• 제목/요약/키워드: Arctic warming

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미래 기후 변화 시나리오에 따른 환북극의 변화 (Projection of Circum-Arctic Features Under Climate Change)

  • 이지연;조미현;고영대;김백민;정지훈
    • 대기
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    • 제28권4호
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    • pp.393-402
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    • 2018
  • This study investigated future changes in the Arctic permafrost features and related biogeochemical alterations under global warming. The Community Land Model (CLM) with biogeochemistry (BGC) was run for the period 2005 to 2099 with projected future climate based on the Special Report on Emissions Scenarios (SRES) A2 scenario. Under global warming, over the Arctic land except for the permafrost region, the rise in soil temperature led to an increase in soil liquid and decrease in soil ice. Also, the Arctic ground obtained carbon dioxide from the atmosphere due to the increase in photosynthesis of vegetation. On the other hand, over the permafrost region, the microbial respiration was increased due to thawing permafrost, resulting in increased carbon dioxide emissions. Methane emissions associated with total water storage have increased over most of Arctic land, especially in the permafrost region. Methane releases were predicted to be greatly increased especially near the rivers and lakes associated with an increased chance of flooding. In conclusion, at the end of $21^{st}$ century, except for permafrost region, the Arctic ground is projected to be the sink of carbon dioxide, and only permafrost region the source of carbon dioxide. This study suggests that thawing permafrost can further to accelerate global warming significantly.

북극의 관리체제와 국제기구 : 북극이사회(Arctic Council)를 중심으로 (Arctic Governance and International Organization : A Focus on the Arctic Council)

  • 진동민;서현교;최선웅
    • Ocean and Polar Research
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    • 제32권1호
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    • pp.85-95
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    • 2010
  • There is increasing consensus that global warming is seriously affecting the Arctic region. Sea Ice decreases and sea level rise have led to environmental change in Arctic Ecosystems, while also making the Arctic sea route more accessible to humans. There are complicated international governance dynamics in play, in addition to commercial and scientific interests in the Arctic region. This provides a unique opportunity for Korea to lead the future direction of Arctic policy in response to the global issues such as climate change and economic or scientific interests. Korea acquired Ad-hoc Observer status of the Arctic Council(AC) in 2008, which is the only pan-Arctic intergovernmental organization. It consists of six working groups: ACAP, AMAP, CAFF, PAME, EPPR, SDWG that implement research, survey, and monitoring. AC's Observer country has the opportunity to participate in a diverse range of activities such technical and expertise support, research and monitoring, financial support and conference organization. In order for Korea to expand its activities in the Arctic region, we suggest the following approach: First, Korea should become more actively engaged with the Arctic Council and its activities; Second, Korea should construct organized collaborative networks of national experts to respond to Arctic issues; Third, Korea should develop collaborations with Arctic states; Finally, Korea should intensify its research on international relations and international laws related to the Arctic region.

북극해 일대에서 본격화되기 시작한 강대국 경쟁 (The Return of Great Power Competition to the Arctic)

  • 홍규덕;송승종;권태환;정재호
    • 해양안보
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    • 제2권1호
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    • pp.151-184
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    • 2021
  • 21세기 최대의 화두 중 하나는 기후이변으로 인한 지구 온난화 현상이다. 지구온난화는 글로벌 생태계를 위협하는 재앙인 동시에, 북극항로의 상용화를 통한 물류비용 절감이나 광물자원 개발 등을 가능케 하는 기회이기도 하다. 지구의 생태·환경 위협과 새로운 경제적 기회가 병존하는 '북극의 역설'이 글로벌 국제환경에 심대한 영향을 미치게 될 것임을 예고한다. 빙하가 사라지면서, 수에즈-파나마 운하를 통과하지 않고 북극해를 통과하는 루트가 '제3의 항로'로 떠올랐다. 이는 기존 항로의 거리를 30% 정도 줄일 수 있다. 아울러 지구 온난화는 지정학적 패러다임의 변화를 몰고왔다. 북극 얼음이 녹아내리기 시작하면서 북극이 '상수'가 아닌 21세기 최대의 지정학적 '변수'로 떠오를 조짐이다. 이에 따라 탈냉전 시대에 들어 '평화와 협력의 공간'으로 인식되던 북극이 군사·안보측면이 강조되는 새로운 전략환경에 직면하고 있다. 냉전종결 이후 한동안 환경보호 등을 중심으로 협력적 모습을 보이던 북극이 다시금 '냉전 2.0'을 예고하며, 강대국들 간의 새로운 경쟁과 대결의 무대로 변모하고 있다. 본 연구의 목적은 북극해의 전략적 가치를 지정학적 및 지경학적 관점에서 평가하고, 북극 일대에서 벌어지는 신냉전 다이내믹을 분석함으로써, 이를 바탕으로 우리에게 주는 전략적 함의를 도출해 보는 것이다.

