• Title/Summary/Keyword: CMIP

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Assessing the Climate Change Impacts on Future Upland Drought using the Soil Moisture Model and CMIP5 GCMs (CMIP5 GCMs와 토양수분모형을 이용한 기후변화에 따른 미래 밭가뭄 평가)

  • Jeon, Min-Gi;Nam, Won-Ho;Hong, Eun-Mi;Hwang, Seon-Ah
    • Proceedings of the Korea Water Resources Association Conference
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    • 2020.06a
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    • pp.66-66
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    • 2020
  • 최근 기후변화로 인한 전 세계적인 기온상승이 야기되고 있으며, 농업에 직접적인 영향을 주는 기상학적 및 수문학적 변화가 급격하게 진행되고 있다. 우리나라의 경우 최근 7년 동안 지역별로 극심한 가뭄이 매년 발생하고 있고, 가뭄의 발생 빈도와 강도가 증가하는 추세이다. 특히 밭의 경우 농업용 저수지 등 수리시설물로부터 관개용수를 공급받는 논 작물과 달리 자연 강우를 통해 필요한 용수량을 공급받는 천수답이 대부분이고 관개시설이 부족하기 때문에, 기후변화에 의한 가뭄의 취약성이 높다. 밭작물은 작물의 생육 시기와 기후 환경, 수자원 환경에 민감하고 토양수분을 흡수함으로써 생육하기 때문에 이러한 밭작물의 소비수량 및 관개용수량은 증발산량 뿐만 아니라 토양내 수분의 이동을 고려하여 수분 부족량을 산정해야 한다. 본 연구에서는 미래 기후변화에 의한 밭가뭄 평가를 위하여 밭 작물별 소비수량 및 관개용수량을 추정하기 위한 밭 토양수분 물수지 모형 (Soil Moisture Model)을 구성하였다. 또한 대표농도경로 (Representative Concentration Pathway, RCP) 시나리오 기반의 제5차 결합기후모델상호비교사업 (Coupled Model Intercomparison Project Phase 5, CMIP5)에서 제공하는 RCP 시나리오를 기반으로 한 전지구 기후모델 (General Circulation Model, GCM)의 기후예측결과를 적용함으로써 미래 밭 가뭄 평가를 수행하였다. 과거 기상자료 및 미래 대표농도경로 시나리오와 작물 기초자료를 수집하여 과거 및 미래 작물증발산량을 산정하였으며, 토양수분 물수지 모형에 적용하여 밭작물의 토양수분 변화를 모의하고 기후변화에 따른 작물별/생육시기별 소비수량 및 관개용수량을 추정하였다.

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Projected Future Extreme Droughts Based on CMIP6 GCMs under SSP Scenarios (SSP 시나리오에 따른 CMIP6 GCM 기반 미래 극한 가뭄 전망)

  • Kim, Song-Hyun;Nam, Won-Ho;Jeon, Min-Gi;Hong, Eun-Mi;Oh, Chansung
    • Journal of The Korean Society of Agricultural Engineers
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    • v.66 no.4
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    • pp.1-15
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    • 2024
  • In recent years, climate change has been responsible for unusual weather patterns on a global scale. Droughts, natural disasters triggered by insufficient rainfall, can inflict significant social and economic consequences on the entire agricultural sector due to their widespread occurrence and the challenge in accurately predicting their onset. The frequency of drought occurrences in South Korea has been rapidly increasing since 2000, with notably severe droughts hitting regions such as Incheon, Gyeonggi, Gangwon, Chungbuk, and Gyeongbuk in 2015, resulting in significant agricultural and social damage. To prepare for future drought occurrences resulting from climate change, it is essential to develop long-term drought predictions and implement corresponding measures for areas prone to drought. The Intergovernmental Panel on Climate Change (IPCC) Sixth Assessment Report outlines a climate change scenario under the Shared Socioeconomic Pathways (SSPs), which integrates projected future socio-economic changes and climate change mitigation efforts derived from the Coupled Model Intercomparison Project 6 (CMIP6). SSPs encompass a range of factors including demographics, economic development, ecosystems, institutions, technological advancements, and policy frameworks. In this study, various drought indices were calculated using SSP scenarios derived from 18 CMIP6 global climate models. The SSP5-8.5 scenario was employed as the climate change scenario, and meteorological drought indices such as the Standardized Precipitation Index (SPI), Self-Calibrating Effective Drought Index (scEDI), and Standardized Precipitation Evapotranspiration Index (SPEI) were utilized to analyze the prediction and variability of future drought occurrences in South Korea.

