• Title/Summary/Keyword: hydrological application

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Development of RESTful Web Service for Loading Data focusing on Daily Meteorological Data (데이터 로딩 자동화를 위한 RESTful 웹서비스 개발 - 일별 기상자료 처리를 중심으로 -)

  • Kim, Taegon;Lee, JeongJae;Nam, Won-Ho;Suh, Kyo
    • Journal of The Korean Society of Agricultural Engineers
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    • v.56 no.6
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    • pp.93-102
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    • 2014
  • Generally data loading is a laborous job to develop models. Meteorological data is basic input data for hydrological models, it is provided through websites of Korea Meteorological Administration (KMA). The website of KMA provides daily meteorological observation data with tabular format classified by years, items, stations. It is cumbersome to manipulate tabular format for model inputs such as time series and multi-item or multi-station data. The provider oriented services which broadcast restricted formed information have caused inconvenient processes. Tim O'Reilly introduces "Web 2.0" which focuses on providing a service based on data. The top ranked IT companies such as google, yahoo, daum, and naver provide customer oriented services with Open API (Application Programming Interface). A RESTful web service, typical implementation for Open API, consists URI request and HTTP response which are simple and light weight protocol than SOAP (Simple Object Access Protocol). The aim of this study is to develop a web-based service that helps loading data for human use instead of machine use. In this study, the developed RESTful web service provides Open API for manipulating meteorological data. The proposed Open API can easily access from spreadsheet programs, web browsers, and various programming environments.

Estimation of Stormwater Interception Rate for Bio-retention LID Facility (생태저류지 LID 시설의 강우유출수 처리비 산정)

  • Choi, Jeonghyeon;Lee, Okjeong;Kim, Sangdan
    • Journal of Korean Society on Water Environment
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    • v.33 no.5
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    • pp.563-571
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    • 2017
  • Because of the rapid progress of urbanization in recent decades, the proportion of impervious areas in cities has increased. As a result, hydrological properties of urban streams have changed and non-point pollution sources have increased, that have had considerable influence on human life and ecosystems. To manage these situations, application of non-point pollution reduction facilities and LID facilities are expanding recently. In this study, it is investigated if rainfall interception rate used in design of non-point pollution reduction facilities can be applied to design of LID facilities. For this purpose, EPA SWMM is constructed for part of Noksan National Industrial Complex area wherein long-term observed storm water data can be obtained and storm water interception rates for various design capacities of a bio-retention LID facility reservoirs are estimated. While sensitivity of storm water interception rate according to design specifications of bio-retention facility is not large, sensitivity of storm water interception rate according to regional rainfall characteristics is relatively large. As a result of comparing present rainfall interception rate estimation method with the one proposed in this study, the present method is highly likely to overestimate performance of the bio-retention facility. Finally, a new storm water interception rate formula for bio-retention LID facility is proposed.

Application of Streamflow Drought Index using Threshold Level Method (임계수준 방법을 이용한 하천수 가뭄지수의 적용)

  • Sung, Jang Hyun;Chung, Eun-Sung
    • Journal of Korea Water Resources Association
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    • v.47 no.5
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    • pp.491-500
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    • 2014
  • To estimate the severity of streamflow drought, this study introduced the concept of streamflow drought index based on threshold level method and Seomjingang Dam inflow was applied. Threshold levels used in this study are fixed, monthly and daily threshold, The $1^{st}{\sim}3^{rd}$ analysis results of annual drought, the severe hydrological droughts were occurred in 1984, 1988 and 1995 and the drought lasted for a long time. Annual compared to extreme values of total water deficit and duration, the drought occurred in 1984, 1988, 1995 and 2001 was serious level. In the results of study, because a fixed threshold level is not reflect seasonal variability, at least the threshold under seasonal level was required. Threshold levels determined by the monthly and daily were appropriate. The proposed methodology in this study can be used to forecast low-flow and determine reservoirs capacity.

