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September 26, 2025Atmosphere2 citationsOpen Access

Analysis of the Ducted Gravity Waves Generated by Elevated Convection over Complex Terrain in China

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MMManman MaNational University of Defense TechnologyLQLuyao QinNational University of Defense Technology

Key Points

  • The study finds that gravity waves generated by elevated convection propagate eastward with a horizontal wavelength of 25 km.
  • Sensitivity experiments demonstrate that convective forcing alone can generate gravity waves, confirming their importance in convection dynamics.
  • The WRF model is utilized alongside terrain sensitivity experiments to analyze how the ruggedness of terrain influences wave distribution.
  • Analysis indicates the presence of a stable wave duct layer below 3 km, essential for maintaining the ducted gravity wave propagation.

Abstract

Gravity waves play a crucial role in the evolution of convective systems. The unique thermal structure of elevated convection occurring above a stable boundary layer facilitates the generation and propagation of gravity waves. This study focuses on an elevated convection event over Central China on the night of 2–3 February 2024. The WRF model, combined with terrain sensitivity experiments, is employed to analyze the characteristics of gravity waves and the effects of terrain variability. The event consists of two elevated convection clusters; the first triggers gravity waves on its southwestern side, which subsequently initiates the second convection cluster. The gravity waves exhibit a horizontal wavelength of 25 km and a period of 17.5 min, propagating eastward. Below an altitude of 3 km, a stable wave duct layer is present, overlain by an unstable overreflective zone. This stratification creates an ideal channel for ducted gravity wave propagation, which is essential for maintaining the waves. Sensitivity experiments confirm that convective forcing alone is sufficient to generate the observed gravity waves. Although the terrain lies within the stable boundary layer, its ruggedness modulates the distribution of waves and indirectly influences the organization of elevated convection.

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Cite This Study

Ma et al. (2025) studied this question.

synapsesocial.com/papers/68d6c687b1249cec298b2c81https://doi.org/10.3390/atmos16101118
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