A Real-Time Integrated Hierarchical Temporal Memory Network for the Real-Time Continuous Multi-Interval Prediction of Data Streams

  • Kang, Hyun-Syug
    • Journal of Information Processing Systems
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    • v.11 no.1
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    • pp.39-56
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    • 2015
  • Continuous multi-interval prediction (CMIP) is used to continuously predict the trend of a data stream based on various intervals simultaneously. The continuous integrated hierarchical temporal memory (CIHTM) network performs well in CMIP. However, it is not suitable for CMIP in real-time mode, especially when the number of prediction intervals is increased. In this paper, we propose a real-time integrated hierarchical temporal memory (RIHTM) network by introducing a new type of node, which is called a Zeta1FirstSpecializedQueueNode (ZFSQNode), for the real-time continuous multi-interval prediction (RCMIP) of data streams. The ZFSQNode is constructed by using a specialized circular queue (sQUEUE) together with the modules of original hierarchical temporal memory (HTM) nodes. By using a simple structure and the easy operation characteristics of the sQUEUE, entire prediction operations are integrated in the ZFSQNode. In particular, we employed only one ZFSQNode in each level of the RIHTM network during the prediction stage to generate different intervals of prediction results. The RIHTM network efficiently reduces the response time. Our performance evaluation showed that the RIHTM was satisfied to continuously predict the trend of data streams with multi-intervals in the real-time mode.

Future precipitation changes in Jeju island based on CMIP6 models (CMIP6 모델을 기반으로 한 제주도 강수량의 미래 변화)

  • Kim, Sunghun;Seo, Miru;Lee, Taewon;Heo, Jun-Haeng
    • Proceedings of the Korea Water Resources Association Conference
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    • 2020.06a
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    • pp.186-186
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    • 2020
  • 본 연구에서는 IPCC (Intergovernmental Panel on Climate Change) 6차 평가보고서(6th Assessment Report, AR6)에서 제시한 새로운 온실가스 경로(SSP, Shared Socioeconomic Pathways)에 따라 산출된 전지구 기후변화 시나리오를 이용하여 제주도의 미래 강수량 변화를 살펴보고자 한다. 기상청에서 운영하는 기후정보포털(http://www.climate.go.kr/)에서는 6가지 기상요소(평균기온, 최고기온, 최저기온, 강수량, 상대습도, 풍속 등)에 대하여 SSP 시나리오 자료를 제공하고 있다. SSP 시나리오는 SSP1-2.6 저탄소 시나리오(사회 불균형의 감소와 친환경 기술의 빠른 발달로 기후변화 완화, 적응능력이 좋은 지속성장가능 사회경제 구조)와 SSP5-8.5 고탄소 시나리오(기후정책 부재, 화석연료 기반 성장과 높은 인적 투자로 기후변화 적응능력은 좋지만 완화능력이 낮은 사회경제 구조)로 구분되어 제공되고 있다. 또한, 현재의 기후 상태를 모의하는 historical period (1850-2014) 자료와 미래의 기후상태를 모의한 future period (2015-2100) 자료가 있으며, 월별(momthly), 연간(yearly) 자료의 형태로 제공된다. 본 연구를 통하여 새로운 SSP 시나리오를 이용한 제주도 강수량의 미래 변화를 정량적으로 분석하였고, 기후변화에 능동적인 대책을 수립하는데 도움이 될 것으로 판단된다.

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Statistical Probable Maximum Precipitation based on CMIP6 SSP Scenario (CMIP6 SSP 시나리오를 기반으로 통계학적 가능최대 강수량)

  • Seo, Miru;Kim, Sunghun;Kwon, Jihye;Heo, Jun-Haeng
    • Proceedings of the Korea Water Resources Association Conference
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    • 2022.05a
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    • pp.169-169
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    • 2022
  • 최근 기후변화와 도시화로 인해 집중호우, 홍수 등 극한 강우의 빈도와 규모가 증가하고 있는 추세이다. 또한, 극한 강우의 빈도가 증가함으로 가능최대강수량(Probable Maximum Precipitation, PMP)에 관한 관심도 증가하고 있다. 가능최대강수량의 경우 대규모 수공 구조물, 댐의 설계나 가능최대홍수량(Probable Maximum Flood, PMF) 산정에 사용 되며, 세계 기상 기구(World Meteorological Organiztion, WMO)는 가능최대강수량 산정 방법으로 수문기상학적 방법, 통계학적 방법, 포락 곡선 방법을 제안하고 있으며, 통계학적 가능최대강수량 산정방법으로는 Hershfield가 제안한 방법을 제시하고 있다. Hershfield가 제안한 방법의 경우 빈도계수를 사용하며, Hershfield(1961)는 빈도계수의 값을 15로 제안하였으나, 1965년에 빈도계수는 강우 지속시간과 평균에 따라 5~20 값을 갖는 노모그래프를 제안하였다. 본 연구에서는 빈도계수 산정 방법, 노모그래프를 이용한 빈도계수의 값 2가지를 산정한 후 국내 가능최대강수량 보고서와 비교하여 통계학적 가능최대강수량 산정 방법을 결정한 후, 결정된 빈도계수 산정 방법을 SSP시나리오에 이용하여 미래의 통계학적 가능최대강수량을 산정하여 가능최대강수량의 변화를 분석하고자 한다.

