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Air-sea Interaction of Typhoon Sinlaku (2002) Simulated by the Canadian MC2 Model 被引量:14

Air-sea Interaction of Typhoon Sinlaku (2002) Simulated by the Canadian MC2 Model
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摘要 Three experiments for the simulation of typhoon Sinlaku (2002) over the western North Pacific are performed in this study by using the Canadian Mesoscale Compressible Community (MC2) atmospheric model. The objective of these simulations is to investigate the air-sea interaction during extreme weather conditions, and to determine the sensitivity of the typhoon evolution to the sea surface temperature (SST) cooling induced by the typhoon. It is shown from the three experiments that the surface heat fluxes have a substantial influence on the slow-moving cyclone over its lifetime. When the SST in the East China coastal ocean becomes 1℃ cooler in the simulation, less latent heat and sensible heat fluxes from the underlying ocean to the cyclone tend to reduce the typhoon intensity. The cyclone is weakened by 7 hPa at the time of its peak intensity. The SST cooling also has impacts on the vertical structure of the typhoon by weakening the warm core and drying the eye wall. With a finer horizontal resolution of (1/6)° × (1/6)°, the model produces higher surface wind, and therefore more surface heat fluxes are emitted from the ocean surface to the cyclone, in the finer-resolution MC2 grid compared with the relatively lower resolution of 0.25° × 0.25° MC2 grid. Three experiments for the simulation of typhoon Sinlaku (2002) over the western North Pacific are performed in this study by using the Canadian Mesoscale Compressible Community (MC2) atmospheric model. The objective of these simulations is to investigate the air-sea interaction during extreme weather conditions, and to determine the sensitivity of the typhoon evolution to the sea surface temperature (SST) cooling induced by the typhoon. It is shown from the three experiments that the surface heat fluxes have a substantial influence on the slow-moving cyclone over its lifetime. When the SST in the East China coastal ocean becomes 1℃ cooler in the simulation, less latent heat and sensible heat fluxes from the underlying ocean to the cyclone tend to reduce the typhoon intensity. The cyclone is weakened by 7 hPa at the time of its peak intensity. The SST cooling also has impacts on the vertical structure of the typhoon by weakening the warm core and drying the eye wall. With a finer horizontal resolution of (1/6)° × (1/6)°, the model produces higher surface wind, and therefore more surface heat fluxes are emitted from the ocean surface to the cyclone, in the finer-resolution MC2 grid compared with the relatively lower resolution of 0.25° × 0.25° MC2 grid.
出处 《Advances in Atmospheric Sciences》 SCIE CAS CSCD 2006年第4期521-530,共10页 大气科学进展(英文版)
关键词 TYPHOON air-sea interaction SST cooling MC2 typhoon, air-sea interaction, SST cooling, MC2
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  • 1[1]Andreas, E. L., 1992: Sea spray and the turbulent air-sea heat fluxes. J. Geophys. Res., 97, 11429-11441. 被引量:1
  • 2[2]Andreas, E. L., 1998: A new sea spray generation function for wind speeds up to 32 m/s. J. Phys. Oceanogr., 28,2175-2184. 被引量:1
  • 3[3]Andreas, E. L., 2003: An algorithm to predict the turbulent air-sea fluxes in high-wind, spray conditions.Preprints. 12th Conf. on Interaction of the Sea and Atmosphere, Long Beach, CA, Amer. Meteor. Soc. 被引量:1
  • 4[4]Andreas, E. L., and J. DeCosmo, 1999: Sea spray production and influence on air-sea heat and moisture fluxes over the open ocean. Air-Sea Exchange:Physics, Chemistry and Dynamics, G. L. Geernaert,Ed., Kluwer, 327-362. 被引量:1
  • 5[5]Andreas, E. L., and K. A. Emanuel, 2001: Effects of sea spray on tropical cyclone intensity. J. Atmos. Sci., 58,3741-3751. 被引量:1
  • 6[6]Andreas, E. L., and J. DeCosmo, 2002: The signature of sea spray in the HEXOS turbulent heat flux data.Bound.-Layer Meteor., 103, 303-333. 被引量:1
  • 7[7]Bao, J.-W., J. M. Wilczak, J.-K. Choi, and L. H. Kantha,2000: Numerical simulations of air-sea interaction under high wind conditions using a coupled model:A study of hurricane development. Mon. Wea. Rev.,128, 2190-2210. 被引量:1
  • 8[8]Benoit, R., M. Desgagne, P. Pellerin, Y. Chartier,and S. Desjardins, 1997: The Canadian MC2:A semi-implicit semi-Lagrangian wide-band atmospheric model suited for fine-scale process studies and simulation. Mon. Wea. Rev., 125, 2382-2415. 被引量:1
  • 9[9]Bortkovskii, R. S., 1973: On the mechanism of interaction between the ocean and the atmosphere during a storm. Fluid Mechanics Soviet Research., 2, 87-94. 被引量:1
  • 10[10]Chouinard, C., J. Mailhot, and A. Mitchell, 1994: The Canadian regional data assimilation system: Operational and research applications. Mon. Wea. Rev.,122, 1306-1325. 被引量:1

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