• 제목/요약/키워드: biogeochemical modeling

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생지화학모델링을 이용한 동중국해 해양-대기 CO2교환량의 변화 연구 (Investigation of Change in Air-Sea CO2 Exchange over the East China Sea using Biogeochemical Ocean Modeling)

  • 박영규;최상화;예상욱;이정석;황진환;강성길
    • Ocean and Polar Research
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    • 제30권3호
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    • pp.325-334
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    • 2008
  • A biogeochemical model was used to estimate air-sea $CO_2$ exchange over the East China Sea. Since fresh water discharge from the Changjiang River and relevant chemistry were not considered in the employed model, we were not able to produce accurate results around the Changjiang River mouth. This factor aside, the model showed that the East China Sea, away from the Changjiang River mouth, takes approximately $1.5{\sim}2\;mole\;m^{-2}yr^{-1}$ of $CO_2$ from the atmosphere. The model also showed that biological factors modify the air-sea $CO_2$ flux by only a few percent when we assumed that biological activity increased two-fold. Therefore, we can argue that the biological effect is not strong enough over this area within the framework of the current phosphate-based biological model. Compared to the preindustrial era, in 1995 the East China Sea absorbed $0.4{\sim}0.8\;mole\;m^{-2}yr^{-1}$ more $CO_2$. If warming of the sea surface is considered, in addition to the increase in atmospheric $CO_2$ concentration, by 2045 the East China Sea would absorb $0.2{\sim}0.4\;mole\;m^{-2}yr^{-1}$ less $CO_2$ compared to the non-warming case.

Impact of Iron Scavenging and Desorption Parameters on Chlorophyll Simulation in the Tropical Pacific within NEMO-TOPAZ

  • Lee, Hyomee;Moon, Byung-Kwon;Park, Jong-Yeon;Kim, Han-Kyoung;Jung, Hyun-Chae;Wie, Jieun;Park, Hyo Jin;Byun, Young-Hwa;Lim, Yoon-Jin;Lee, Johan
    • 한국지구과학회지
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    • 제42권4호
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    • pp.390-400
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    • 2021
  • Ocean biogeochemistry plays a crucial role in sustaining the marine ecosystem and global carbon cycle. To investigate the oceanic biogeochemical responses to iron parameters in the tropical Pacific, we conducted sensitivity experiments using the Nucleus for European Modelling of the Ocean-Tracers of Ocean Phytoplankton with Allometric Zooplankton (NEMO-TOPAZ) model. Compared to observations, the NEMO-TOPAZ model overestimated the concentrations of chlorophyll and dissolved iron (DFe). The sensitivity tests showed that with increasing (+50%) iron scavenging rates, chlorophyll concentrations in the tropical Pacific were reduced by approximately 16%. The bias in DFe also decreased by approximately 7%; however, the sea surface temperature was not affected. As such, these results can facilitate the development of the model tuning strategy to improve ocean biogeochemical performance using the NEMO-TOPAZ model.

새만금호 3차원 수리.수질모델(EFDC)의 수치격자 민감도 분석 (A Sensitivity Analysis on Numerical Grid Size of a Three-Dimensional Hydrodynamic and Water Quality Model (EFDC) for the Saemangeum Reservoir)

  • 전지혜;정세웅
    • 한국물환경학회지
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    • 제28권1호
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    • pp.26-37
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    • 2012
  • Multi-dimensional hydrodynamic and water quality models are widely used to simulate the physical and biogeochemical processes in the surface water systems such as reservoirs and estuaries. Most of the models have adopted the Eulerian grid modeling framework, mainly because it can reasonably simulate physical dynamics and chemical species concentrations throughout the entire model domain. Determining the optimum grid cell size is important when using the Eulerian grid-based three-dimensional water quality models because the characteristics of species are assumed uniform in each of the grid cells and chemical species are represented by concentration (mass per volume). The objective of this study was to examine the effect of grid-size of a three dimensional hydrodynamic and water quality model (EFDC) on hydrodynamics and mass transport in the Saemangeum Reservoir. Three grid resolutions, respectively representing coarse (CG), medium (MG), and fine (FG) grid cell sizes, were used for a sensitivity analysis. The simulation results of numerical tracer showed that the grid resolution affects on the flow path, mass transport, and mixing zone of upstream inflow, and results in a bias of temporal and spatial distribution of the tracer. With the CG, in particular, the model overestimates diffusion in the mixing zone, and fails to identify the gradient of concentrations between the inflow and the ambient water.

