• 제목/요약/키워드: changma

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2021년 7월 동해에서 발생한 극한 고온현상과 기작 (Record-breaking High Temperature in July 2021 over East Sea and Possible Mechanism)

  • 이강진;권민호;강현우
    • 대기
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    • 제32권1호
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    • pp.17-25
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    • 2022
  • As climate change due to global warming continues to be accelerated, various extreme events become more intense, more likely to occur and longer-lasting on a much larger scale. Recent studies show that global warming acts as the primary driver of extreme events and that heat-related extreme events should be attributed to anthropogenic global warming. Among them, both terrestrial and marine heat waves are great concerns for human beings as well as ecosystems. Taking place around the world, one of those events appeared over East Sea in July 2021 with record-breaking high temperature. Meanwhile, climate condition around East Sea was favorable for anomalous warming with less total cloud cover, more incoming solar radiation, and shorter period of Changma rainfall. According to the results of wave activity flux analysis, highly activated meridional mode of teleconnection that links western North Pacific to East Asia caused localized warming over East Sea to become stronger.

2006년 태풍 특징과 장마 (Characteristic of Typhoon and Changma in 2006)

  • 차은정;이경희;박윤호;박종숙;심재관;인희진;유희동;최영진
    • 한국방재학회:학술대회논문집
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    • 한국방재학회 2007년도 정기총회 및 학술발표대회
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    • pp.327-331
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    • 2007
  • 23 tropical cyclones of tropical storm(TS) intensity or higher formed in the western North Pacific and the South China Sea in 2006. The total number is less than the 30-year $(1971{\sim}2000)$ average frequency of 26.7, Out of 23, 15 cyclones reached typhoon(TY) intensity, three severe tropical storm(STS) intensity, and five TS intensity. The tropical cyclone season in 2006 began in May with the formation of CHANCHU(0601). While convective activity was slightly inactive around the Philippines from late June to early August. In addition, subtropical high was more enhanced than normal over the south of Japan from May to early August. Consequently, most tropical cyclones formed over the sea east of the Philippines after late June, and many of them moved westwards to China. CHANCHU(0601), BILIS(0604), KAEMI(0605), PRAPIROON(0606) and SAOMI(0608) brought damage to China, the Philippines, and Vietnam. On the other hand, EWINIAR(0603) moved northwards and hit the Republic of Korea, causing damage to the country From late August to early September, convective activity was temporarily inactive over the sea east of the Philippines. However, it turned active again after late September. Subtropical high was weak over the south of Japan after late August. Therefore, most tropical cyclones formed over the sea east of the Philippines and moved northwards. WUKONG(0610) and SHANSHAN(0613) hit Japan to bring damage to the country. On the other hand, XANGSANE(0615) and CIMARON(0619) moved westwards in the South China Sea, causing damage to the Philippines, Thailand, and Vietnam. In addition, IOKE(0612) was the first namded cyclone formed in the central North Pacific and moved westwards across longitude 180 degrees east after HUKO(0224).

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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.

경남지방의 월강수량의 변동율과 Anomaly Level의 출현특성 (The Characteristics of the Anomaly Level and Variability of the Monthly Precipitation in Kyeongnam, Korea)

  • 박종길;이부용
    • 한국환경과학회지
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    • 제2권3호
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    • pp.179-191
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    • 1993
  • This paper aims to know the characteristics of occurrence of the anomaly level and variability of the monthly precipitation in Kyeongnam, Korea. For this study, it was investigated 주e distribution of the annual and cont비y mean precipitation, the precipitation variability and its annual change, and the characteristics of occurrence of the anomaly level in Kyeongnam area the results were summarized as follows : 1) she mean of annual total precipitation averaged over Kyeongnam area is 1433.3mm. I'he spatial distribution of the annual total precipitation shows that in Kyeongnam area, the high rainfall area locates in the southwest area and south coast and the low rainfall area in an inland area. 2) Monthly mean precipitation in llyeongnam area was the highest in July(266.4mm) 각lowed by August(238.0mm), June(210.2mm) in descending order. In summer season, rainfall was concentrated and accounted for 49.9 percent of the annual total precipitation. Because convergence of the warm and humid southwest current which was influenced by Changma and typhoon took place well in this area. 3) The patterns of annual change of precipitaion variability can be divided into two types; One is a coast type and the other an inland type. The variability of precipitation generally appears low in spring and summer season and high in autumn and winter season. This is in accord with the large and small of precipitation. 4) The high frequency of anomaly level was N( Normal)-level and the next was LN( Low Informal) -level and 25(Extremely Subnormal)-level was not appeared in all stations. The occurrence frequency of N level was high in high rainfall area and distinguish성 in spring and summer season but the low rainfall area was not. hey Words : anomaly level, variability, precipitation, coast type, inland type.