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기후변화에 따른 북극해 빙해역 변화 (Projected Sea-ice Changes in the Arctic Sea under Global Warming)

  • 권미옥;장찬주;이호진
    • Ocean and Polar Research
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    • 제32권4호
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    • pp.379-386
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    • 2010
  • This study examines changes in the Arctic sea ice associated with global warming by analyzing the climate coupled general circulation models (CGCMs) provided in the Fourth Assessment Report of the Intergovernmental Panel on Climate Change. We selected nine models for better performance under 20th century climate conditions based on two different criteria, and then estimated the changes in sea ice extent under global warming conditions. Under projected 21st century climate conditions, all models, with the exception of the GISS-AOM model, project a reduction in sea ice extent in all seasons. The mean reduction in summer (-63%) is almost four times larger than that in winter (-16%), resulting an enhancement of seasonal variations in sea ice extent. The difference between the models, however, becomes larger under the 21st century climate conditions than under 20th century conditions, thus limiting the reliability of sea-ice projections derived from the current CGCMs.

북극 온난화에 따른 겨울철 대기 변동성 분석 연구 (Analysis on Winter Atmosphereic Variability Related to Arctic Warming)

  • 김백민;정의현;임규호;김현경
    • 대기
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    • 제24권2호
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    • pp.131-140
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    • 2014
  • The "Barents Oscillation (BO)", first designated by Paul Skeie (2000), is an anomalous recurring atmospheric circulation pattern of high relevance for the climate of the Nordic Seas and Siberia, which is defined as the second Emperical Orthogonal Function (EOF) of monthly winter sea level pressure (SLP) anomalies, where the leading EOF is the Arctic Oscillation (AO). BO, however, did not attracted much interest. In recent two decades, variability of BO tends to increase. In this study, we analyzed the spatio-temporal structures of Atmospheric internal modes such as Arctic Oscillation (AO) and Barents Oscillation (BO) and examined how these are related with Arctic warming in recent decade. We identified various aspects of BO, not dealt in Skeie (2000), such as upper-level circulation and surface characteristics for extended period including recent decade and examined link with other surface variables such as sea-ice and sea surface temperature. From the results, it was shown that the BO showed more regionally confined spatial pattern compared to AO and has intensified during recent decade. The regional dipolelar structure centered at Barents sea and Siberia was revealed in both sea-level pressure and 500 hPa geopotential height. Also, BO showed a stronger link (correlation) with sea-ice and sea surface temperature especially over Barents-Kara seas suggesting it is playing an important role for recent Arctic amplification. BO also showed high correlation with Ural Blocking Index (UBI), which measures seasonal activity of Ural blocking. Since Ural blocking is known as a major component of Eurasian winter monsoon and can be linked to extreme weathers, we suggest deeper understanding of BO can provide a missing link between recent Arctic amplification and increase in extreme weathers in midlatitude in recent decades.

