• Title/Summary/Keyword: AR5 RCP

Search Result 44, Processing Time 0.029 seconds

Improvement of safety for floods according to analysis of climate change scenario and flood defense measurement (기후변화 시나리오 및 치수 대책 변화 분석에 따른 치수안전도 개선)

  • Kim, Myojeong;Kim, Gwangseob
    • Proceedings of the Korea Water Resources Association Conference
    • /
    • 2017.05a
    • /
    • pp.343-343
    • /
    • 2017
  • 기후변화로 인하여 평균 기온 및 강수량이 증가하고 이에 따라 홍수의 발생 빈도가 증가한다. 기후변화에 따른 미래 예측은 기후변화 시나리오로 분석하고 있으며, 현재 사용하는 기후변화 시나리오는 2013년에 발간된 IPCC (Intergovernmental Panel on Climate Change) 5차 평가보고서(AR5)에서 2007년에 발간된 IPCC 4차 평가보고서(AR4)에 사용한 SRES(Special Report on Emission Scenario) 온실가스 시나리오를 대신하여 대표농도 경로 RCP(Representative Concentration Pathways)를 사용한다. 기후변화 시나리오에 따라 기온 상승률 및 강수량의 증가량, 극한 강우사상의 발생 빈도 및 발생 정도가 다르게 결정되며, 이에 따라 IPCC에서 제시하는 기후변화 취약성 평가 이론의 민감도 지수가 시나리오에 따라 증가하는 정도가 다르게 산정된다. 민감도 지수의 증가는 홍수위험지수의 증가로 이어지며, 이에 따라 치수대책 변화를 분석하여 치수안전도 개선 및 수재해에 의한 위험을 대비할 수 있다. 본 연구에서는 기후변화 시나리오에 따른 연평균강수량, 일최대강수량과 같은 극치 강수량과 치수 대책 변화 및 치수대책변수의 현황, 치수대책변수의 개선가능범위 분석을 통한 치수안전도 개선 효과를 분석하였다.

  • PDF

A study on the assessment of hydrological safety using Climate change scenario on Chungju dam (기후변화 시나리오를 적용한 충주댐의 수문학적 안전성 평가)

  • Park, Jiyeon;Gwon, Ji-Hye;Kwon, Ji-Hye
    • Proceedings of the Korea Water Resources Association Conference
    • /
    • 2017.05a
    • /
    • pp.479-479
    • /
    • 2017
  • 전지구적으로 진행 중인 기후변화 및 토지이용변화 등으로 강우량 및 유출량의 증가는 지속적으로 전망되고 있지만 현재 댐 시설물의 설계 및 유지관리에 대한 기준 및 제도에는 이러한 기후변화 영향에 대한 대책 및 적응방안이 포함되어 있지 않다. 기후변화로 인해 지속적 증가로 예상되는 피해에 대응하기 위하여 댐 수문학적 안전성 재평가가 필수적이고, 그에 따른 각종 위험도 및 취약성 평가가 함께 수반되어야 한다. 따라서 본 논문에서는 기후변화 시나리오를 적용하여 미래에 대한 댐의 수문학적 안전성 평가를 수행하고자 한다. 이를 평가하기 위하여 IPCC AR5 RCP 4.5/8.5시나리오를 사용하여 충주댐 유역의 가능최대강수량(PMP)와 가능최대홍수량(PMF) 산출 및 댐의 월류 및 여유고 확보 여부를 판단하였다. 그 결과를 사용하여 기후변화에 따른 전 기간(2040, 2070, 2100)에 대한 수문학적 안전성평가를 수행하여 향후 미래에 대한 안전성을 검토하고자 한다.

  • PDF

Development of index for flood risk assessment on national scale and future outlook (전국 단위 홍수위험도 평가를 위한 지수 개발과 미래 전망)

  • Kim, Daeho;Kim, Young-Oh;Jee, Hee Won;Kang, Tae-Ho
    • Journal of Korea Water Resources Association
    • /
    • v.53 no.5
    • /
    • pp.323-336
    • /
    • 2020
  • Owing to climate change, the annual precipitation in Korea has increased since the 20th century, and it is projected to continue increasing in the future. This trend of increasing precipitation will raise the possibility of floods; hence, it is necessary to establish national adaptation plans for floods, based on a reasonable flood risk assessment. Therefore, this study focuses on developing a framework that can assess the flood risk across the country, as well as computing the flood risk index (FRI). The framework, which is based on IPCC AR5, is established as a combination of three indicators: hazard, exposure, and capacity. A data-based approach was used, and the weights of each component were assigned to improve the validity of the FRI. A Spearman correlation analysis between the FRI and flood damage verified that the index was capable of assessing potential flood damage. When predicting scenarios for future assessment using the HadGEM3-RA based on RCP 4.5 and 8.5, the flood risk tends to be lower in the early and mid-21st century, and it becomes higher at the end of the 21st century as compared with the present.

