• 제목/요약/키워드: land change modeling

검색결과 112건 처리시간 0.019초

지표면 변화 탐색 및 예측 시스템을 위한 공간 모형 (Spatial Analyses and Modeling of Landsacpe Dynamics)

  • 정명희;윤의중
    • Spatial Information Research
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    • 제11권3호
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    • pp.227-240
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    • 2003
  • 본 연구는 2D 기반의 동적 공간모형(dynamic spatial landscape models)을 통해 지표 변화 과정을 이해하고 예측할 수 있는 방법론을 제시하는데 그 초점을 두고 있다. 동적 공간모형 에 기반한 연구는 크게 지표의 공간 패턴에 대한 모형화와 변화 과정에 관한 모형화 및 모의로 구성되어 있는데 지표 변화와 관련된 규칙은 변화 원인과 그 과정에 따라 다르게 정의될 수 있다. 이때 지표 패턴의 이질성은 변화와 밀접한 관계를 가지고 있기 때문에 연구 지역의 GIS 맵으로부터 공간 패턴의 특성을 모형화 하여 이를 기반으로 변화에 관한 동적 공간 모형이 적용되어야 한다. 본 논문에서는 이를 위한 모형기반 접근법이 설명되어 있고 자연 화재로 인한 지표 변화 과정에 적용되어 동적 공간 모형이 개발되었다.

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토지이용 공간변화 예측의 통계학적 모형에 관한 연구 (A Study on Statistical Modeling of Spatial Land-use Change Prediction)

  • 김의홍
    • Spatial Information Research
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    • 제5권2호
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    • pp.177-183
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    • 1997
  • 토지이용 분류 체계상에서의 종류라는 개념은 토지이용 변화의 분류 체계성에 그대로 적용시킬 수가 있다. 본 연구에서는 선형 판별 함수를 원용하는 최우법(Maximum likelihood method)으로 산출되는 토지이용분류의 공간적 결과와 Markov 전이 행렬 방법으로 산출되는 정량적 결과가 상호 보완하는 의미에서 합성모형으로 통합되었다. 본 연구에서는 다변수 판별 함수의 계산법과 Markov 연쇄행렬 계산법에 관하여 토의되고 그 합성 모형을 대상 지역에 실제 적용하여 그 결과 '90년, '95년 토지이용도가 예측 작성되었다. 모형화의 문제 및 예측의 정확도 역시 더욱 토의 되어야 하며 추후 개선의 여지를 남긴다.

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기후변화 시나리오에 따른 미래 토지피복변화 예측 및 군집분석을 이용한 지역 특성 분석 (Prediction of Land-cover Change Based on Climate Change Scenarios and Regional Characteristics using Cluster Analysis)

  • 오윤경;최진용;유승환;이상현
    • 한국농공학회논문집
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    • 제53권6호
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    • pp.31-41
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    • 2011
  • This study was conducted to predict future land-cover changes under climate change scenarios and to cluster analysis of regional land-cover characteristics. To simulate the future land-cover according to climate change scenarios - A1B, A2, and B1 of the Special Report on Emissions Scenarios (SRES), Dyna-CLUE (Conversion of Land Use Change and its Effects) was applied for modeling of competition among land-use types in relation with socioeconomic and biophysical driving factors. Gyeonggi-do were selected as study areas. The simulation results from 2010 to 2040 suggested future land-cover changes under the scenario conditions. All scenarios resulted in a gradual decrease in paddy area, while upland area continuously increased. A1B scenario showed the highest increase in built-up area, but all scenarios showed only slight changes in forest area. As a result of cluster analysis with the land-cover component scores, 31 si/gun in Gyeonggi-do were classified into three clusters. This approach is expected to be useful for evaluating and simulating land-use changes in relation to development constraints and scenarios. The results could be used as fundamental basis for providing policy direction by considering regional land-cover characteristics.

RCP 시나리오 기반 Dyna-CLUE 모형을 이용한 황구지천 유역의 토지이용변화 분석 (Analysis of Land Use Change Using RCP-Based Dyna-CLUE Model in the Hwangguji River Watershed)

