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백종석,김치영,이기성,강현웅,송재현,Baek, Jongseok,Kim, Chiyoung,Lee, Kisung,Kang, Hyunwoong,Song, Jaehyun 한국수자원학회 2020 한국수자원학회논문집 Vol.53 No.12
For integrated water management, it is essential to secure basic data such as the amount of agricultural water intake. The river water intake through the intake weir is carried out through the agricultural irrigation canal, and a method for measuring the quantity of water intake is required to suit the characteristics of the measuring points. In this study, the accuracy of the calculated flow data was determined by applying a microwave water surface current meter. The microwave water surface current meter is a method of calculating surface velocity using doppler effect, which is mainly used in high-velocities situations such as flood. Surface velocity is difficult to represent the average velocity of the entire section at low dicharges or high wind speeds, it is considered to be low in continuous utilization throughout the year, and it is necessary to verify whether the measurement using an microwave water surface curren meter is appropriate in agricultural irrigation canal. The data measured with an microwave water surface curren meter were compared with the actual flow data to calculate the intake data in agricultural irrigation canal. In agricultural irrigation canal, the low-level discharge calculated using an microwave water surface current meter at a minimum velocity of about 0.3 m/s and a minimum discharge of about 1.0 m3/s or higher was found to have a high tendency and accuracy compared to the standard discharge, especially when the high discharge was high. Although effective results can be obtained in terms of quantity at low discharge, it is deemed that subsequent studies are needed to calculate the average discharge of the cross section at low discharge, given that the trend of data is unstable. Through this study, it is suggested that it is appropriate to calculate the amount of water intake through the microwave water surface current meter in artificial waterways with a certain discharge or higher, so it is expected to be widely distributed as a method for measuring river water intake.
하천수 사용량 계측을 위한 개수로에서의 직접 계측방법 비교 연구
백종석,김치영,이기성,강현웅,송재현,Baek, Jongseok,Kim, Chiyoung,Lee, Kisung,Kang, Hyunwoong,Song, Jaehyun 한국방재안전학회 2020 한국방재안전학회 논문집 Vol.13 No.4
Continuous and accurate instrument of river water usage is needed for sustainable river water management. Although the instrument methods applicable to each point of use of river water are different, more precise direct instrument methods are required at the point of major open channel. Users of river water should select appropriate direct instrument methods to measure usage, but there is a lack of standards and verification research. In this study, the H-Q rating curve method, ultrasonic method, and microwave method were applied directly to the test basin in the upper basin of Mangyeong river, and the accuracy of measurement data was evaluated by comparing absolute error between discharge data calculated by instrument method. When comparing the calculated discharge of point units, the ultrasonic method showed the best results of the actual measurement. Through continuous instrument, the sum of the daily and monthly units was compared, and the ultrasonic and microwave methods were shown to be highly accurate. Based on the results of this study, it is hoped that the appropriate direct measurement method can be selected according to the importance of the river water use facility, considering that the ultrasonic method and the microwave method are relatively costly compared to the water level-flow relationship method. 지속가능한 하천수 관리를 위해서는 연속적이고 정확한 하천수 사용량 계측자료가 필요하다. 하천수 사용지점별로 적용가능한 계측 방법이 상이하나, 일정규모 이상의 주요 개수로 지점에서는 보다 정밀한 직접 계측방법이 요구된다. 하천수 사용자는 사용량 계측을 위해 적정한 직접 계측방법을 선정해야 하는데, 이에 대한 표준 및 검증 연구가 부족한 실정이다. 본 연구에서는 만경강 상류의 시험유역에 직접 계측방법인 수위-유량관계법, 초음파법, 전자파법을 적용하였고, 계측방법별로 산정된 유량자료간의 절대오차 비교를 통해 계측자료의 정확도를 비교 평가하였다. 점단위 산정유량 비교시 초음파법이 실측값에 가장 근사한 결과를 보였다. 연속적인 계측을 통해 일단위와 월단위의 총량을 비교하였고, 초음파법과 전자파법이 정확도가 높은 것으로 나타났다. 본 연구의 결과를 토대로 초음파법과 전자파법이 수위-유량관계법에 비해 비교적 높은 비용이 투입되는 것을 감안하여 하천수 사용시설의 중요도에 따라 적정한 직접 계측방법을 선정할 수 있기를 기대한다.
백종석 ( Baek Jongseok ),김형산 ( Kim Hyungsan ),신현석 ( Shin Hyunsuk ),김재문 ( Kim Jaemoon ),박경재 ( Park Kyungjae ) 한국물환경학회 2018 한국물환경학회지 Vol.34 No.6
Torrential rain and drought are repeated due to the increase in the unpredictable fluctuating of rainfall patterns. It is time for stabilize water resource management in terms of disaster prevention. Distributed control from sources is needed to minimize damages caused by torrential rains and droughts. Rain barrel can be used to reduce the runoff as they collect and store rainwater. In response to this situation, Seoul Metropolitan Government and other local governments implemented a project to support the installation of rain barrel and provided 90% of the cost of installing it in private areas. However, with limited budget, it is difficult to distribute rainwater to the city which is mostly covered by private areas. In this study, Samho-dong, Ulsan, where pilot projects of water cycle leading city are underway, analyzed the effects of reducing the runoff with respect to the amount of rainwater that can be used, and analyzed the economics of recoverable investment cost when installed. From the analysis, it was established that it is possible to show sufficient efficiency with a small capacity without the need to install large rain barrel effectively in the private sector, and to support the installation cost of less than 70 percent of the rainwater can be recovered.
백종석 ( Baek Jongseok ),이상진 ( Lee Sangjin ),신현석 ( Shin Hyunsuk ),김재문 ( Kim Jaemoon ),김형산 ( Kim Hyungsan ) 한국물환경학회 2019 한국물환경학회지 Vol.35 No.1
Urbanization has led to extreme changes in land use on urban watersheds. Most cities are becoming residential, commercial and industrial areas, making infiltration and storage of rainfall less favorable. The demand for LID (Low Impact Development) technology is increasing in order to mitigate this water cycle distortion and return to existing hydrological conditions. The LID technique is effective in reducing runoff by permeating the urban impervious area. However, considering the limit of the installation area and the financial requirement of the installation, there is not much research on the linkage of each LID component technology for optimum efficiency according to the appropriate scale. In this study, the effects of the LID facilities applied to the target site were simulated using the SWMM model, suggesting the optimal linkage method considering interconnectivity, and applying the effects as an existing installation of individual facilities. The water balance at the time of application of the LID technology, short-term and long-term rainfall event were compared. Also, the individual application and the linkage application were compared with each other. If each component technology has sufficient processing size, then linkage application is more effective than individual application.