Estimation of irrigation water need with climate change in Jeju Island (AR5 기후변화 시나리오에 따른 제주도 효돈천 유역의 수문학적 영향 전망)

  • Kim, Chul-Gyum;Kim, Nam-Won;Cho, Jaepil
    • Proceedings of the Korea Water Resources Association Conference
    • /
    • 2018.05a
    • /
    • pp.362-362
    • /
    • 2018
  • 본 연구에서는 제주도 서귀포시에 위치한 효돈천 유역(유역면적 $52km^2$)을 대상으로 기후변화로 인한 미래의 수문학적 변화를 전망하였다. 대표적 유역모형인 SWAT (Soil and Water Assessment Tool)을 기반으로, 제주도 지역의 독특한 유출 특성을 잘 모의할 수 있도록 한계유출모의기법(Chung et al., 2011)과 간헐하천 모의기법(Kim et al., 2013)을 적용하였다. 기후변화 영향을 분석하는데 있어 특정 기후모델 적용에 따른 불확실성을 피하기 위해 IPCC (International Panel on Climate Change)에서 제시하는 대순환모델 (General Circulation Model, GCM) 중 SWAT 모형의 기상입력자료(강수량, 온도, 상대습도, 풍속, 일사량)를 모두 제공하는 9개 GCM을 선정하고, 2개 기후변화 시나리오(RCP 4.5, 8.5)에 따른 미래 전망자료를 SWAT 모형의 입력자료로 활용하였다. 과거기간(1992~2013년)에 대해 SWAT 모의결과로부터 분석한 효돈천 유역의 평균 연 강수량은 2,694 mm, 증발산량은 642 mm, 유출량은 534 mm, 지하수 함양량은 1,521 mm로서, 강수량 대비 유출률은 약 19%로 나타났다. 9개 GCM 자료로부터 미래의 수문변화를 기간별(2010~2039, 2040~2069, 2070~2099)로 구분하여 분석한 결과, 연 강수량, 증발산량, 유출량, 함양량, 유출률 모두 미래 후반기로 갈수록 증가폭이 크게 나타났으며, RCP 8.5에서 상대적으로 더 크게 증가할 것으로 전망되었다. 과거기간 대비 강수량은 최대 24%, 증발산량 18%, 유출량 52%, 함양량 16%까지 증가가 예상되었다. 월별로는 8월과 9월의 강수량 증가로 인해 유출량과 함양량도 같이 8월과 9월에 큰 폭으로 증가할 것으로 전망되었다. 증발산량은 1월에서 8월까지는 증가할 것으로 전망되지만, 9월~12월에는 약간의 감소 또는 큰 변화가 없는 것으로 나타났다. GCM 자료에 따른 결과를 보면 증발산량은 월별 차이가 크지 않으나, 강수량을 비롯하여 유출량과 함양량은 여름철을 중심으로 GCM에 따른 차이가 상대적으로 크게 나타났다.

  • PDF

Evaluation of Rice Nitrogen Utilization Efficiency under High Temperature and High Carbon Dioxide Conditions

