• 제목/요약/키워드: atmospheric blocking

검색결과 33건 처리시간 0.026초

겨울철 북서 태평양에서 발생하는 고위도 블로킹과 중앙 태평양 기압능이 한반도 한파에 미치는 영향 연구 (A Study of the Blocking and Ridge over the Western North Pacific in Winter and its Impact on Cold Surge on the Korean Peninsula)

  • 조건희;이은희;김백민
    • 대기
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    • 제33권1호
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    • pp.49-59
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    • 2023
  • Blocking refers to a class of weather phenomena appearing in the mid and high latitudes, whose characteristics are blocked airflow of persistence. Frequently found over the Pacific and Atlantic regions of the Northern Hemisphere, blocking affects severe weather in the surrounding areas with different mechanisms depending on the type of blocking patterns. Along with lots of studies about persistent weather extremes focusing on the specific types of blocking, a new categorization using Rossby wave breaking has emerged. This study aims to apply this concept to the classification of blockings over the Pacific and examine how different wave breakings specify the associated cold weather in the Korean peninsula. At the same time, we investigate a strongly developing ridge around the Pacific by designing a new detection algorithm, where a reversal method is modified to distinguish ridge-type blocking patterns. As result, Kamchatka blocking (KB) and strong ridge over the Central Pacific are observed the most frequently during 20 years (2001~2020) of the studied period, and anomalous low pressures with cold air over the Korean Peninsula are accompanied by blocking events. When it considers the Rossby wave breaking, cyclonic wave-breaking is dominant in KB, which generates low-pressure anomalies over the Korean Peninsula. However, KB with anticyclone wave breaking appears with the high-pressure anomalies over the Korean Peninsula and it generates the warm temperature anomaly. Lastly, the low-pressure anomalies are also generated by the strong ridge over the Central Pacific, which persists for approximately three days and give a significant impact on cold surge on the Korean Peninsula.

레이더 반사도 누적 방법을 이용한 지형에 의한 부분차폐영역의 레이더 반사도 보정 (Correction of Radar Reflectivity over Beam Blocking Area by Accumulated Radar Reflectivity)

  • 박성환;정성화;이정훈;김경익
    • 한국수자원학회논문집
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    • 제42권8호
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    • pp.607-617
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    • 2009
  • 레이더 빔 차폐는 송신된 레이더 빔이 지형 및 차폐물로 인해 부분 혹은 완전히 차단되는 현상으로 강수량 추정시 과소추정의 주된 원인이 된다. 본 연구에서는 레이더 누적반사도지도를 이용하여 지형에 의한 부분차폐영역의 반사도를 보정하였다. 누적반사도지도는 레이더 반사도를 누적하고, 공간적으로 균일한 레이더 반사도 장을 가정하여 작성하며, 빔 차폐를 분석하는데 유용한 자료이다. 차폐분석을 통해 차폐보정지도를 작성하고, 태풍과 장마 사례에 적용하여 차폐가 발생하지 않는 레이더 자료와의 평균분수오차를 분석하였다. 그 결과, 평균분수오차가 차폐보정 전에 20$\sim$35%로 나타났으나 차폐보정 후 7$\sim$10%로 감소하였다.

2016년과 2018년 한반도 폭염의 특징 비교와 분석 (Characteristics and Comparison of 2016 and 2018 Heat Wave in Korea)

  • 이희동;민기홍;배정호;차동현
    • 대기
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    • 제30권1호
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    • pp.1-15
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    • 2020
  • This study analyzed and compared development mechanisms leading to heat waves of 2016 and 2018 in Korea. The European Centre for Medium-Range Weather Forecasts Reanalysis Interim (ERA Interim) dataset and Automated Surface Observing System data are used for synoptic scale analysis. The synoptic conditions are investigated using geopotential height, temperature, equivalent potential temperature, thickness, potential vorticity, omega, outgoing longwave radiation, and blocking index, etc. Heat waves in South Korea occur in relation to Western North Pacific Subtropical High (WNPSH) pressure system which moves northwestward to East Asia during summer season. Especially in 2018, WNPSH intensified due to strong large-scale circulation associated with convective activities in the Philippine Sea, and moved farther north to Korea when compared to 2016. In addition, the Tibetan high near the tropopause settled over Northern China on top of WNPSH creating a very strong anticyclonic structure in the upper-level over the Korean Peninsula. Unlike 2018, WNPSH was weaker and centered over the East China Sea in 2016. Analysis of blocking indices show wide blocking phenomena over the North Pacific and the Eurasian continent during heat wave event in both years. The strong upper-level ridge which was positioned zonally near 60°N, made the WNPSH over the South Korea stagnant in both years. Analysis of heat wave intensity (HWI) and duration (HWD) show that HWI and HWD in 2018 was both strong leading to extreme high temperatures. In 2016 however, HWI was relatively weak compared to HWD. The longevity of HWD is attributed to atmosphere blocking in the surrounding Eurasian continent.

