• 제목/요약/키워드: water balance estimates

검색결과 27건 처리시간 0.03초

Water balance change at a transiting subtropical forest in Jeju Island

  • Kim, JiHyun;Jo, Kyungwoo;Kim, Jeongbin;Hong, Jinkyu;Jo, Sungsoo;Chun, Jung Hwa;Park, Chanwoo;Kim, Yeonjoo
    • 한국수자원학회:학술대회논문집
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    • 한국수자원학회 2022년도 학술발표회
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    • pp.99-99
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    • 2022
  • Jeju island has a humid subtropical climate and this climate zone is expected to migrate northward toward the main land, Korea Peninsula, as temperature increases are accelerated. Vegetation type has been inevitably shifted along with the climatic change, having more subtropical species native in southeast Asia or even in Africa. With the forest composition shift, it becomes more important than ever to analyze the water balance of the forest wihth the ongoing as well as upcoming climate change. Here, we implemented the Ecosystem Demography Biosphere Model (ED2) by initializing the key variables using forest inventory data (diameter at breast height in 2012). Out of 10,000 parameter sets randomly generated from prior distribution distributions of each parameter (i.e., Monte-Carlo Method), we selected four behavioral parameter sets using remote-sensing data (LAI-MOD15A2H, GPP-MOD17A2H, and ET-MOD16A2, 8-days at 500-m during 2001-2005), and evaluated the performances using eddy-covariance carbon flux data (2012 Mar.-Sep. 30-min) and remote sensing data between 2006-2020. We simulated each of the four RCP scenarios (2.6, 4.5, 6.0, and 8.5) from four climate forcings (GFDL-ESM2M, HadGEM2-ES, IPSL-CM5A-LR, and MIROC5 from ISIMIP2b). Based on those 64 simulation sets, we estimate the changes in water balance resulting from the forest composition shift, and also uncertainty in the estimates and the sensitivity of the estimates to the parameters, climate forcings, and RCP scenarios.

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낙동강유역의 증발산량과 물수지 (Evapotranspiration and Water Balance in the Basin of Nakdong River)

  • 조희구;이태영
    • 물과 미래
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    • 제8권2호
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    • pp.81-92
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    • 1975
  • Calculation of the monthly water balance for Nakdong River basin for the period from 1958 to 1968 is made by determining three components independently: precipitation, runoff and evapotranspiration. The areal precipitation is computed by the Thiessen method using the records of nine meteorological stations in the basin, and the runoff is the flow gauged at Jindong which is located on the most downstream. For the computation of evapotranspiration, the Morton method is adopted because this method is relatively fit best in the calculation of water balance among the Morton, Penman and Thornthwaite methods. The values of Morton evapotransp iration are corrected by the factor of 0.82 in the basin in order to bring the error to zero. The areal evapotranspiration is the arithmetic mean of the Morton estimates at the stations. Mean water balance components in the Nakdong river basin are 1117.0mm, 600.6mm and 516.4m for precipitation, runoff and evapotranspiration respectively. Accordingly, the mean runoff ratio comes out to be 0.54. The smallest values of runoff coefficient are due for Daegu area, while the largest ones are for the southwest of the basin with the higher rainfall and high elevations there. The amount of runoff obtained by both Thornthwaite and Budyko methods for water balance computations indicate 59 and 60 per cent of actual values which are lower than the expected. An attempt is made to find the best reliable rainfall-runoff relation among the four methods proposed by Schreiber, 01'dekop, Budyko and Sellers. The modified equation of Schreiber type for annual runoff coefficient could be obtained with the smallest mean error of 11 per cent.

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복하천 중상류 유역의 실제증발산량과 저류변화량 산정 (Estimation of Actual Evapotranspiration and Storage Change for the Bokahcheon Upper-middle Watershed)