Status of Korean Research Activity on Arctic Sea Ice Monitoring using KOMPSAT-series Satellite

  • Kim, Hyun-cheol;Chae, Tae-Byeong
    • 한국지구과학회지
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    • 제40권4호
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    • pp.329-339
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    • 2019
  • Arctic warming is a global issue. The sea ice in the Arctic plays a crucial role in the climate system. We thought that a recent abnormality in many countries in the northern hemisphere could be related to the effects of shrinking sea ice in the Arctic. Many research groups monitor sea ice in the Arctic for climate research. Satellite remote sensing is an integral part of Arctic sea ice research due to the Arctic's large size, making it difficult to observe with general research equipment, and its extreme environment that is difficult for humans to access. Along with monitoring recent weather changes, Korea scientists are conducting polar remote sensing using a Korean satellite series to actively cope with environmental changes in the Arctic. The Korean satellite series is known as KOMPSAT (Korea Multi-Purpose Satellite, Korean name is Arirang) series, and it carries optical and imaging radar. Since the organization of the Satellite Remote Sensing and Cryosphere Information Center in Korea in 2016, Korean research on and monitoring of Arctic sea ice has accelerated rapidly. Moreover, a community of researchers studying Arctic sea ice by satellite remote sensing increased in Korea. In this article, we review advances in Korea's remote sensing research for the polar cryosphere over the last several years. In addition to satellite remote sensing, interdisciplinary studies are needed to resolve the current limitations on research on climate change.

한반도의 고산과 아고산의 지생태 (The Alpine and Subalpine Geoecology of the Korean Peninsula)

  • 공우석
    • The Korean Journal of Ecology
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    • 제21권4호
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    • pp.383-387
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    • 1998
  • the geoecology of the alpine and subalpine belts of the Korean Peninsula, its component plant group, its environmental history, and climatic amplitudes of the arctic-alpine and alpine plants has reviewed and discussed. The present-day alpine and subalpine landscapes are likely to have been formed during the post-glacial warming phase. The disjunctive distribution of many alpine and subalpine plants, however, suggests a former continuous distribution of these both locally and on a broader, and the subsequent breakdown of a former continuous range into fragments as the climate ameliorated during the post-glacial warming phase. The presences of numerous arctic-alpine and alpine plants on the alpine and subalpine belts of the Korean Peninsula, are mainly their relative degree of sensitivity to high summer temperatures. The continued survivals of alpine species and landscape in Korea is in danger if global warming associated the greenhouse effect takes place.

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A Study of Arctic Microbial Community Structure Response to Increased Temperature and Precipitation by Phospholipid Fatty Acid Analysis

  • Sungjin Nam;Ji Young Jung
    • Proceedings of the National Institute of Ecology of the Republic of Korea
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    • 제4권2호
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    • pp.86-94
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    • 2023
  • Climate change is more rapid in the Arctic than elsewhere in the world, and increased precipitation and warming are expected cause changes in biogeochemical processes due to altered microbial communities and activities. It is crucial to investigate microbial responses to climate change to understand changes in carbon and nitrogen dynamics. We investigated the effects of increased temperature and precipitation on microbial biomass and community structure in dry tundra using two depths of soil samples (organic and mineral layers) under four treatments (control, warming, increased precipitation, and warming with increased precipitation) during the growing season (June-September) in Cambridge Bay, Canada (69°N, 105°W). A phospholipid fatty acid (PLFA) analysis method was applied to detect active microorganisms and distinguish major functional groups (e.g., fungi and bacteria) with different roles in organic matter decomposition. The soil layers featured different biomass and community structure; ratios of fungal/bacterial and gram-positive/-negative bacteria were higher in the mineral layer, possibly connected to low substrate quality. Increased temperature and precipitation had no effect in either layer, possibly due to the relatively short treatment period (seven years) or the ecosystem type. Mostly, sampling times did not affect PLFAs in the organic layer, but June mineral soil samples showed higher contents of total PLFAs and PLFA biomarkers for bacteria and fungi than those in other months. Despite the lack of response found in this investigation, long-term monitoring of these communities should be maintained because of the slow response times of vegetation and other parameters in high-Arctic ecosystems.

