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Abstract
In this paper,the frontogenesis forced by dust radiative heating and the radiative effects of an isolated duststorrn on a frontal circulation system are examined by means of two-and three-dimensional numerical models.Results indicate that as a duststorm breaks out,frontogenesis is caused in by dust radiative heating in the lower atmosphere.A marked isentropic potential temperature layer is formed in the middle troposphere.The low-level convergence occurs along the direction of the front movement.Atnight,dust radiative cooling results in frontolysis in the lower atmosphere.An obvious vertical circulation is forced by radiative heating of an isolated duststorm along the direction of the prevailing wind.It is stronger at day,weaker and reverse at night.The response of the horizontal wind field to dust radiative forcing is different at different levels.
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Citation
Shen Shaohua, Chen Shoujun. 1994: NUMERICAL SIMULATION OF FRONTOGENESIS FORCED BY DUST RADIATIVE HEATING*. Journal of Meteorological Research, 8(2): 136-149.
Shen Shaohua, Chen Shoujun. 1994: NUMERICAL SIMULATION OF FRONTOGENESIS FORCED BY DUST RADIATIVE HEATING*. Journal of Meteorological Research, 8(2): 136-149.
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Shen Shaohua, Chen Shoujun. 1994: NUMERICAL SIMULATION OF FRONTOGENESIS FORCED BY DUST RADIATIVE HEATING*. Journal of Meteorological Research, 8(2): 136-149.
Shen Shaohua, Chen Shoujun. 1994: NUMERICAL SIMULATION OF FRONTOGENESIS FORCED BY DUST RADIATIVE HEATING*. Journal of Meteorological Research, 8(2): 136-149.
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