  • Hyeonsoo Jang;Wan-Gyu Sang;Yun-Ho Lee;Hui-woo Lee;Pyeong Shin;Dae-Uk Kim;Jin-Hui Ryu;Jong-Tak Youn
    • Proceedings of the Korean Society of Crop Science Conference
    • /
    • 2022.10a
    • /
    • pp.168-168
    • /
    • 2022
  • According to the 5th Climate Change Report, global average temperature in 2081~2100 will increase 1.8℃ based on RCP 4.5 and 3.7℃ based on RCP 8.5 from the current climate value (IPCC Working Group I AR5). As temperature is expected to increase due to global warming and the intensity and frequency of rainfall are expected to increase, damage to crops is expected, and countermeasures must be taken. This study intends to evaluate rice growth in terms of nitrogen utilization efficiency according to future climate change conditions. In this experiment, Oryza sativa cv. Shindongjin were planted at the SPAR facility of the NICS in Wanju-gun, Jeollabuk-do on June 10, and were planted and grown according to the standard cultivation method. Cultivation conditions are high temperature, high CO2 (current temperature+4.7℃·CO2 800ppm), high temperature (current temperature+4.7℃·CO2 400ppm), current climate (current tempreture·CO2 400 ppm). Nitrogen was varied as 0, 9, 18 kg/10a. The N content and C/N ratio of all rice leaves, stems, and seeds increased at high temperature, and the N content and C/N ratio decreased under high temperature and high CO2 conditions com pared to high temperature. Compared to the current climate, NUE increases by about 8% under high temperature and high CO2 conditions and by about 2% under high temperature conditions. This seems to be because the increase in temperature and CO2 induced the increase in biomass. ANUE related to yield decreased by about 70% compared to the current climate under high temperature conditions, and decreased by about 45% at high temperature and high CO2, showing a tendency to decrease compared to high temperature. This appears to be due to reduced fertility and poor ripening due to high temperature stress. However, as the nitrogen increased, the number of ears and the number of grains increased, slightly offsetting the production reduction factor.

  • PDF

Uncertainty Characteristics in Future Prediction of Agrometeorological Indicators using a Climatic Water Budget Approach (기후학적 물수지를 적용한 기후변화에 따른 농업기상지표 변동예측의 불확실성)

  • Nam, Won-Ho;Hong, Eun-Mi;Choi, Jin-Yong;Cho, Jaepil;Hayes, Michael J.
    • Journal of The Korean Society of Agricultural Engineers
    • /
    • v.57 no.2
    • /
    • pp.1-13
    • /
    • 2015
  • The Coupled Model Intercomparison Project Phase 5 (CMIP5), coordinated by the World Climate Research Programme in support of the Intergovernmental Panel on Climate Change (IPCC) AR5, is the most recent, provides projections of future climate change using various global climate models under four major greenhouse gas emission scenarios. There is a wide selection of climate models available to provide projections of future climate change. These provide for a wide range of possible outcomes when trying to inform managers about possible climate changes. Hence, future agrometeorological indicators estimation will be much impacted by which global climate model and climate change scenarios are used. Decision makers are increasingly expected to use climate information, but the uncertainties associated with global climate models pose substantial hurdles for agricultural resources planning. Although it is the most reasonable that quantifying of the future uncertainty using climate change scenarios, preliminary analysis using reasonable factors for selecting a subset for decision making are needed. In order to narrow the projections to a handful of models that could be used in a climate change impact study, we could provide effective information for selecting climate model and scenarios for climate change impact assessment using maximum/minimum temperature, precipitation, reference evapotranspiration, and moisture index of nine Representative Concentration Pathways (RCP) scenarios.

Intercomparison of uncertainty to bias correction methods and GCM selection in precipitation projections (강수량예측에서 편이보정방법과 GCM 선택에 대한 불확실성 비교)

  • Song, Young Hoon;Chung, Eun-Sung
    • Journal of Korea Water Resources Association
    • /
    • v.53 no.4
    • /
    • pp.249-258
    • /
    • 2020
  • Many climate studies have used the general circulation models (GCMs) for climate change, which can be currently available more than sixty GCMs as part of the Assessment Report (AR5). There are several types of uncertainty in climate studies using GCMs. Various studies are currently being conducted to reduce the uncertainty associated with GCMs, and the bias correction method used to reduce the difference between the simulated and the observed rainfall. Therefore, this study mainly considered climate change scenarios from nine GCMs, and then quantile mapping methods were applied to correct biases in climate change scenarios for each station during the historical period (1970-2005). Moreover, the monthly rainfall for the future period (2011-2100) is obtained from the RCP 4.5 scenario. Based on the bias-corrected rainfall, the standard deviation and the inter-quartile range (IQR) from the first to third quartiles were estimated. For 2071-2100, the uncertainty for the selection of GCMs is larger than that for the selection of bias correction methods and vice versa for 2011-2040. Therefore, this study showed that the selection of GCMs and the bias correction methods can affect the result for the future climate projection.

