2004大气科学进展:英文版Requires access

Impacts of Cloud-Induced Mass Forcing on the Development of Moist Potential Vorticity Anomaly During Torrential Rains

高守亭, 周玉淑, 崔晓鹏, 戴国平

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Abstract

The impacts of cloud-induced mass forcing on the development of the moist potential vorticity (MPV)anomaly associated with torrential rains are investigated by using NCEP/NCAR 1°× 1° data. The MPV tendency equation with the cloud-induced mass forcing is derived, and applied to the torrential rain event over the Changjiang River-Huaihe River Valleys during 26-30 June 1999. The result shows that positive anomalies are located mainly between 850 hPa and 500 hPa, while the maximum MPV, maximum positive tendency of the MPV, and maximum surface rainfall are nearly collocated. The cloud-induced mass forcing contributes to the positive tendency of the moist potential vorticity anomaly. The results indicate that the MPV may be used to track the propagation of rain systems for operational applications.

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What this paper is about

The impacts of cloud-induced mass forcing on the development of the moist potential vorticity (MPV)anomaly associated with torrential rains are investigated by using NCEP/NCAR 1°× 1° data. The MPV tendency equation with the cloud-induced mass forcing is derived, and applied to the torrential rain event over the Changjiang River-Huaihe River Valleys during 26-30 June 1999. The result shows that positive anomalies are located mainly between 850 hPa and 500 hPa, while the maximum MPV, maximum positive tendency of the MPV, and maximum surface rainfall are nearly collocated. The cloud-induced mass forcing contributes to the positive tendency of the moist potential vorticity anomaly. The results indicate that the MPV may be used to track the propagation of rain systems for operational applications.

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Available abstract

The impacts of cloud-induced mass forcing on the development of the moist potential vorticity (MPV)anomaly associated with torrential rains are investigated by using NCEP/NCAR 1°× 1° data. The MPV tendency equation with the cloud-induced mass forcing is derived, and applied to the torrential rain event over the Changjiang River-Huaihe River Valleys during 26-30 June 1999. The result shows that positive anomalies are located mainly between 850 hPa and 500 hPa, while the maximum MPV, maximum positive tendency of the MPV, and maximum surface rainfall are nearly collocated. The cloud-induced mass forcing contributes to the positive tendency of the moist potential vorticity anomaly. The results indicate that the MPV may be used to track the propagation of rain systems for operational applications.

Key concepts: Forcing (mathematics), Anomaly (physics), Vorticity, Climatology, Potential vorticity, Environmental science, Atmospheric sciences, Meteorology

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