growing Environment of Crops (작물 근권부 생장 환경 Data 수집 시스템 설계에 관한 연구)

  • Lee, Ki-Young;Jeong, Jin-Hyoung;Kim, Su-Hwan;Lim, Chang-Mok;Lee, Sang-Sik
    • The Journal of Korea Institute of Information, Electronics, and Communication Technology
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    • v.11 no.6
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    • pp.764-771
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    • 2018
  • Domestic and foreign agricultural environments nowadays are undergoing various changes such as aging of agricultural population, increase of earned population, rapid climate change, diversification of agricultural product distribution structure, depletion of water resources and limited cultivation area. In order to respond to various environmental changes in recent agriculture, practical use of Smart Greenhouse to easily record, store and manage crop production information such as crop growing information, growth environment and agriculture work log, Interest is growing. In this paper, we propose a system that collects the situation information necessary for growth such as temperature, humidity, solar radiation, CO2 concentration, and monitor the collected data, which can be measured in the rhizosphere of the crop. We have developed a system that collects data such as temperature, humidity, radiation, and growth environment data, which are measured by data obtained from the rhizosphere measuring section of a growing crop and measured by a sensor, and transmitted to a wireless communication gateway of 400 MHz. We developed the integrated SW that can monitor the rhythm environment data and visualize the data by using cloud based data. We can monitor by graph format and data format for visualization of data. The existing smart farm managed crops and facilities using only the data within the farm, and this study suggested the most efficient growth environment by collecting and analyzing the weather and growth environment of the farms nationwide.

A Estimation Study on Water Integration Management Model using Water-Energy-Food-Carbon Nexus - Focused on Yeongsan River - (물-에너지-식량-탄소 넥서스를 이용한 통합물관리 모델 평가 연구 - 영산강 수계를 중심으로 -)

  • Na, Ra;Park, Jin-hyeon;Joo, Donghyuk;Kim, Hayoung;Yoo, Seung-Hwan;Oh, Chang-Jo;Lee, Sang-hyun;Oh, Bu-Yeong;Hur, Seung-oh
    • Journal of Korean Society of Rural Planning
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    • v.29 no.1
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    • pp.37-49
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    • 2023
  • Active attention and effort are needed to develop an integrated water management system in response to climate change. In this study, it proposed models for cross-use of agricultural water and river maintenance water using sewage treatment water as an integrated water management system for the Yeongsan River. The impact of the integrated water management models was assessed by applying the concept of Nexus, which is being presented worldwide for sustainable resource management. The target year was set for 2030 and quantitatively analyzed water, energy, land use and carbon emissions and resource availability index by integrated water management models was calculated by applying maximum usable amount by resource. An integrated water management system evaluation model using the Nexus concept developed in this study can play a role that can be viewed in a variety of ways: security and environmental impact assessment of other resources. The results of this research will be used as a foundation for the field of in the establishment of a policy decision support system to evaluate various security policies, as we analyzed changes in other factors according to changes in individual components, taking into account the associations between water, energy, food, and carbon resources. In future studies, additional sub-models need to be built that can be applied flexibly to changes in the future timing of the inter-resource relationship components.

Estimation of irrigation return flow from paddy fields on agricultural watersheds (농업유역의 논 관개 회귀수량 추정)

  • Kim, Ha-Young;Nam, Won-Ho;Mun, Young-Sik;An, Hyun-Uk;Kim, Jonggun;Shin, Yongchul;Do, Jong-Won;Lee, Kwang-Ya
    • Journal of Korea Water Resources Association
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    • v.55 no.1
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    • pp.1-10
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    • 2022
  • Irrigation water supplied to the paddy field is consumed in the amount of evapotranspiration, underground infiltration, and natural and artificial drainage from the paddy field. Irrigation return flow is defined as the excess of irrigation water that is not consumed by evapotranspiration and crop, and which returns to an aquifer by infiltration or drainage. The research on estimating the return flow play an important part in water circulation management of agricultural watershed. However, the return flow rate calculations are needs because the result of calculating return flow is different depending on irrigation channel water loss, analysis methods, and local characteristics. In this study, the irrigation return flow rate of agricultural watershed was estimated using the monitoring and SWMM (Storm Water Management Model) modeling from 2017 to 2020 for the Heungeop reservoir located in Wonju, Gangwon-do. SWMM modeling was performed by weather data and observation data, water of supply and drainage were estimated as the result of SWMM model analysis. The applicability of the SWMM model was verified using RMSE and R-square values. The result of analysis from 2017 to 2020, the average annual quick return flow rate was 53.1%. Based on these results, the analysis of water circulation characteristics can perform, it can be provided as basic data for integrated water management.

A Study on Design Education Re-engineering by Multi-disciplinary Approach (다학제적 접근을 통한 대학디자인 교육혁신 프로그램 연구)

  • Lee, Soon-Jong;Kim, Jong-Won;Chu, Wu-Jin;Chae, Sung-Zin;Yoon, Su-Hyun
    • Archives of design research
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    • v.20 no.3 s.71
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    • pp.299-314
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    • 2007
  • For the past 20 years, the growth and development of university-design-educational institutes contributed to the industrial development of our country. Due to the technological fluctuation and changes in the industrial structure in the latter half of the 20th century, the enterprise is demanding professionally-oriented design manpower. The principle which appears from instances of the advanced nations is to accommodate the demands in social changes and apply them to educational design programs. In order to respond promptly to the industrial demand especially, the advanced nations adopted "multidisciplinary design education programs" to lead innovation in the area of design globally. The objective of the research consequently is to suggest an educational system and a program through which the designer can be educated to obtain complex knowledge and the technique demanded by the industry and enterprise. Nowadays in order to adapt to a new business environment, designers specially should have both the knowledge and techniques in engineering and business administration. We suggest that the IPDI, a multidisciplinary design educational system and program is made up of the coordinated operation of major classes, on-the-job training connection, educational system for research base creation, renovation design development program for the application and the synthesis of alternative proposals about the training facility joint ownership by connecting with the education of design, business administration and engineering.

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Building a Data Model of the River Thematic Maps (하천주제도 데이터모델 설계에 관한 연구)

  • Kim, Han-Guck;Song, Yonh-Cheol;Kim, Kye-Hyun
    • Journal of Korean Society for Geospatial Information Science
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    • v.11 no.4 s.27
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    • pp.35-43
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    • 2003
  • Currently, the government has been driving numerous projects to build the e-government which can enable limitless access and utilization of the information through the accomplishment of the real time based various administrative services. In water resource field, a project to generate digital river thematic maps has been undergoing as a part of the computerization projects. As a partial results, the RIMGIS project has been completed and generation of the various river thematic maps has been required to fully utilize the DB built from RIMGIS project. For the effective generation of the thematic maps, a data model needs to be developed. A data model has been developed in this study to provide more efficient method to generate the thematic maps utilizing existing DB. The data model proposed from this study has defined the relationships between core feature data and framework Data along with relationships among data elements to represent the rivers in the real world more accurately. The core feature data and framework layers have been defined based on the survey of the domestic and foreign case studies along with requirement analysis of the users in the water resource field. The proposed core feature data has been defined based on the minimum unit of 'class', and the relationship between classes has been established based on the ArcGIS Hydro Data Model for the integrated processing of the river information. The proposed spatial data model can be judged to contribute establishing more efficient generation methodology of the river thematic maps.

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