2006/2007 겨울철 한반도 이상 기후와 관련된 동아시아 지역 대기 순환의 특성 (Characteristics of Atmospheric Circulation over East Asia Associated with Unusual Climate of Korea in Winter 2006/2007)

  • 이현수;전종갑;강인식;문병권
    • 한국지구과학회지
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    • 제28권3호
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    • pp.374-387
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    • 2007
  • 2006/2007년 한반도에 이상적인 온난 겨울을 가져온 원인을 규명하기 위해 동아시아 지역 대기 순환의 특징을 조사하였다. 2006/2007년 겨울철 동안 대기 상태는 시베리아 고기압 및 알류산 저기압의 약화, 한반도 부근으로 하층 남동류의 강화, 일본 남쪽으로 상층 제트의 약화로 특징지워질 수 있다. 이러한 패턴은 시베리아 지역(60-140E)으로 블로킹 흐름이 없을 때 나타나는 대기 상태와 상당히 밀접한 관련성이 있다. 아울러 엘니뇨 및 북극 진동 역시 이런 패턴을 만들어 내는 것으로 보인다. 따라서, 블로킹과 무관한 대기 상태, 엘니뇨 및 양의 북극 진동이 원인이 되어 1958/1959-2006/2007 기간 중 2006/2007 겨울철에 한반도에서 가장 기온이 높았던 것으로 판단된다.

한국의 고농도 PM10 연무 사례일 발생에 대한 대기 블로킹의 영향과 장거리 수송 기여도 분석 (Analysis of Impacts of the Northeast Pacific Atmospheric Blocking and Contribution of Regional Transport to High-PM10 Haze Days in Korea)

  • 정재은;조재희;김학성
    • 한국지구과학회지
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    • 제43권1호
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    • pp.77-90
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    • 2022
  • 최근 동아시아 지역에서 인위적 배출량의 감소에도 불구하고, 봄철에 한국에서는 잦은 연무 사례가 발생하고 있다. 북동 태평양에서 자주 발생하는 대기 블로킹은 지구 규모 대기 변동과 동아시아 지역의 서풍 기류를 정체시키기도 한다. 2019년 3월 동아시아 지역의 온난하고 정체적인 종관 기상 특성이 알래스카 대기 블로킹이 발생한 6-7일 후에 일어나고 있었다. 특히, 2019년 3월 18-24일에 발생한 알래스카 대기 블로킹은 3월 25-28일 동안 한국에서 일평균 미세먼지(particulate matter; PM10) 질량농도가 50 ㎍ m-3을 넘는 고농도 PM10 연무 사례가 발생하는 데 영향을 미치고 있었다. 한편, WRF-Chem 모델을 활용하여 한국의 고농도 PM10 연무 사례에 대한 인위적 배출의 장거리 수송 기여도는 30-40%를 나타내고 있었다. PM10 에어로졸 구성 성분인 황산염, 질산염, 암모늄, 블랙 카본, 유기 탄소, 기타 무기물의 장거리 수송 기여도는 각각 10-15, 20-25, 5-10, 5-10, 5-10, 15-20%를 나타내었다. 질소 산화물이 온난하고 정체적인 대기에서 암모늄과의 광화학 반응으로 형성된 질산암모늄은 한국의 고농도 PM10 연무 사례에 대한 장거리 수송 기여도가 PM10 에어로졸 중 가장 큰 비중을 나타내고 있었다.

두 개의 산악 위에서의 연속적으로 성층화된 흐름의 흐름 체계 (Flow Regimes of Continuously Stratified Flow over a Double Mountain)

  • 한지영;김재진;백종진
    • 대기
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    • 제17권3호
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    • pp.231-240
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    • 2007
  • The flow regimes of continuously stratified flow over a double mountain and the effects of a double mountain on wave breaking, upstream blocking, and severe downslope windstorms are investigated using a mesoscale numerical model (ARPS). According to the occurrence or non-occurrence of wave breaking and upstream blocking, three different flow regimes are identified over a double mountain. Higher critical Froude numbers are required for wave breaking and upstream blocking initiation for a double mountain than for an isolated mountain. This means that the nonlinearity and blocking effect for a double mountain is larger than that for an isolated mountain. As the separation distance between two mountains decreases, the degree of flow nonlinearity increases, while the blocking effect decreases. A rapid increase of the surface horizontal velocity downwind of each mountain near the critical mountain height for wave breaking initiation indicates that severe downslope windstorms are enhanced by wave breaking. For the flow with wave breaking, the numerically calculated surface drag is much larger than theoretically calculated one because the region with the maximum negative perturbation pressure moves from the top to the downwind slope of each mountain as the internal jump propagating downwind occurs.