Simulating Bioremediation of Uranium-Contaminated Aquifers

  • 왕수균
    • 한국지하수토양환경학회:학술대회논문집
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    • 한국지하수토양환경학회 2002년도 추계학술발표회
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    • pp.161-166
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    • 2002
  • Bioremediation of trace metals in groundwater may require the manipulation of redox conditions via the injection of a carbon source. To simulate the numerous biogeochemical processes that will occur during the bioremediation of trace-metal-contaminated aquifers, a reactive transport model has been developed. The model consists of a set of coupled mass balance equations, accounting for advection, hydrodynamic dispersion, and a kinetic formulation of the biological or chemical transformations affecting an organic substrate, electron acceptors, corresponding reduced species, and trace metal contaminants of interest, uranium in this study. The redox conditions of the domain are characterized by estimating the pE, based on the concentrations of the dominant terminal electron acceptor and its corresponding reduced specie. This pE and the concentrations of relevant species we then used by a modified version of MINTEQA2, which calculates the speciation/sorption and precipitation/dissolution of the species of interest under equilibrium conditions. Kinetics of precipitation/dissolution processes are described as being proportional to the difference between the actual and calculated equilibrium concentration.

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지구시스템 모형을 이용한 21세기 동중국해와 남해의 수온과 일차생산 변화 평가 (Assessment of Changes in Temperature and Primary Production over the East China Sea and South Sea during the 21st Century using an Earth System Model)

  • 박영규;최상화;김선동;김철호
    • Ocean and Polar Research
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    • 제34권2호
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    • pp.229-237
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    • 2012
  • Using results from an Earth System model, we investigated change in primary production in the East China Sea, under a global warming scenario. As global warming progresses, the vertical stratification of water becomes stronger, and nutrient supply from the lower part to the upper part is reduced. Consequently, so is the primary production. In addition to the warming trend, there is strong decadal to interdecadal scale variability, and it takes a few decades before the warming trend surpasses natural variability. Thus, it would be very hard to investigate the global warming trend using data of several years' length.

Alternatives for Quantifying Wetland Carbon Emissions in the Community Land Model (CLM) for the Binbong Wetland, Korea.

  • Eva Rivas Pozo;Yeonjoo Kim
    • 한국수자원학회:학술대회논문집
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    • 한국수자원학회 2023년도 학술발표회
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    • pp.413-413
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    • 2023
  • Wetlands are a critical component of the global carbon cycle and are essential in mitigating climate change. Accurately quantifying wetland carbon emissions is crucial for understanding and predicting the impact of wetlands on the global carbon budget. The uncertainty quantifying carbon in wetlands may comes from the ecosystem's hydrological, biochemical, and microbiological variability. The Community Land Model is a sophisticated and flexible land surface model that offers several configuration options such as energy and water fluxes, vegetation dynamics, and biogeochemical cycling, necessitating careful consideration for the alternative configurations before model implementation to develop a practical model framework. We conducted a systematic literature review, analyzing the alternatives, focusing on the carbon stock pools configurations and the parameters with significant sensitivity for carbon quantification in wetlands. In addition, we evaluated the feasibility and availability of in situ observation data necessary for validating the different alternatives. This analysis identified the most suitable option for our study site, the Binbong Wetland, in Korea.

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습지 퇴적물에서 비소의 성상과 이동 모의에 관한 수학적 모형 (Modeling the Fate and Transport of Arsenic in Wetland Sediments)

  • 박석순;왕수균
    • 생태와환경
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    • 제36권4호통권105호
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    • pp.434-446
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    • 2003
  • 습지에서 중금속이나 방사성 물질의 성상과 이동은 전자수용체와 유기탄소를 이용하는 미생물의 대사작용의 결과로 나타나는 지질화학적 작용과 밀접한 관계를 가지고 있으며, 이러한 지질화학적반응의 공간적인 분포는 주변 환경의 특성에 의해 영향을 받게 된다. 습지에서의 이러한 현상을 수학적으로 모의하기 위하여 식물의 존재 여부에 따른 퇴적물 내에서의 중금속 거동에 대한 일반적인 수학적 모형을 개발하였다. 본 모형에서 고려되는 주요 기작은 습지에서의 침적과 식물 뿌리의 존재가 퇴적물 내 지질화학적 반응과 이송 기작 및 혼합과정에 미치는 영향 등이며, 정상상태에 관한 수식들이 퇴적물 환경의 모의에 적용되었다. 수치모의 실험의 결과에 따르면, 열거된 물리학적기작들이 미생물의 유기 탄소원 분해작용의 결과로 나타나는 일련의 전자수용체, 그에 따른 반응물, 모형에서 고려된 중금속 물질인 비소 등 퇴적물내 화학 물질들의 수직적 분포에 중요한 영향을 미치는 것으로 나타났다. 또한 본 모형에서는 특정한 생물학적 변환 과정이 열역학적으로 호의적인 영역에서만 발생하는 것으로 고려되었음에도, 비생물학적 작용과 혼합 기작에 의하여 각각의전자수용체 분포의 수직적 중첩이나 역전 등 현장에서 실제 관측되는 현상 들을 잘 모사할 수 있었다.