Analysis on Load of Non-point Source from Sewage Treatment Districts in Nakdong River (낙동강 유역 내 하수처리구역의 비점 배출 부하량 분석)

  • Shin, Hyun Suk;Kim, Mi Eun;Kim, Jae Moon;Jang, Jong Kyung
    • Journal of Korea Water Resources Association
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    • v.48 no.9
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    • pp.695-709
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    • 2015
  • The inflow of nonpoint pollution sources due to sustainable development and urbanization is gradually increasing and causes a diversity of water pollution. There are lots of difficulties to find a solution as the problems related to variation of hydrological and natural phenomenon. A differentiated method to estimate the nonpoint pollution sources has been proposed using rainfall and characteristics of urbanization and observed data from sewage treatment districts in the study. The types of nonpoint pollution sources on an assumption of combined sewer system have been classified as three types which are inflow of rainfall, bypass of sewage treatments, and combined sewer overflows from a river. Three types for estimation of nonpoint pollution sources applied more accurately to generate a amount of nonpoint pollution loads. This study is expecting a wide application for effective water resource management on TMDL (total maximum delivery load) unit watershed and sewage treatment districts.

Assessment of Monitored Natural Attenuation as Remediation Approach for a BTEX Contaminated Site in Uiwang City (의왕시내 BTEX 오염 부지에서의 자연 정화법 이용 적합성 고찰)

  • 이민효;윤정기;박종환;이문순;강진규;이석영
    • Proceedings of the Korean Society of Soil and Groundwater Environment Conference
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    • 1999.04a
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    • pp.149-156
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    • 1999
  • In the United States (U.S.), the monitored natural attenuation (MNA) approach has been used as an alternative remedial option for organic and inorganic compounds retained in soil and dissolved in groundwater. The U.S. Environmental Protection Agency (EPA) defines the MNA as“in-situ naturally-occurring processes include biodegradation, diffusion, dilution, sorption, volatilization, and/or chemical and biochemical stabilization of contaminants and reduce contaminant toxicity, mobility or volume to the levels that are protective of human health and the environment”. The Department of Soil Environment. National Institute Environmental Research (NIER) is in the process for demonstrating the MNA approach as a potential remedial option for the BTEX contaminated site in Uiwang City. The project is charactering the research site in terms of the nature and extend of contamination, biological degradation rate, and geochemical and hydrological properties. The microbial-degradation rate and effectiveness of nutrient and redox supplements will be determined through laboratory batch and column tests. The geochemical process will be monitored for determining the concentration changes of chemical species involved in the electron transfer processes that include methanogenesis, sulfate and iron reduction, denitrification, and aerobic respiration. Through field works, critical soil and hydrogeologic parameters will be acquired to simulate the effects of dispersion, advection, sorption, and biodegradation on the fate and transport of the dissolved-phase BTEX plume using Bioplume III model. The objectives of this multi-years research project are (1) to evaluate the MNA approach using the BTEX contaminated site in Uiwang City, (2) to establish a standard protocol for future application of the approach, (3) to investigate applicability of the passive approach as a secondary treatment remedy after active treatments. In this presentation, the overall picture and philosophy behind the MNA approach will be reviewed. Detailed discussions of the site characterization/monitoring plans and risk-based decision-making processes for the demonstration site will be included.

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Estimation of Synthetic Unit Hydrograph Using Geospatial Shape Factors and Nash Model in Mid-size Watershed (중소규모유역의 지형공간적 형상계수를 이용한 Nash 모형기반의 합성단위도 산정)

  • Kim, Jin Gyeom;Kim, Jong Min;Kang, Boo Sik
    • Journal of Korea Water Resources Association
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    • v.46 no.5
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    • pp.547-558
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    • 2013
  • Improved methodology of Synthetic Unit Hydrograph (SUH) utilized generally in hydrologic design work was suggested. In this study, regression analysis between peak hydrological data and geospatial data was applied to estimate specific peak flow and peak time for determining shape of SUH. Regression formulas for specific peak flow with respect to shape factors show higher coefficient of determination (0.73~0.81) than the ones with geospatial components only (0.52~0.69). The areal limitation of unit hydrograph application is regarded as 500~700 $km^2$. The validation through rainfall-runoff simulation shows encouraging results that relative error is 1.7~29.0%(Avg. 11.6%) for the case of using SUH developed in this study and 35.0~ 64.9% (Avg. 46.7%) for the SUH in the previous study except for the extraordinary cases.