  • 이정우;김남원;이정은
    • 한국수자원학회논문집
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    • 제47권7호
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    • pp.615-628
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    • 2014
  • 본 연구에서는 복하천 중상류 유역에 대해 유역수문모델 SWAT-K를 적용하여 1996년부터 2012년까지의 실제증발산량을 모의하여 연별, 월별 변동 특성을 분석하였으며, 유역물수지법으로 증발산량을 산정할 때 유역의 저류변화량 영향에 대해 고찰하였다. 대상유역의 연도별 실제증발산량은 최소 401mm에서 최대 494mm까지 발생하였고 평균적으로 강수량 대비 약 31%인 436mm 발생하였다. 월단위 실제증발산량은 모의기간동안 평균적으로 12월에 최소값 10mm, 7월에 최대값 84mm 발생한 것으로 분석되었다. 자료기간에 따른 연평균 저류변화량의 크기를 평가한 결과 강수량과 유츨량 자료만을 이용하여 유역물수지법으로 연평균 실제증발산량을 추정하기 위해서는 적어도 약 4~5년의 자료를 이용해야 적절한 것으로 분석되었다. 또한, 연구 대상유역에 대해 저류변화량을 고려하여 유역물수지법으로 연단위, 월단위 실제증발산량을 산정할 수 있도록 강수량에서 유출량을 감한 값과 저류변화량간의 선형의 관계식을 제시하였다.

GROUNDWATER RECHARGE ESTIMATION USING ARCGIS-CHLORIDE MASS BALANCE APPROACH

  • Lee Ju Young;Krishinamurshy Ganeshi
    • Water Engineering Research
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    • 제6권1호
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    • pp.31-38
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    • 2005
  • Groundwater recharge is defined in an addition of water to groundwater reservoir. Recently, many people have been moving to the Edwards aquifer and urban and agricultural industry have been expending. Hydrologists and water planning managers concern about insufficient groundwater amounts and irrigation water price variability. In this paper, I focus on estimates of local recharge volumes and quantify preferential flow through GIS technique. Chloride Mass Balance (CMB) and hydrochemical components have been widely applied to recharge rate and evaluate flow paths. The CMB method is based on relationship between wet-dry chloride deposition data and Rainfall data. These data are manipulated using ArcGIS. Especially, hydrochemical concentration distribution is good index for groundwater residence times or flow paths such as $[Mg^{2+}]/[Ca^{2+}],[Cl]$ and log$([Ca^{2+}]+[Mg^{2+}])/[Na^+]$. Well information such as hydrological-hydrochemical data are imported into ArcGIS and manipulated by interpolation techniques. For each potentiometric surface and water quality, point data are converted to spatial data through each Kriging and Inverse Distance Weighted (IDW) techniques.

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기후변화 시나리오에 따른 지역 물수지 추정 (Estimation of Regional Water Balance in Various Climate Change Scenarios)

  • 김만규
    • 한국제4기학회지
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    • 제13권1호
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    • pp.53-65
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    • 1999
  • 기후변화와 이에 따르는 식생변화, 인위적인 토지이용 변화 등 '지역환경생태시스템의 변화'에 대한 '지역 물수지변화' 추정은 오직 필자가 개발한 BROO $K_{TOP}$과 같은 '물리기반 물수지 모델(Physical based Water Balance Model)'류에 의해서만 가능하다. 본 연구에서는 독일 중북부 농업지대와 산림지대에 대해서 $BROOK_{TOP}$ 소프트웨어를 이용하여 정립된 물리기반 지역물수지모델에 독일 포츠담 기후변화연구소(PIK) 시나리오와 체코 프라하대학에서 개발한 중부유럽 대상 GCM 기후변화 시나리오를 적용하여 물수지변화를 추정하였다. 이와 같은 기후와 지표.지하조건을 고려 한 지구온난화에 따른 수자원변화 예측시스템 개발은 하천수$\cdot$지하수 개발 및 수질 관리, 농업경작관리, 환경생태계 관리, 자연 재해 관리, 토지이용계획 및 지역개발계획 등을 위한 시스템개발의 기반이 된다

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보완관계법에 의한 증발산량 산정 모형의 평가 - 복하천 중상류 유역을 중심으로 - (Assessment of Complementary Relationship Evapotranspiration Models for the Bokahcheon Upper-middle Watershed)