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Assessment of CMIP5 GCMs for future extreme drought analysis (미래 극한 가뭄 전망을 위한 CMIP5 GCMs 평가)

  • Hong, Hyun-Pyo;Park, Seo-Yeon;Kim, Tae-Woong;Lee, Joo-Heon
    • Journal of Korea Water Resources Association
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    • v.51 no.7
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    • pp.617-627
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    • 2018
  • In this study, CMIP5 GCMs rainfall data (2011~2099) based on RCP scenarios were used to analyze the extreme drought evaluation for the future period. For prospective drought assessment, historical observations were used based on the Automated Surface Observing System (ASOS) data (1976~2010) of the Korea Meteorological Administration. Through the analysis of various indicators, such as average annual rainfall, rainy days, drought spell, and average drought severity was carried out for the drought evaluation of the five major river basins (Han river, Nakdong river, Geum river, Sumjin river, and Youngsan river) over the Korean peninsula. The GCMs that predicted the most severe future droughts are CMCC-CMS, IPSL-CM5A-LR and IPSL-CM5A-MR. Moderate future droughts were predicted from HadGEM2-CC, CMCC-CM and HadGEM2-ES. GCMs with relatively weak future drought forecasts were selected as CESM1-CAM5, MIROC-ESM-CHEM and CanESM2. The results of this study might be used as a fundamental data to choose a reasonable climate change scenario in future extreme drought evaluation.

Development Strategy for New Climate Change Scenarios based on RCP (온실가스 시나리오 RCP에 대한 새로운 기후변화 시나리오 개발 전략)

  • Baek, Hee-Jeong;Cho, ChunHo;Kwon, Won-Tae;Kim, Seong-Kyoun;Cho, Joo-Young;Kim, Yeongsin
    • Journal of Climate Change Research
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    • v.2 no.1
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    • pp.55-68
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    • 2011
  • The Intergovernmental Panel on Climate Change(IPCC) has identified the causes of climate change and come up with measures to address it at the global level. Its key component of the work involves developing and assessing future climate change scenarios. The IPCC Expert Meeting in September 2007 identified a new greenhouse gas concentration scenario "Representative Concentration Pathway(RCP)" and established the framework and development schedules for Climate Modeling (CM), Integrated Assessment Modeling(IAM), Impact Adaptation Vulnerability(IAV) community for the fifth IPCC Assessment Reports while 130 researchers and users took part in. The CM community at the IPCC Expert Meeting in September 2008, agreed on a new set of coordinated climate model experiments, the phase five of the Coupled Model Intercomparison Project(CMIP5), which consists of more than 30 standardized experiment protocols for the shortterm and long-term time scales, in order to enhance understanding on climate change for the IPCC AR5 and to develop climate change scenarios and to address major issues raised at the IPCC AR4. Since early 2009, fourteen countries including the Korea have been carrying out CMIP5-related projects. Withe increasing interest on climate change, in 2009 the COdinated Regional Downscaling EXperiment(CORDEX) has been launched to generate regional and local level information on climate change. The National Institute of Meteorological Research(NIMR) under the Korea Meteorological Administration (KMA) has contributed to the IPCC AR4 by developing climate change scenarios based on IPCC SRES using ECHO-G and embarked on crafting national scenarios for climate change as well as RCP-based global ones by engaging in international projects such as CMIP5 and CORDEX. NIMR/KMA will make a contribution to drawing the IPCC AR5 and will develop national climate change scenarios reflecting geographical factors, local climate characteristics and user needs and provide them to national IAV and IAM communites to assess future regional climate impacts and take action.

Design and Implementation of the SNMP based Management System for SNMP&OSI Network (SNMP기반 SNMP/OSI 통합 망 관리 시스템 설계 및 구현)

  • Lee, Young-Jun
    • The Journal of Korean Association of Computer Education
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    • v.6 no.3
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    • pp.57-64
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    • 2003
  • If we are using SNMP based network management systems and we need to manage new OSI based network elements, we have to develop new network management system. Most of the networks, which are composed of diverse. heterogeneous network nodes, are managed by CMIP based management system. The development of new management system, however, is very costly. In this paper, we show the design and implementation of the SNMP based network management system with minor changes for the management of OSI network and network elements.

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