Application of GIS for Runoff Simulation in Ungaged Basin(I): Selection of Soil Map and Landuse Map (미계측 유역의 유출모의를 위한 지리정보시스템의 응용(I) : 토양도 및 토지이용도의 선정)

  • Kim, Gyeong-Tak;Sim, Myeong-Pil
    • Journal of Korea Water Resources Association
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    • v.32 no.2
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    • pp.163-176
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    • 1999
  • Hydrology-based topographical informations generated by GIS techniques could be changed according to the selection of base map, algorithm of extraction, and so on. The purpose of this paper is to investigate the variation of SCS CN extracted by GIS technique and to propose the effective strategy for applying GIS to the rainfall-runoff simulation in ungaged basin. For experimental implementation, GIS spatial data, such as reconnaissance soil map, detailed interpretative soil map, landuse planning map and remotely sensed data(Landsat TM), were collected and generated to calculate the amount of effective rainfall in Pyungchang river basin. In applying SCS Runoff Curve Number to the test basin, the hydrological attribute data were analyzed. In addition, the characteristics of runoff responses according to the selection of GIS spatial data for SCS CN were reviewed. This study shows the applicability of GIS techniques to runoff simulation in ungaged basin by comparing with the measured flood hydrograph. It has been found that the detained interpretative soil map and remote sensing data are appropriate for calculating of SCS CN.

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Real-time blending method development of radar-based QPF and numerical weather prediction models for hydrological application (수문학적 활용을 위한 레이더와 수치예보모델 예측강우의 실시간 병합 기법 개발)

  • Yoon, Seong-Sim;Lee, Dong-Ryul
    • Proceedings of the Korea Water Resources Association Conference
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    • 2018.05a
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    • pp.99-99
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    • 2018
  • 기상이변으로 인해 국지성 호우의 발생 증가와 그로 인한 수재해 피해가 증가하고 있다. 따라서 수재해를 사전에 예측하고 저감하기 위해 비구조물적 대책인 실시간 홍수예보시스템 개발 및 운영에 관한 연구들이 수행되고 있다. 일반적으로 홍수예보시스템은 대피선행시간 확보를 위해서 초단시간 혹은 단기 수치예보모델을 수문해석모형이나 예보기법의 입력으로 활용하고 있다. 초단시간 예측은 기상레이더를 기반으로 외삽, 이류, 셀 추적 등의 기법을 활용하여 0~3시간 이내의 강수예측을 수행한다. 그러나 역학이나 물리적 과정이 동반되지 못하여 0~ 2시간 이내에서의 예측성은 높은 반면, 예측시간이 길어질수록 예측력이 낮아진다. 단기수치예보모델은 종관관측에 의존하면서 역학이나 물리과정을 동반하므로 0~6시간 혹은 12시간 이상의 예측을 수행하지만, 수치모델의 고유특성인 스핀업 등의 예측 불확실성이 내재되어 있어 예측 초기시간에서의 예측력이 낮은 한계가 있다. 따라서 강수예측의 정확도 향상을 위해 레이더와 수치예보모델의 병합기법이 필요하다. 본 연구에서는 통계분석을 통해 경험적으로 산출된 시간적 가중치를 이용한 기존 병합기법의 한계를 극복하면서 호우에 따른 가변성을 반영하는 실시간 병합기법을 개발하고, 수문학적인 활용성을 평가하고자 하였다. 사용된 예측강우 자료는 레이더 기반인 MAPLE, KONOS, 공간규모분할 예측강우와 수치예보모델 기반인 UM와 ASAPS의 예측강우이며, 제시한 가중치 산정기법은 직전 예측강우의 오차가 현 시점의 예측강우의 오차와 유사하다는 가정하에 오차항을 포함한 과거 1시간 예측강우들간의 가중치 조합이 과거 지상관측강우와의 평균제곱근오차가 최소가 되도록 화음 탐색법을 이용하여 찾는 것이다. 가중치 조합은 예측강우의 생산 시간 간격을 고려하여 매 10분마다 산정하며, 미래 3시간 예측까지 산정된 가중치를 적용한다. 수도권 영역을 대상으로 병합된 예측강우와 레이더 관측강우를 비교한 결과, 정량적 정확도가 향상됨을 확인할 수 있었다. 또한, 예측강우의 수문학적 활용성은 도시유출해석모의를 통해 평가하였다. 그 결과, 병합된 예측강우로 모의된 수심이 관측수심과 유사하여 수문학적 활용성 확인할 수 있었다.