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레이더 자료에 나타난 전선성 강수계의 중규모적 특성 분석 (Mesoscale Characteristics of Frontal System on Redar Data)

  • 정영선;임은하;남재철
    • 한국수자원학회논문집
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    • 제33권2호
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    • pp.219-227
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    • 2000
  • 전선에 의한 강수는 종종 한반도에서 국지적인 집중호우를 유발한다. 그러나 관측자료의 결핍과 전선의 중규모적 구조에 대한 이해 부족으로 정확하고 신속한 강수량 예측이 어려운 실정이다. 레이더의 공간 해상도는 수 km, 시간 해상도는 수 분으로 중규모 이하의 현상에 대한 관측자료를 제공할 수 있기 때문에 레이더의 효용성은 널리 알려져 있다. 따라서 본 연구에서는 한반도에서 대표적인 전선성 강수 사례를 선택하여 중규모적 특성을 레이더 연직 단면 관측자료에 근거하여 분석하였다. 강수계 내에서 수평규모 약 10 - 20 km의 대류 세포들이 존재하며, 연직 단면도 상에서 나타나는 밝은 띠에 의하면 녹는고도($0^{\circ}C$ 층)는 약 3 - 5 km 사이에 위치하고 있다. 강수 입자에 의하여 추정되는 구름의 높이는 대략 12 km에 달한다. 발달한 층운 지역에서 강수입자의 최대 낙하속도는 밝은 띠가 나타나는 녹는고도 바로 하층에서 나타나고 있다.

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

  • 문혜진;김병희;오효은;이준이;하경자
    • 대기
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    • 제24권3호
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    • pp.403-417
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    • 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.

KEOP-2004 집중관측 자료에 대한 강수예측의 민감도 분석 (Sensitivity Analysis of Simulated Precipitation System to the KEOP-2004 Intensive Observation Data)

  • 박영연;박창근;최영진;조천호
    • 대기
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    • 제17권4호
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    • pp.435-453
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    • 2007
  • KEOP (Korea Enhanced Observing Period)-2004 intensive summer observation was carried out from 20 June to 5 July 2004 over the Southwestern part of the Korean peninsula. In this study, the effects of KEOP-2004 intensive observation data on the simulation of precipitation system are investigated using KLAPS (Korea Local Analysis and Prediction System) and PSU/NCAR MM5. Three precipitation cases during the intensive observation are selected for detailed analysis. In addition to the control experiments using the traditional data for its initial and boundary conditions, two sensitivity experiments using KEOP data with and without Jindo radar are performed. Although it is hard to find a clear and consistent improvement in the verification score (threat score), it is found that the KEOP data play a role in improving the position and intensity of the simulated precipitation system. The experiments started at 00 and 12 UTC show more positive effect than those of 06 and 18 UTC. The effect of Jindo radar is dependent on the case. It plays a significant role in the heavy rain cases related to a mesoscale low over Changma front and the landing of a Typhoon. KEOP data produce more strong difference in the 06/18 UTC experiments than in 00/12 UTC, but give more positive effects in 00/12 UTC experiments. One of the possible explanations for this is that : KEOP data could properly correct the atmosphere around them when there are certain amounts of data, while gives excessive effect to the atmospheric field when there are few data. CRA analysis supports this reasoning. According to the CRA (Contiguous Rain Area) analysis, KEOP data in 00/12 UTC experiments improve only the surrounding area, resulting in essentially same precipitation system so the effects remain only in each convective cell rather than the system itself. On the other hand, KEOP data modify the precipitation system itself in 06/18 UTC experiments. Therefore the effects become amplified with time integration.