  • 김남원;이정우
    • 한국수자원학회논문집
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    • 제47권6호
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    • pp.547-559
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    • 2014
  • 본 연구에서는 잠재증발산량과 실제증발산량 간의 보완관계식을 이용한 대표적인 증발산량 산정모형인 Brutsaert and Stricker (1979)의 AA 모형과 Morton (1983)의 CRAE 모형의 적용성을 평가하였다. 이를 위해서 두 모형을 복하천 중상류 유역에 적용하여 유역평균 실제증발산량을 산정하고, 유역 물수지 결과와의 비교를 수행하였다. 연구 대상유역은 양질의 하천유량 자료 확보 기간이 짧고, 하천유량 자료 또한 인위적 물이용, 배출로 인해 교란되었기에 강수량, 유출량 등의 관측치 기반의 유역 물수지 결과 보다는 검보정이 잘된 유역수문모형 SWAT-K로 모의한 실제증발산량과의 비교를 통하여 AA 모형과 CRAE 모형으로 산정한 실제증발산량의 적정성을 평가하였다. AA 모형과 CRAE 모형의 의한 실제증발산량 모두 식생성장기에 과다하게 산정되는 경향을 나타내었고, 특히 AA 모형은 건조기간동안 실제증발산량이 과소하게 산정되었다. AA 모형과 CRAE 모형의 정도를 높이기 위해서 매개변수 보정을 수행한 결과, AA 모형의 경우는 건조기간 동안의 적합성을 높이기 위해서 이류항을 추가로 고려하고 Brutsaert and Stricker (1979)의 제안 값 ${\alpha}=1.26$ 보다는 작은 ${\alpha}=1.08$을 사용하였을 때, 그리고 CRAE 모형의 경우에는 Morton(1983)이 제안한 값 $b_1=14Wm^{-2}$, $b_2=1.12$ 보다는 각각 다소 크고 작은 값인$b_1=16Wm^{-2}$, $b_2=1.04$를 사용하였을 때에 연단위, 월단위, 그리고 월별 모두 가장 양호한 실제증발산량 값이 산정되었다.

한반도 주변 연안 해저를 통한 담지하수의 유출: 미래 수자원으로서의 중요성 (Submarine Discharge of Fresh Groundwater Through the Coastal Area of Korea Peninsula: Importance as a Future Water Resource)

  • 황동운;김규범;이재영
    • 한국해양학회지:바다
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    • 제15권4호
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    • pp.192-202
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    • 2010
  • 해저지하수 유출은 최근 전 지구적인 혹은 지역적인 규모에서 육상의 담수, 영양염류 및 다른 용존 화학원소들을 해양으로 공급하는 중요한 역할을 담당하는 것으로 밝혀지고 있다. 특히, 해저를 통한 육상 담지하수의 해양으로의 유출은 해양환경학적 측면뿐만 아니라 미래 수자원 확보측면에서 매우 중요한 의미를 가진다. 일반적으로 해저를 통한 담지하수 유출은 전 세계 연안해역에서 일어나고 있으며, 그 양은 지역 또는 측정 방법에 따라 강물 유출량의 0.01-17% 범위인 것으로 보고되고 있다. 본 연구에서 조사 및 계산된 한반도 주변 해저 담지하수의 유출량은 제주도, 영일만, 마산만, 여자만 지역에서 주변 강물 유출량의 약 50%, 57%, 89%, 420%로 다른 나라의 연안 해역에 비해 상당히 양이 많고 지역적으로 큰 차이를 보였다. 하지만, 본 연구에서 이용한 담지하수 유출량 계산 방법은 연안해역에서의 기초적인 물수지 방법을 이용한 것으로, 보다 정확한 담지하수 유출량 평가를 위해서는 앞으로 연안해역에서 물수지에 영향을 미치는 여러가지 요인들(강수량, 조석, 증발, 물의 체류시간 등)의 시공간적 변화에 대한 지속적인 모니터링이 필요하다. 또한, 여전히 해저 담지하수 유출량을 평가하는데 있어서 방법적인 문제가 많이 제기되고 있는 만큼, 수리역학적인 방법 및 seepage meter를 이용한 실제측정 등을 통한 상호비교가 요구된다.

