• 제목/요약/키워드: Tropopause folding

검색결과 15건 처리시간 0.019초

2020년 3월 18일-20일 영동지역 강풍 사례 연구 (A Case Study of Strong Wind Event over Yeongdong Region on March 18-20, 2020)

  • 안보영;김유준;김백조;이용희
    • 한국지구과학회지
    • /
    • 제42권5호
    • /
    • pp.479-495
    • /
    • 2021
  • 본 연구는 2020년 3월 18일부터 20일까지 영동지역에 강풍이 발생했던 사례(남고북저형, 대류권계면 접힘에 의해 급격하게 발달하는 저기압)의 종관 및 열역학적/운동학적특성을 조사하기 위해 AWS 관측 자료, 종관 일기도, ECMWF 재분석 자료, 레윈존데, 윈드프로파일러 자료를 이용하였다. 분석결과, 사례 기간 영동지역 5개소에서 관측된 최대 순간 풍속은 20 m s-1 이상으로 나타났으며 대관령(27.7 m s-1)에서 가장 강하게 나타났다. 종관분석에서는 남고북저형의 기압배치와 함께 영동지역으로 등압선의 모양이 사인(sin)파 형태를 보이며 강한 기압경도력에 의해 강풍이 발달하다가 3월 19일부터는 한반도 북부지역에서 하루 내에 19 hPa 이상의 기압 하강과 함께 발달하는 저기압에 의해 지속적인 강풍이 발달했다. 북강릉 단열선도에서 역전층의 고도는 하층 강풍대와 함께 산 정상의 약 1-3 km 고도에 위치하였고, 레윈존데 및 수직 측풍 장비(윈드프로파일러)의 연직 바람장 분석 결과와 일치함을 확인할 수 있었다. 특히 열역학적 및 운동학적 연직 분석에서, 하층에서 온위의 연직 경도에 의한 강한 바람과 대류권계면 접힘에 의한 위치 소용돌이도의 발달이 영동지역 강풍 발생에 큰 역할을 한 것으로 사료된다.

Surface Ozone Episode Due to Stratosphere-Troposphere Exchange and Free Troposphere-Boundary Layer Exchange in Busan During Asian Dust Events

  • Moon, Y.S.;Kim, Y.K.;K. Strong;Kim, S.H.;Lim, Y.K.;Oh, I.B.;Song, S.K.
    • 한국환경과학회지
    • /
    • 제11권5호
    • /
    • pp.419-436
    • /
    • 2002
  • The current paper reports on the enhancement of O$_3$, CO, NO$_2$, and aerosols during the Asian dust event that occurred over Korea on 1 May 1999. To confirm the origin and net flux of the O$_3$, CO, NO$_2$, and aerosols, the meteorological parameters of the weather conditions were investigated using Mesoscale Meteorological Model 5(MM5) and the TOMS total ozone and aerosol index, the back trajectory was identified using the Hybrid Single-Particle Lagrangian Integrated Trajectory Model(HYSPLIT), and the ozone and ozone precursor concentrations were determined using the Urban Ashed Model(UAM). In the presence of sufficiently large concentrations of NO$\sub$x/, the oxidation of CO led to O$_3$ formation with OH, HO$_2$, NO, and NO$_2$ acting as catalysts. The sudden enhancement of O$_3$, CO, NO$_2$ and aerosols was also found to be associated with a deepening cut-off low connected with a surface cyclone and surface anticyclone located to the south of Korea during the Asian dust event. The wave pattern of the upper trough/cut-off low and total ozone level remained stationary when they came into contact with a surface cyclone during the Asian dust event. A typical example of a stratosphere-troposphere exchange(STE) of ozone was demonstrated by tropopause folding due to the jet stream. As such, the secondary maxima of ozone above 80 ppbv that occurred at night in Busan, Korea on 1 May 2001 were considered to result from vertical mixing and advection from a free troposphere-boundary layer exchange in connection with an STE in the upper troposphere. Whereas the sudden enhancement of ozone above 100 ppbv during the day was explained by the catalytic reaction of ozone precursors and transport of ozone from a slow-moving anticyclone area that included a high level of ozone and its precursors coming from China to the south of Korea. The aerosols identified in the free troposphere over Busan, Korea on 1 May 1999 originated from the Taklamakan and Gobi deserts across the Yellow River. In particular, the 1000m profile indicated that the source of the air parcels was from an anticyclone located to the south of Korea. The net flux due to the first invasion of ozone between 0000 LST and 0600 LST on 1 May 1999 agreed with the observed ground-based background concentration of ozone. From 0600 LST to 1200 LST, the net flux of the second invasion of ozone was twice as much as the day before. In this case, a change in the horizontal wind direction may have been responsible for the ozone increase.