2D-Video Distrometer를 이용한 강수의 물리적 특성에 관한 사례연구 (Case Study on the Physical Characteristics of Precipitation using 2D-Video Distrometer)

  • 박종길;천은지;정우식
    • 한국환경과학회지
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    • 제25권3호
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    • pp.345-359
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    • 2016
  • This study analyze the synoptic meteorological cause of rainfall, rainfall intensity, drop size distribution(DSD), fall velocity and oblateness measured by the 2D-Video distrometer(2DVD) by comparing two cases which are heavy rainfall event case and a case that is not classified as heavy rainfall but having more than $30mm\;h^{-1}$ rainrate in July, 2014 at Gimhae region. As a results; Over the high pressure edge area where strong upward motion exists, the convective rain type occurred and near the changma front, convective and frontal rainfall combined rain type occurred. Therefore, rainrate varies based on the synoptic meteorological condition. The most rain drop distribution appeared in the raindrops with diameters between 0.4 mm and 0.6 mm and large particles appeared for the convective rain type since strong upward motion provide favorable conditions for the drops to grow by colliding and merging so the drop size distribution varies based on the location or rainfall types. The rainfall phases is mainly rain and as the diameter of the raindrop increase the fall velocity increase and oblateness decrease. The equation proposed based on the 2DVD tends to underestimated both fall velocity and oblateness compared with observation. Since these varies based on the rainfall characteristics of the observation location, standard equation for fall velocity and oblateness fit for Gimhae area can be developed by continuous observation and data collection hereafter.

6월의 남극진동이 한국의 6월 강우량에 미치는 영향 (Relationship between rainfall in Korea and Antarctic Oscillation in June)

  • 최기선;김백조;이종호
    • 한국지구과학회지
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    • 제34권2호
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    • pp.136-147
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    • 2013
  • 이 연구는 6월 남극진동이 한국 6월 강우량에 영향을 주는지 알아보기 위해 두 변수 사이에 상관분석이 이루어졌고 높은 양의 상관관계가 있음이 밝혀졌다. 이는 한국 6월 강우량이 같은 시기에 남반구에서 강화되는 머스커렌 고기압과 호주 고기압의 영향을 받음을 의미하는 것이다. 이 두 고기압이 발달할 때 호주 주위지역으로부터 적도방향으로 적도 횡단류가 강화되며, 이 적도 횡단류의 강화는 북태평양고기압의 북쪽으로의 강화로 이어진다. 이는 결국 장마전선을 한국으로 북상시키는 역할을 한다. 더욱이 북태평양 고기압의 북쪽으로의 강화는 한국에 상륙하거나 영향을 주는 태풍의 빈도를 증가시켜 6월 강우량의 증가에 중요한 역할을 한다.

Numerical Case Study of Heavy Rainfall Occurred in the Central Korean Peninsula on July 26-28, 1996

  • Kim, Young-Ah;Oh, Jai-Ho
    • International Union of Geodesy and Geophysics Korean Journal of Geophysical Research
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    • 제26권1호
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    • pp.15-29
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    • 1998
  • The numerical simulation of heavy precipitation event occurred in the central Korean Peninsula on July 26-28, 1996 was performed using the fine mesh model. ARPS (Advanced Regional Prediction System) developed by the CAPS (Center for Analysis and Prediction of Storms). Usually, the heavy rainfalls occurred at late July in the Korean Peninsula were difficult to predict, and showed very strong rainfall intensity. As results, they caused a great loss of life and property. As it usual, this case was unsuccessful to predict the location of rain band and the precipitation intensity with the coarse-mesh model. The same case was, however, simulated well with fine-mesh storm-scale model, ARPS. Moisture band at 850 hPa appeared along the Changma Front in the area of China through central Korea passed Yellow Sea. Also the low-level jet at 700 hPa existed in the Yellow Sea through central Korea and they together offered favorable condition to induce heavy rainfall in that area. The convective activities developed to a meso-scale convective system were observed at near the Yangtze River and moved to the central Korean Peninsula. Furthermore, the intrusion of warm and moist air, origninated from typhoon, into the Asia Continent might result in heavy rainfall formation through redistribution of moisture and heat. In the vertical circulation, the heavy rainfall was formed between the upper- and low-level jets, especially, the entrance region of the upper-level jet above the exit the region of the low-level jet. The low level convergence, the upper level divergence and the strong vertical wind were organized to the very north of the low level jet and concentrated on tens to hundreds km horizontal distance. These result represent the upper- and low-level jets are one of the most important reasons on the formation of heavy precipitation.

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