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Dynamic Meteorology

Dual-Doppler radar analysis of a near-shore line-shaped convective system on 27 July 2011, Korea: a case study

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Article: 23453 | Received 29 Nov 2013, Accepted 24 Apr 2014, Published online: 27 May 2014

References

  • Bluestein H. B , Jain M. H . Formation of mesoscale lines of precipitation: severe squall lines in Oklahoma during the spring. J. Atmos. Sci. 1985; 42: 1711–1732.
  • Cressman G. P . An operational objective analysis system. Mon. Weather Rev. 1959; 87: 367–374.
  • Dixon M , Wiener G . TITAN: thunderstorm identification, tracking, analysis, and nowcasting – a radar-based methodology. J. Atmos. Ocean. Technol. 1993; 10: 785–797.
  • Fovell R. G , Ogura Y . Numerical simulation of a midlatitude squall line in two dimensions. J. Atmos. Sci. 1988; 45: 3846–3879.
  • Gao J , Xue M , Brewster K , Droegemeier K. K . A three-dimensional variational data analysis method with recursive filter for Doppler radars. J. Atmos. Ocean. Technol. 2004; 21: 457–469.
  • Gao J , Xue M , Shapiro A , Droegemeier K. K . A variational method for the analysis of three-dimensional wind fields from two Doppler radars. Mon. Weather Rev. 1999; 127: 2128–2142.
  • Geng B , Yamada H , Reddy K. K , Uyeda H , Fujiyoshi Y . An observation study of the development of a rainband on a Meiyu front causing heavy rainfall in the downstream region of the Yangtze River. J. Meteorol. Soc. Jpn. 2004; 82(4): 1095–1115.
  • Geng B , Yamada H , Reddy K. K , Uyeda H , Fujiyoshi Y . Mesoscale development and along-frontal variation of a Meiyu/Baju front and precipitation observed in the downstream region of the Yangtze River. J. Meteorol. Soc. Jpn. 2009; 87(3): 423–457.
  • Ha J.-H , Kim H.-W , Lee D.-K . Observation and numerical simulations with radar and surface data assimilation for heavy rainfall over central Korea. Adv. Atmos. Sci. 2011; 28(3): 573–590.
  • Houze Jr., R. A . Stratiform precipitation regions of convection: a meteorological paradox?. Bull. Am. Meteorol. Soc. 1997; 78(10): 2179–2196.
  • Ishizuka M , Kodama Y.-M . An observational study on a carrot-shaped cloud system developed to the south of Kyushu Island based on TRMM multi-sensor observations. Tenki. 2001; 48: 673–687. (in Japanese with English abstract).
  • Jang S.-M , Lee D.-I , Jeong J.-H , Park S.-H , Shimizu S , co-authors . Radar reflectivity and wind field analysis by using two X-band Doppler radars at Okinawa, Japan from 11 to 12 June 2007. Meteorol. Appl. 2013. 10.1002/met.1427.
  • Jeong J.-H , Lee D.-I , Wang C.-C , Jang S.-M , Park S.-H , co-authors . Structure and evolution of line-shaped convective system associated with Changma front during GRL PHONE-09: 6 July 2009 case. Meteorol. Appl. 2013. 10.1002/met.1418.
  • Jeong J.-H , Lee D.-I , Wang C.-C , Jang S.-M , You C.-H , co-authors . Environment and morphology of mesoscale convective systems associated with the Changma front during 9–10 July 2007. Ann. Geophys. 2012; 30: 1235–1248.
  • Kato T . Numerical simulation of the band-shaped torrential rain observed over southern Kyushu, Japan on 1 August 1993. J. Meteorol. Soc. Jpn. 1998; 76: 97–123.
  • Kato T . Structure of the band-shaped precipitation system inducing the heavy rainfall observed over northern Kyushu, Japan on 29 June 1999. J. Meteorol. Soc. Jpn. 2006; 84: 129–153.
  • Kato T , Goda H . Formation and maintenance processes of a stationary band-shaped heavy rainfall observed in Niigata on 4 August 1998. J. Meteorol. Soc. Jpn. 2001; 79: 899–924.