Future Change Using the CMIP5 MME and Best Models: I. Near and Long Term Future Change of Temperature and Precipitation over East Asia (CMIP5 MME와 Best 모델의 비교를 통해 살펴본 미래전망: I. 동아시아 기온과 강수의 단기 및 장기 미래전망)

  • Moon, Hyejin;Kim, Byeong-Hee;Oh, Hyoeun;Lee, June-Yi;Ha, Kyung-Ja
    • Atmosphere
    • /
    • v.24 no.3
    • /
    • pp.403-417
    • /
    • 2014
  • Future changes in seasonal mean temperature and precipitation over East Asia under anthropogenic global warming are investigated by comparing the historical run for 1979~2005 and the Representative Concentration Pathway (RCP) 4.5 run for 2006~2100 with 20 coupled models which participated in the phase five of Coupled Model Inter-comparison Project (CMIP5). Although an increase in future temperature over the East Asian monsoon region has been commonly accepted, the prediction of future precipitation under global warming still has considerable uncertainties with a large inter-model spread. Thus, we select best five models, based on the evaluation of models' performance in present climate for boreal summer and winter seasons, to reduce uncertainties in future projection. Overall, the CMIP5 models better simulate climatological temperature and precipitation over East Asia than the phase 3 of CMIP and the five best models' multi-model ensemble (B5MME) has better performance than all 20 models' multi-model ensemble (MME). Under anthropogenic global warming, significant increases are expected in both temperature and land-ocean thermal contrast over the entire East Asia region during both seasons for near and long term future. The contrast of future precipitation in winter between land and ocean will decrease over East Asia whereas that in summer particularly over the Korean Peninsula, associated with the Changma, will increase. Taking into account model validation and uncertainty estimation, this study has made an effort on providing a more reliable range of future change for temperature and precipitation particularly over the Korean Peninsula than previous studies.

Global Assessment of Climate Change-Associated Drought Risk

  • Kim, Heey Jin;Kim, Yeonjoo
    • Proceedings of the Korea Water Resources Association Conference
    • /
    • 2019.05a
    • /
    • pp.397-397
    • /
    • 2019
  • With the consequences of climate change becoming more evident, research on climate-associated risks has become a basis for climate adaptation and mitigation. Amongst the different sectors and natural resources considered in assessing such risks, drought is one impact to our environment that experiences stress from climate change but is often overlooked and has the potential to bring severe consequences when drought occurs. For example, when temperatures are higher, water demand increases and water supply decreases; when precipitation patterns fluctuate immensely, floods and droughts occur more frequently at greater magnitudes, putting stress on ecosystems. Hence, it is important for us to evaluate drought risk to observe how different climate change and socioeconomic scenarios can affect this vital life resource. In this study, we review the context of drought risk on the basis of climate change impacts and socioeconomic indicators. As underlined in the IPCC AR5 report, the risks are identified by understanding the vulnerability, exposure, and hazards of drought. This study analyzed drought risk on a global scale with different RCP scenarios projected until the year 2099 with a focus on the variables population, precipitation, water resources, and temperature.

  • PDF

Vulnerability Assessment of Maize and Wheat Production to Temperature Change - In Case of USA and China - (기온변화에 대한 옥수수와 밀 생산량 취약성 평가 - 미국과 중국을 사례로 -)

  • Song, Yongho;Lee, Woo-Kyun;Kwak, Hanbin;Kim, Moonil;Yang, Seung-Ryong
    • Journal of Climate Change Research
    • /
    • v.4 no.4
    • /
    • pp.371-384
    • /
    • 2013
  • The appearance of abnormal weather caused by climate change have both direct and indirect impact on the society. Especially, agriculture is brought up as a socially important interest having direct impact of climate change in growth and harvest of crops. This study aims to perform vulnerability assessment for the South Korea's two main imported grains, maize and wheat. The production vulnerability assessment of maize and wheat in USA and China to temperature variability, which has a great impact in production, is performed. First, grain cultivation period which affects productivity of main grain production country was selected based on the main cultivation period from several references and previous studies. Then, Intergovernmental Panel on Climate Change AR5 greenhouse gas scenario RCP(representative concentration pathways)8.5 scenarios was used to select the future climate that correspond to the cultivation period of maize and wheat for each producing country. According to the result of production vulnerability analysis using adaptation (temperature changing trend) and sensitivity(temperature variability), the productivity of wheat was higher in USA, while productivity of maize was higher in China. In the future, the result showed that productivity of all two grains will be favorable in USA. The result of production vulnerability assessment through this study can later be used as a preparation data for the coming fluctuation in grain price due to climate change.