뇌전을 동반한 영동지역 대설 사례연구 (A Case Study of Heavy Snowfall with Thunder and Lightning in Youngdong Area)

  • 김해민;정승필;인소라;최병철
    • 대기
    • /
    • 제28권2호
    • /
    • pp.187-200
    • /
    • 2018
  • The heavy snowfall phenomenon with thunder and lightning occurred in Yeongdong coastal region on 20 January 2017. Amount of snow on that day was a maximum of 47 cm and was concentrated in a short time (2 hours) at the Yeongdong coastal area. The mechanism of thundersnow was investigated to describe in detail using observational data and numerical simulation (Weather Research and Forecast, WRF) applied lightning option. The results show that a convective cloud occurred at the Yeongdong coastal area. The east wind flow was generated and the pressure gradient force was maximized by the rapidly developed cyclone. The cold and dry air in the upper atmosphere has descended (so called tropopause folding) atmospheric lower layer at precipitation peak time (1200 LST). In addition, latent heat in the lower atmosphere layer and warm sea surface temperature caused thermal instability. The convective cloud caused by the strong thermal instability was developed up to 6 km at that time. And the backdoor cold front was determined by the change characteristics of meteorological elements and shear line in the east sea. Instability indexes such as Total totals Index (TT) and Lightning Potential Index (LPI) are also confirmed as one of good predictability indicates for the explosive precipitation of convective rainfall.

Asian Dust Transport during Blocking Episode Days over Korea

  • Moon, Yun-Seob;Kim, berly-Strong;Kim, Yoo-Keun;Lim, Yun-Kyu;Oh, In-Bo;Song, Sang-Keun;Bae, Joo-Hyon
    • 한국환경과학회지
    • /
    • 제11권2호
    • /
    • pp.111-120
    • /
    • 2002
  • Asian dust(or yellow sand) occurs mainly in spring and occasionally in winter in east Asia, when the weather conditions are under an upper trough/cut-off low and surface high/low pressure system during blocking episode days associated with the stationary patterns of the upper level jet stream. The transport mechanism for Asian dust during the blocking episode days in spring 2001 was analyzed using the TOMS aerosol index and meteorological mesoscale model 5(MM5). Based on the E vector, an extension of an Eliassen-Palm flux, the blocking episode days were found to be associated with the development of an upper cut-off low and surface cyclones. Concurrently, the occurrence of dust storms was also determined by strong cold advection at the rear of a jet streak, which exhibited a maximum wind speed within the upper jet stream. As such, the transport mechanism for Asian dust from China was due to advection of the isentropic potential vorticity(IPV) and isentropic surfaces associated with tropopause folding. The transport heights for Asian dust during the blocking episode days were found to be associated with the distribution of the isentropes below the IPV At the same time, lee waves propagated by topography affected the downward motion and blocking of Asian dust in China. The Asian dust transported from the dust source regions was deposited by fallout and rain-out with a reinforcing frontogenesis within a surface cyclone, as determined from satellite images using TOMS and GMS5. Accordingly, these results emphasize the importance of forecasting jet streaks, the IPV, and isentropes with geopotential heights in east Asia.

영동지역에서 눈결정 카메라를 활용한 눈결정의 정량 분석 (Quantitative Analysis of Snow Particles Using a Multi-Angle Snowflake Camera in the Yeongdong Region)

  • 김수현;고대홍;성대경;은승희;김병곤;김백조;박창근;차주완
    • 대기
    • /
    • 제29권3호
    • /
    • pp.311-324
    • /
    • 2019
  • We employed a Multi-Angle Snowflake Camera (MASC) to quantitatively analyze snow particles at the ground level in the Yeongdong region of Korea. The MASC captures high-resolution photographs of hydrometeors from three angles and simultaneously measures fallspeed. Based on snowflake images of the several episodes in 2017 and 2018, we derived statistics of size, aspect ratio, orientation, complexity, and fallspeed of snow crystals, which generally showed similar characteristics to the previous studies in other regions of the world. Dominant snow crystal habits of January 22, 2018 generated by northerly were melted aggregates when 850 hPa temperature was about $-6{\sim}-8^{\circ}C$. Average fallspeed of snow crystals was $1.0m\;s^{-1}$ though its size gradually increased as temperature decreased. Another snowfall event (March 8, 2018) was driven by the baroclinic instability as accompanied with a deep trough. Snow crystal habits were largely rimed aggregates (complexity ~1.8) and melting particles of dark images. Meanwhile, in the extreme snowfall event whose snow rate was greater than $10cm\;hr^{-1}$ on January 20, 2017, main snow crystals appeared to be heavily rimed particles with relatively smaller size when convective clouds developed vertically up to 9 km in association with tropopause folding. MASC also could successfully measure a decrease in snow crystal size and an increase in riming degree after AgI seeding at Daegwallyeong on March 14, 2017.