Hydrological Variability of Lake Chad using Satellite Gravimetry, Altimetry and Global Hydrological Models

  • Buma, Willibroad Gabila;Seo, Jae Young;Lee, Sang-IL
    • 한국수자원학회:학술대회논문집
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    • 한국수자원학회 2015년도 학술발표회
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    • pp.467-467
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    • 2015
  • Sustainable water resource management requires the assessment of hydrological variability in response to climate fluctuations and anthropogenic activities. Determining quantitative estimates of water balance and total basin discharge are of utmost importance to understand the variations within a basin. Hard-to-reach areas with few infrastructures, coupled with lengthy administrative procedures makes in-situ data collection and water management processes very difficult and unreliable. In this study, the hydrological behavior of Lake Chad whose extent, extreme climatic and environmental conditions make it difficult to collect field observations was examined. During a 10 year period [January 2003 to December 2013], dataset from space-borne and global hydrological models observations were analyzed. Terrestial water storage (TWS) data retrieved from Gravity Recovery and Climate Experiment (GRACE), lake level variations from Satellite altimetry, water fluxes and soil moisture from Global Land Data Assimilation System (GLDAS) were used for this study. Furthermore, we combined altimetry lake volume with TWS over the lake drainage basin to estimate groundwater and soil moisture variations. This will be validated with groundwater estimates from WaterGAP Global Hydrology Model (WGHM) outputs. TWS showed similar variation patterns Lake water level as expected. The TWS in the basin area is governed by the lake's surface water. As expected, rainfall from GLDAS precedes GRACE TWS with a phase lag of about 1 month. Estimates of groundwater and soil moisture content volume changes derived by combining altimetric Lake Volume with TWS over the drainage basin are ongoing. Results obtained shall be compared with WaterGap Hydrology Model (WGHM) groundwater estimate outputs.

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A SIMPLE APPROACH FOR ESTIMATING ANNUAL EVAPOTRANSPIRATION WITH CLIMATE DATA IN KOREA

  • Im Sangjun;Kim Hyeonjun;Kim Chulgyum;Jang Cheolhee
    • Water Engineering Research
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    • 제5권4호
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    • pp.185-193
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    • 2004
  • Estimates of annual actual evapotranspiration are needed in water balance studies, water resources management projects, and many different types of hydrologic studies. This study validated a set of 5 empirical equations of estimating annual actual evapotranspiration with climate data on 11 watersheds, and evaluated the further applicability of these forms in estimating annual runoff on watershed level. Five empirical equations generally overestimated annual evapotranspiration, with relative errors ranging $3.3\%$ to $47.2\%$. The results show that Schreiber formula can be applicable in determining annual evapotranspiration in sub-humid region that is classified by aridity index, while Zhang equation gave better results than the remaining methods in humid region. The mean differences for annual evapotranspiration bias over 11 watersheds are Zhang, Schreiber, Budyko, Pike, and Ol'dekop formula from lowest to highest. The empirical equations provide a practical tool to help water resources managers in estimating regional water resources on ungauged large watershed.

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Mass-balance 및 경제성 분석에 의한 빗물저류시설 적정 규모 산정 (Estimation of Optimum Capacity for Rainwater Storage Facilities based on Mass Balance and Economic Analysis)

  • 김영민;이상호;이정훈;김이호
    • 상하수도학회지
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    • 제22권2호
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    • pp.233-238
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    • 2008
  • Recently, rainwater harvesting facilities have increasingly constructed mainly in elementary schools and government buildings. Nevertheless, few methods are available for efficient planning and design of rainwater harvesting facilities by considering the weather conditions and purpose of rainwater management in each site, which may lead to a construction of uneconomic facilities. The current method estimates the size of rainwater storage tank by multiplying the size of building or plottage with a certain ratio and has many limitations. In this study, we first developed a method for planning and design of rainwater storage facilities using $Rainstock^{TM}$ model, which is based on mass balance, and economic analysis. Then, the model was applied for the design of a rainwater harvesting facility in a building with the catchment area of $1,000m^2$. The model calculation indicated that the economic feasibility of rainwater harvesting depends on not only the size of storage tank but also the water usage rate. When the water usage rate is $1m^3/day$, the rainwater harvesting facility is not cost-effective regardless of the size of the storage tank. With increasing the water usage rate, the economical efficiency of the facility was improved for a specific size of the storage tank. Based on the model calculation, the optimum tank sizes for $5m^3/day$ and $10m^3/day$ of water usage rates were $24m^3$ and $57m^3$, respectively. It is expected that the model is useful for optimization of rainwater storage facilities in planning and designing steps.