  • 김지혜;박지훈;송인홍;송정헌;전상민;강문성
    • 농촌계획
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    • 제21권2호
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    • pp.33-49
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    • 2015
  • The objective of this study was to predict land use change based on the land use change scenarios for the Hwangguji river watershed, South Korea. The land use change scenario was derived from the representative concentration pathways (RCP) 4.5 and 8.5 scenarios. The CLUE (conversion of land use and its effects) model was used to simulate the land use change. The CLUE is the modeling framework to simulate land use change considering empirically quantified relations between land use types and socioeconomic and biophysical driving factors through dynamical modeling. The Hwangguji river watershed, South Korea was selected as study area. Future land use changes in 2040, 2070, and 2100 were analyzed relative to baseline (2010) under the RCP4.5 and 8.5 scenarios. Binary logistic regressions were carried out to identify the relation between land uses and its driving factors. CN (Curve number) and impervious area based on the RCP4.5 and 8.5 scenarios were calculated and analyzed using the results of future land use changes. The land use change simulation of the RCP4.5 scenario resulted that the area of urban was forecast to increase by 12% and the area of forest was estimated to decrease by 16% between 2010 and 2100. The land use change simulation of the RCP8.5 scenario resulted that the area of urban was forecast to increase by 16% and the area of forest was estimated to decrease by 18% between 2010 and 2100. The values of Kappa and multiple resolution procedure were calculated as 0.61 and 74.03%. CN (III) and impervious area were increased by 0-1 and 0-8% from 2010 to 2100, respectively. The study findings may provide a useful tool for estimating the future land use change, which is an important factor for the future extreme flood.

토지피복변화 예측을 위한 CLUE 모델의 확률지도 생성 (A Probability Mapping for Land Cover Change Prediction using CLUE Model)

  • 오윤경;최진용;배승종;유승환;이상현
    • 농촌계획
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    • 제16권2호
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    • pp.47-55
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    • 2010
  • Land cover and land use change data are important in many studies including climate change and hydrological studies. Although the various theories and models have been developed, it is difficult to identify the driving factors of the land use change because land use change is related to policy options and natural and socio-economic conditions. This study is to attempt to simulate the land cover change using the CLUE model based on a statistical analysis of land-use change. CLUE model has dynamic modeling tools from the competition among land use change in between driving force and land use, so that this model depends on statistical relations between land use change and driving factors. In this study, Yongin, Icheon and Anseong were selected for the study areas, and binary logistic regression and factor analysis were performed verifying with ROC curve. Land cover probability map was also prepared to compare with the land cover data and higher probability areas are well matched with the present land cover demonstrating CLUE model applicability.

Assessment of streamflow variation considering long-term land-use change in a watershed

  • Noh, Joonwoo;Kim, Yeonsu;Yu, Wansik;Yu, Jisoo
    • 농업과학연구
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    • 제48권3호
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    • pp.629-642
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    • 2021
  • Land-use change has an important role in the hydrologic characteristics of watersheds because it alters various hydrologic components such as interception, infiltration, and evapotranspiration. For example, rapid urbanization in a watershed reduces infiltration rates and increases peak flow which lead to changes in the hydrologic responses. In this study, a physical hydrologic model the soil and water assessment tool (SWAT) was used to assess long-term continuous daily streamflow corresponding to land-use changes that occurred in the Naesungchun river watershed. For a 30-year model simulation, 3 different land-use maps of the 1990s, 2000s, and 2010s were used to identify the impacts of the land-use changes. Using SWAT-CUP (calibration and uncertainty program), an automated parameter calibration tool, 23 parameters were selected, optimized and compared with the daily streamflow data observed at the upstream, midstream and downstream locations of the watershed. The statistical indexes used for the model calibration and validation show that the model performance is improved at the downstream location of the Naesungchun river. The simulated streamflow in the mainstream considering land-use change increases up to -2 - 30 cm compared with the results simulated with the single land-use map. However, the difference was not significant in the tributaries with or without the impact of land-use change.

시스템 다이내믹스를 이용한 신두리 해안사구의 보전방안 (Conservation Method of Sindu-ri Coastal Dune using System Dynamics)

  • 석영선;유수진;송기환;전진형
    • 한국시스템다이내믹스연구
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    • 제16권1호
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    • pp.5-23
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    • 2015
  • The purpose of this study is to analyze the land-use changes in the coastal areas using system dynamics modeling and to provide directions for effective management to maintain coastal dune areas. This research process consists of four steps: First, we built the basic model based on the causal loop diagram which was analyzed the land-use change of Sindu-ri Coastal Dune. Second, a time series land-use change map using Arc Map was established. Third, the validity of the basic model was tested. Finally, three simulations were performed for the cut over area($100,000m^2/y$, $150,000m^2/y$, $200,000m^2/y$) of windbreak for maintaining the coastal dune areas. Simulation of the basic model showed that the area of the coastal dune will be consistently decreased. Based on the simulation, if windbreak were cut down $150,000m^2/y$, windbreak area will be restored to the target area in 2019. This study has the limitation which the simulation is progressed with a limited variable: area. Therefore, the modeling of coastal dune should be reflected various variables in the further study.