비휘발성 메모리 소자의 Gate-Blocking Layer 적용을 위한 $TiO_2$ 박막 특성 (Characteristic of $TiO_2$ Thin Film for Nonvolatile Memory Device's Gate-Blocking Layer)

  • 최학모;이광수;이준신
    • 한국전기전자재료학회:학술대회논문집
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    • 한국전기전자재료학회 2007년도 추계학술대회 논문집
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    • pp.199-200
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    • 2007
  • 본 논문에서는 $SiO_2$ Gate 유전체를 대체할 재료의 하나인 $TiO_2$, Gate 유전체의 기판 증착 온도에 따른 특성을 알아보고자 한다. 디바이스의 고집적화가 높아짐에 따라 얇은 두께의 Gate 유전체의 절대적인 필요에 따라 두께를 최소화하면서 유전율은 높아 전기적 특성이 우수한 소재를 찾게 되었다. 본 논문의 실험에서는 비휘발성 메모리 소자 제작시 Gate Blocking Layer 적용을 위해 High-k 물질인 $TiO_2$, 박막 증착 실험을 하였고, APCVD 방법을 사용하여 성장하였다. 증착 온도에 따른 I-V 특성을 분석하고 그에 따른 소자의 물리적 구조를 SEM을 통해 확인하면서 소자 제작시 최적의 온도를 찾고자 하였다.

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2016년 1월 폭설을 동반한 제주도 한파의 원인 재고찰 (Revisit the Cause of the Cold Surge in Jeju Island Accompanied by Heavy Snow in January 2016)

  • 한광희;구호영;배효준;김백민
    • 대기
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    • 제32권3호
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    • pp.207-221
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    • 2022
  • In Jeju, on January 23, 2016, a cold surge accompanied by heavy snowfall with the most significant amount of 12 cm was the highest record in 32 years. During this period, the temperature of 850 hPa in January was the lowest in 2016. Notably, in 2016, the average surface temperature of January on the Polar cap was the highest since 1991, and 500 hPa geopotential height also showed the highest value. With this condition, the polar vortex in the northern hemisphere meandered and expanded into the subtropics regionally, covering the Korean Peninsula with very high potential vorticity up to 7 Potential Vorticity Unit. As a result, the strong cold advection, mostly driven by a northerly wind, around the Korean Peninsula occurred at over 2𝜎. Previous studies have not addressed this extreme synoptic condition linked to polar vortex expansion due to the unprecedented Arctic warming. We suggest that the occurrence of a strong Ural blocking event after the abrupt warming of the Barents/Karas seas is a major cause of unusually strong cold advection. With a specified mesoscale model simulation with SST (Sea Surface Temperature), we also show that the warmer SST condition near the Korean Peninsula contributed to the heavy snowfall event on Jeju Island.

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.

블로킹에 의한 2014년 2월 동해안 지방 폭설 분석 (Analysis of the February 2014 East Coast Heavy SnowFall Case Due to Blocking)

  • 배정호;민기홍
    • 대기
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    • 제26권2호
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    • pp.227-241
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    • 2016
  • This study investigated the cause of the heavy snowfall that occurred in the East Coast of Korea from 6 February to 14 February 2014. The synoptic conditions were analyzed using blocking index, equivalent potential temperature, potential vorticity, maritime temperature difference, temperature advection, and ground convergence. During the case period, a large blocking pattern developed over the Western Pacific causing the flow to be stagnant, and there was a North-South oriented High-to-Low pressure system over the Korean Peninsula because of this arrangement. The case period was divided into three parts based on the synoptic forcing that was responsible for the heavy snowfall; detailed analyses were conducted for the first and last period. In the first period, a heavy snowfall occurred over the entire Korean Peninsula due to strong updrafts from baroclinic instability and a low pressure caused by potential vorticity located at the mid-troposphere. In the lower atmosphere, a North-South oriented High-to-Low pressure system over the Eastern Korea intensified the easterly airflow and created a convergence zone near the ground which strengthened the upslope effect of the Taebaek Mountain range with a cumulative fresh snowfall amount of 41 cm in the East Coast region. In the last period, the cold air nestled in the Maritime Province of Siberia and Manchuria strengthened much more than that in the first half and extended to the East Sea. The temperature difference between the 850 hPa air and the SST was large and convective clouds developed over the sea. The highest cumulative fresh snow amount of 39.7 cm was recorded in the coastal area during this period. During the entire period, vertically oriented equivalent potential temperature showed neutral stability layer that helped the cloud formation and development in the East Coast. The 2014 heavy snowfall case over the East Coast provinces of Korea were due to: 1) stagnation of the system by blocking pattern, 2) the dynamic effect of mid-level potential vorticity of 1.6 PVU, 3) the easterly air flow from North-South oriented High-to-Low pressure system, 4) the existence of vertically oriented neutral stable layer, and 5) the expansion of strong cold air into the East Sea which created a large temperature difference between the air and the ocean.