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Assessment of Upland Drought Using Soil Moisture Based on the Water Balance Analysis (물수지 기반 지역별 토양수분을 활용한 밭가뭄 평가)

  • Jeon, Min-Gi;Nam, Won-Ho;Yang, Mi-Hye;Mun, Young-Sik;Hong, Eun-Mi;Ok, Jung-Hun;Hwang, Seonah;Hur, Seung-Oh
    • Journal of The Korean Society of Agricultural Engineers
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    • v.63 no.5
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    • pp.1-11
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    • 2021
  • Soil moisture plays a critical role in hydrological processes, land-atmosphere interactions and climate variability. It can limit vegetation growth as well as infiltration of rainfall and therefore very important for agriculture sector and food protection. Recently, due to the increased damage from drought caused by climate change, there is a frequent occurrence of shortage of agricultural water, making it difficult to supply and manage stable agricultural water. Efficient water management is necessary to reduce drought damage, and soil moisture management is important in case of upland crops. In this study, soil moisture was calculated based on the water balance model, and the suitability of soil moisture data was verified through the application. The regional soil moisture was calculated based on the meteorological data collected by the meteorological station, and applied the Runs theory. We analyzed the spatiotemporal variability of soil moisture and drought impacts, and analyzed the correlation between actual drought impacts and drought damage through correlation analysis of Standardized Precipitation Index (SPI). The soil moisture steadily decreased and increased until the rainy season, while the drought size steadily increased and decreased until the rainy season. The regional magnitude of the drought was large in Gyeonggi-do and Gyeongsang-do, and in winter, severe drought occurred in areas of Gangwon-do. As a result of comparative analysis with actual drought events, it was confirmed that there is a high correlation with SPI by each time scale drought events with a correlation coefficient.

Derivation of Channel and Floodplain Width Regression Reflecting Korean Channel Shapes in SWAT Model (국내 하천 형상을 반영한 SWAT 모형 내 하천폭 및 홍수터폭 산정 회귀식 도출)

  • Lee, Hyeon-Gu;Han, Jeongho;Lee, Dongjun;Lim, Kyoung-Jae;Kim, Jonggun
    • Journal of The Korean Society of Agricultural Engineers
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    • v.61 no.4
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    • pp.33-42
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    • 2019
  • In this study, the channel and floodplain widths are indirectly measured for three different watersheds using satellite images to reflect the shape of Korean channels in the Soil and Water Assessment Tool (SWAT) model. For measuring the channel and floodplain widths, multiple satellite images were referred to ensure the widest width of certain points. In the single channel, the widths at the multiple points were measured. Based on the measured data, the regression equations were derived to estimate the channel and floodplain widths according to watershed areas. Applying these developed equations, this study evaluated the effect of the change of channel and floodplain widths on the SWAT simulation by comparing to the measured streamflow data. The developed equations estimated larger channel width and smaller floodplain compared with those calculated in the current SWAT model. As shown in the results, there was no considerable changes in the predicted streamflow using the current and developed equations. However, the flow velocity and channel depth calculated from the developed equations were smaller than those of the current equations. The differences were caused by the effect of different channel geometries used for calculating the hydraulic characteristics. The channel geometries also affected the water quality simulation in channels because the hydraulic characteristics calculated by the channel geometries are directly related to the water quality simulation. Therefore, application of the river cross-sectional regression equation reflecting the domestic stream shape is necessary for accurate water quantity / quality and water ecosystem simulation using hydrological model.