사회경제 경로 시나리오에 따른 토지이용 변화 시뮬레이션 (Simulation of Land Use Change by Storylines of Shared Socio-Economic Reference Pathways)

  • 김호용
    • 한국지리정보학회지
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    • 제19권2호
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    • pp.1-13
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    • 2016
  • 본 연구는 저탄소 기후변화 적응 대책 수립에 활용되는 기후변화 취약성 평가에 적용하기 위하여 사회경제 발전 경로(SSP)에 대한 스토리라인을 개발하고 시나리오별 토지이용변화를 시뮬레이션 하였다. 연구는 크게 3단계로 진행하였다. 첫째, 과거 데이터를 이용하여 셀룰라 오토마타(CA) 모델링을 수행한 후 기준년과 시뮬레이션 결과를 비교하여 지역별 특성에 맞는 전이규칙을 도출하였다. 둘째, SSP에 대한 토지이용 변화 가정을 수립하여 세 가지의 시나리오를 설정하였다. SSP1은 지속가능성에 대한 시나리오로 압축도시로의 발전을, SSP2는 현재 상황을 유지하는 중도의 발전을, SSP3는 분열된 사회로 난개발을 가정하였다. 마지막으로, CA 모델링에 SSP 시나리오를 결합하여 권역별 토지이용 변화를 예측하였다. 분석결과를 SSP 시나리오별로 살펴보면 SSP1은 2020년, SSP2는 2030년까지 도시 면적 비율이 소폭 증가하다가 더 이상의 변화가 나타나지 않았으나, 낮은 수준의 도시계획을 가정한 SSP3에서는 도시 면적 비율이 2050년까지 지속적으로 증가하는 것으로 나타났다. 토지이용 변화에 대한 결과는 합리적 기후정책의 의사결정에 기여할 수 있을 것이며, 공간적 상세화로 도출된 시뮬레이션 결과는 취약성 평가에 일괄 적용함으로써 기후변화 적응 정책 우선순위 선정에 활용할 수 있을 것으로 사료된다.

A Study on Modeling of Spatial Land-use Prediction

  • Kim, Eui-Hong
    • 대한원격탐사학회지
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    • 제1권1호
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    • pp.53-61
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    • 1985
  • The purpose of the study is to establish models of land use prediction system for development and management of land resources using remotely sensed data as well as ancillary data in the context of multi-disciplinary approach in the application to CheJoo Island. The model adopts multi-date processing techniques and is a spatial/temporal land-use projection strategy emerged as a synthesis of the probability transition model and the discriminant-annlysis model. A discriminant model is applied to all pixels in CheJoo landscape plane to predict the most likely change in land use. The probability transition model provides the number of these pixels that will convert to different land use in a gives future time increment. The synthetic model predicts the future change in land use and its volume of pixels in the landscape plane.

기후변화 시나리오 (A1B)에 따른 농업용 저수지 유역의 미래 토지피복변화 예측 및 논 면적 변화 특성 분석 (Prediction of Land-cover Changes and Analysis of Paddy Fields Changes Based on Climate Change Scenario (A1B) in Agricultural Reservoir Watersheds)

  • 오윤경;유승환;이상현;박나영;최진용;윤동균
    • 한국농공학회논문집
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    • 제54권2호
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    • pp.77-86
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    • 2012
  • This study was aim to predict future land-cover changes and to analyze regional land-cover changes in irrigation areas and agricultural reservoir watersheds under climate change scenario. To simulate the future land-cover under climate change scenario - A1B of the SRES (Special Report on Emissions Scenarios), Dyna-CLUE (Conversion of Land Use Change and its Effects) was applied for modeling of competition among land-use types in relation to socioeconomic and biophysical driving factors. For the study areas, 8 agricultural reservoirs were selected from 8 different provinces covering all around nation. The simulation results from 2010 to 2100 suggested future land-cover changes under the scenario conditions. For Madun reservoir in Gyeonggi-do, total decrease amount of paddy area was a similar amount of 'Base demand scenario' of Water Vision 2020 published by MLTMA (Ministry of Land, Transport and Maritime Affairs), while the decrease amounts of paddy areas in other sites were less than the amount of 'High demand scenario' of Water Vision 2020. Under A1B scenario, all the land-cover results showed only slight changes in irrigation areas of agricultural reservoirs and most of agricultural reservoir watersheds will be increased continuously for forest areas. This approach could be useful for evaluating and simulating agricultural water demand in relation to land-use changes.