북극해에서 다중위성 자료를 이용한 표층수온, 해빙농도 및 클로로필의 장기 변화 (Climatological Variability of Multisatellite-derived Sea Surface Temperature, Sea Ice Concentration, Chlorophyll-a in the Arctic Ocean)

  • 김현아;박진구;김현철;손영백
    • 대한원격탐사학회지
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    • 제33권6_1호
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    • pp.901-915
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    • 2017
  • 최근 전지구적인 기후변화가 직/간접적으로 북극환경에 큰 변화를 야기하고 있다. 해양-대기의 상호적인 피드백 작용은 최근 막대한 양의 해빙면적 감소를 초래했으며, 북극 온난화 현상을 가속시켜 왔다. 이러한 현상들은 직/간접적으로 북극의 생-물리학적 상호관계에 영향을 주어 해양생태계에 많은 변화를 초래할 것으로 보고되었다. 본 연구는 북극환경변화에 대해 물리-생물학적인 현상의 변화 및 인자간의 관계성을 포괄적으로 이해하기 위해 수행되었다. 북극의 환경변화를 조사하기 위해 SeaWiFS 및 MODIS-Aqua에서 제공하는 클로로필 농도와 OISST의 표층수온, ECMWF ERA-Interim의 해빙농도 자료를 이용하였다. 연구기간은 1998년-2016년 여름이며 조사해역은 북위 $60^{\circ}$ 이상의 해역으로 제한하였다. 전체적으로 클로로필의 증가($0.15mg\;m^{-3}\;decade^{-1}$), 표층수온의 상승($0.43^{\circ}C\;decade^{-1}$), 해빙농도의 감소($-5.37%\;decade^{-1}$)를 보였으나 해역별로 차이를 나타냈다. 이들 인자간 상관성 분석에서 표층수온과 해빙농도간의 상관성은 전 해역에 걸쳐 강한 음의 상관관계(r=-0.76)를 보인 반면, 클로로필과 해빙농도의 관계는 자료의 한계성으로 인해 전체적으로 낮은 상관성($r={\pm}0.1$)을 나타내었다. 또한 표층수온과 클로로필의 상관성은 해역에 따라 편차를 보이나 약 ${\pm}0.6$의 상관성을 보였다.

HadCRU4 관측 온도자료와 20CR 재분석 자료 비교로부터 확인된 1900년대 초반 극지역 평균 온도 추정의 불확실성 (Uncertainty in the Estimation of Arctic Surface Temperature during Early 1900s Revealed by the Comparison between HadCRU4 and 20CR Reanalysis)

  • 김백민;김진영
    • 한국기후변화학회지
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    • 제6권2호
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    • pp.95-104
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    • 2015
  • To discuss whether we have credible estimations about historical surface temperature evolution since industrial revolution or not, present study investigates consistencies and differences of averaged surface air temperature since 1900 between the multiple data sources: Hadley Center Climate Research Unit (HadCRU4) surface air temperature data, ECMWF 20 Century Reanalysis data (ERA20CR), and NCEP 20 Century Reanalysis data (NCEP20CR). Averaged surface temperatures are obtained for the global, polar (90S~60S, 60N~0N), midlatitude (60S~30S, 30N~60N), tropical (30S~30N) region, separately. From the analysis, we show that: 1) spatio-temporal inhomogenity and scarcity of HadCRU4 data are not major obstacles in the reliable estimation of global surface air temperature. 2) Globally averaged temperature variability is largely contributed by those of tropical and midlatitude, which occupy more than 70% of earth surface in area. 3) Both data show consistent temperature variability in tropical region. 4) ERA20CR does not capture warm period over Arctic region in early 1900s, which is obvious feature in HadCRU4 data. Discrepancies among datasets suggest that high-level caution is needed especially in the interpretation of large Arctic warming in the early 1900s, which is often regarded as a natural variability in the Arctic region.