수정 수문지형학적 방법을 적용한 강천 대체습지의 기능평가 (Functional Assessment of Gangcheon Replacement Wetland Using Modified HGM)

  • 김정욱;이보은;김재근;오승현;정재원;이명진;김형수
    • 한국습지학회지
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    • 제19권3호
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    • pp.318-326
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    • 2017
  • 2008년부터 2013년까지 우리나라는 4대강 살리기 사업을 진행하면서 하천준설 및 습지 내 유원지화로 기존의 습지가 축소되거나 훼손되었다. 이에 환경적 측면을 고려해 대체습지를 조성하였으나, 이에 대한 관리가 미흡한 상태이다. 습지의 효율적 관리를 위해서는 먼저 습지의 기능을 평가하고 각 기능에 맞는 관리가 필요하다. 본 연구에서는 4대강 사업으로 조성된 강천습지를 대상으로 수정 HGM 방법을 이용하여 수문학적, 생지화학적, 동 식물서식처 기능을 평가하였다. 기능평가를 위한 변수를 산정하기 위해 4대강 사업 전과 사업 후의 강천습지에 대한 현황과 습지에 대한 자료 및 제원을 문헌조사 및 현장조사 그리고 수리 수문모델링을 통해 획득하였다. 기능평가 결과 4대강 사업 이후 수문학적 기능이 65.5%, 생지화학적 기능이 66.6%, 식물서식처 기능이 75%, 그리고 동물서식처 기능이 108.3%로 4대강 사업 이후 강천습지는 이전에 비해 78.9%의 기능을 수행하는 것으로 분석되었다. 수문학적 기능의 감소는 4대강 사업 이후 지표하 저류의 감소, 그리고 생지화학적 기능 및 식물서식처 기능의 감소는 4대강 사업으로 인해 강천습지 주변의 모래톱이 상당 면적 제거되었기 때문이다. 따라서, 감소한 기능을 보완하기 위해 습지 구역을 확장하고, 다양한 식물을 식재할 필요가 있다. 본 연구에서 사용된 수정 HGM 방법은 기존의 습지로부터 대체습지에 대한 개선 정도를 고려할 수 있으므로 조성된 대체습지를 효율적으로 관리하는데 활용할 수 있다. 또한 습지를 새롭게 조성할 경우 시간에 따른 조성 습지의 기능 변화를 평가하기에 매우 유용할 것으로 판단된다.

대형 성층 호수의 수온과 내부파의 3차원 수치 모델링 (Three-dimensional Numerical Modeling of Water Temperature and Internal Waves in a Large Stratified Lake)

  • 정세웅
    • 한국물환경학회지
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    • 제31권4호
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    • pp.367-376
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    • 2015
  • The momentum and kinetic turbulent energy carried by the wind to a stratified lake lead to basin-scale motions, which provide a major driving force for vertical and horizontal mixing. A three-dimensional (3D) hydrodynamic model was applied to Lake Tahoe, located between California and Nevada, USA, to simulate the dominant basin-scale internal waves in the deep lake. The results demonstrated that the model well represents the temporal and vertical variations of water temperature that allows the internal waves to be energized correctly at the basin scale. Both the model and thermistor chain (TC) data identified the presence of Kelvin modes and Poincare mode internal waves. The lake was weakly stratified during the study period, and produced large amplitude (up to 60 m) of internal oscillations after several wind events and partial upwelling near the southwestern lake. The partial upwelling and followed coastal jets could be an important feature of basin-scale internal waves because they can cause re-suspension and horizontal transport of fine particles from nearshore to offshore. The internal wave dynamics can be also associated with the distributions of water quality variables such as dissolved oxygen and nutrients in the lake. Thus, the basin-scale internal waves and horizontal circulation processes need to be accurately modeled for the correct simulation of the dissolved and particulate contaminants, and biogeochemical processes in the lake.

한국의 세 개의 다른 식생기능형태에서의 순복사 추정 논문에 대한 의견 (Comment on "Estimation of Net Radiation in Three Different Plant Functional Types in Korea")

  • 강민석;김준
    • 한국농림기상학회지
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    • 제11권3호
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    • pp.118-122
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    • 2009
  • Net Radiation ($R_N$) is the major driving force for biophysical and biogeochemical processes in the terrestrial ecosystems, which is one of the most critical variables in both measurement and modeling. Despite its importance, there are only 10 weather stations conducting $R_N$ measurements among the 544 stations operated by Korea Meteorological Administration (KMA; KMA, 2008). The measurement of incoming shortwave radiation ($R_S{\downarrow}$) is, however, conducted at 22 stations while that of sunshine duration is conducted at all the manned stations. In this context, the recent research for estimating $R_N$ using $R_S{\downarrow}$ in Korean peninsula by Kwon (2009) is of great worth. The author used a linear regression and the radiation balance methods. We generally agree with the author that, in terms of simplicity and practicality, both methods show reliable applicability for estimating $R_N$. We noted, however, that the author's experimental method and analysis need some clarification and improvement, that are addressed in the following perspectives: (1) the use of daily integrated data for regression, (2) the use of measured albedo, (3) the use of linear coefficients for whole year data, (4) methodological improvement, (5) the use of sunshine duration, and (6) the error assessment.