  • Kim H.-W , Lee D.-K . An observation study of mesoscale convective systems with heavy rainfall over the Korean Peninsula. Weather Forecast. 2006; 21: 125–148.
  • Lee D.-K , Lee H.-R , Hong S.-Y . Heavy rainfall over Korea during 1980–1990. Kor. J. Atmos. Soc. 1998; 1: 32–50.
  • Liou Y.-C , Chang Y.-J . A variational multiple-Doppler radar three-dimensional wind synthesis method and its impacts on thermodynamic retrieval. Mon. Weather Rev. 2009; 137: 3992–4010.
  • Liou Y.-C , Chang S.-F , Sun J . An application of the immersed boundary method for recovering the three-dimensional wind fields over complex terrain using multiple-Doppler radar data. Mon. Weather Rev. 2012a; 140: 1603–1619.
  • Liou Y.-C , Chen W. T.-C , Tsai Y.-C , Tang Y.-S , Lin P.-L , co-authors . Structure of precipitating systems over Taiwan's complex terrain during Typhoon Morakot (2009) as revealed by weather radar and rain gauge observations. J. Hydrol. 2012b. DOI: 10.1016/j.jhydrol.2012.09.004.
  • Mapes B , Houze Jr., R. A . An integrated view of the 1987 Australian monsoon and its mesoscale convective systems. Part II: vertical structure. Q. J. Roy. Meteorol. Soc. 1993; 119: 733–754.
  • Orlanski I . A rational subdivision of scales for atmospheric processes. Bull. Am. Meteorol. Soc. 1975; 56: 527–530.
  • Ray P. S , Ziegler C. L , Bumgarner W , Serafin R. J . Single- and multiple-Doppler radar observations of tornadic storms. Mon. Weather Rev. 1980; 108(10): 1607–1625.
  • Roeloffzen J. C , Van Den Berg W. D , Oerlemans J . Frictional convergence at coastlines. Tellus A. 1986; 38(5): 397–411.
  • Schumacher R. S , Johnson R. H . Organization and environmental properties of extreme-rain producing mesoscale convective systems. Mon. Weather. Rev. 2005; 133: 961–976.
  • Schumacher R. S , Johnson R. H . Mesoscale processes contributing to extreme rainfall in a midlatitude warm-season flash flood. Mon. Weather. Rev. 2008; 136: 3964–3986.
  • Seko H . Study of the shapes and maintenance mechanisms of meso-β scale line-shaped precipitation systems in the middle-latitudes. J. Meteorol. Res. Jpn. 2010; 62(1–3): 1–74 (In Japanese).
  • Seko H , Kato T , Saito K , Yoshizaki M , Kusunoki K , co-authors . Analytical and numerical studies of a Quasi-Stationary precipitation band observed over the Kanto Area associated with Typhoon 9426 (Orchid). J. Meteorol. Soc. Jpn. 1999; 77(4): 929–948.
  • Shapiro A , Mewes J. J . New formulation of dual-Doppler wind analysis. J. Atmos. Ocean. Technol. 1999; 16: 782–792.
  • Shin C.-S , Lee T.-Y . Development mechanisms for the heavy rainfalls of 6–7 August 2002 over the middle of the Korean Peninsula. J. Meteorol. Soc. Jpn. 2005; 83: 683–709.
  • Shinoda T , Amano T , Uyeda H , Tsuboki K , Minda H . Structure of line-shaped convective systems obliquely training to the Baiu front observed around the Southwest Islands of Japan. J. Meteorol. Soc. Jpn. 2009; 87(4): 739–745.
  • Sun J , Crook N. A . Dynamical and microphysical retrieval from Doppler radar observations using a cloud model and its adjoint. Part I: model development and simulated data experiments. J. Atmos. Sci. 1997; 54: 1642–1661.
  • Sun J , Lee T.-Y . A numerical study of an intense quasi-stationary convection band over the Korean Peninsula. J. Meteorol. Soc. Jpn. 2002; 80: 1221–1245.
  • Watanabe H . Structure of a stationary line-shaped heavy rainfall system in Fukui (18 July 2004) simulated by the JMA nonhydrostatic model. Tenki. 2007; 54: 449–455. (In Japanese).
  • You C. H , Lee D.-I , Jang S.-M , Jang M , Uyeda H , co-authors . Characteristics of rainfall systems accompanied with Changma front at Chujado in Korea, Asia-Pacific. J. Atmos. Sci. 2010; 46: 41–51.