Yang, R., L. K. Ran, Y. L. Zhang, and Y. Liu, 2019: Analysis and simulation of the stratospheric quasi-zero wind layer over Korla, Xinjiang Province, China. Adv. Atmos. Sci., 36(10), 1143−1155, https://doi.org/10.1007/s00376-019-9045-6..
Citation: Yang, R., L. K. Ran, Y. L. Zhang, and Y. Liu, 2019: Analysis and simulation of the stratospheric quasi-zero wind layer over Korla, Xinjiang Province, China. Adv. Atmos. Sci., 36(10), 1143−1155, https://doi.org/10.1007/s00376-019-9045-6..

Analysis and Simulation of the Stratospheric Quasi-zero Wind Layer over Korla, Xinjiang Province, China

  • The stratospheric quasi-zero wind layer (QZWL) is a transition region with low zonal wind speeds in the lower stratosphere at an altitude of ~20 km. The zonal wind direction above the QZWL layer is opposite to that below the QZWL layer and the north–south wind component is small. The atmospheric wind field near the stratospheric QZWL is an important factor affecting the flight altitude and dynamic control of stratospheric airships. It is therefore necessary to study the stratospheric QZWL to provide better environmental information for these aircraft. High-resolution radiosonde data were used to analyze the characteristics of the stratospheric QZWL over Korla, Xinjiang Province, China. A weak wind layer in which the wind direction suddenly reversed from westerly to easterly was observed at ~20 km in the lower stratosphere, characteristic of the stratospheric QZWL. The Weather Research and Forecasting model was used to simulate the profiles of the horizontal wind speed and direction over Korla. The forcing effect of each diagnostic term in the equation on the zonal wind speed was analyzed. The results showed that the advection term was the dominant factor forcing the zonal wind speed. The wave term had a secondary forcing role, although the forcing effect of the wave term on the zonal wind speed was significant in some regions.
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