Sensitivity of diurnal cycle of simulated rainfall to cumulus parameterization during Indian summer monsoon seasons
Author:
Publisher
Springer Science and Business Media LLC
Subject
Atmospheric Science
Link
http://link.springer.com/content/pdf/10.1007/s00382-019-04716-1.pdf
Reference47 articles.
1. Banacos PC, Schultz DM (2005) The use of moisture flux convergence in forecasting convective initiation: historical and operational perspectives. Weather Forecast 20:351–366
2. Basu B (2007) Diurnal variation in precipitation over India during the summer monsoon season: observed and model predicted. Mon Weather Rev 135(6):2155–2167
3. Biasutti M, Yuter SE, Burleyson CD, Sobel AH (2012) Very high resolution rainfall patterns measured by TRMM precipitation radar: seasonal and diurnal cycles. Clim Dyn 39:239–258
4. Bretherton CS, McCaa JR, Grenier H (2004) A new parameterization for shallow cumulus convection and its application to marine subtropical cloud-topped boundary layers. Part I: description and 1D results. Mon Weather Review 132:864–882
5. Cortés-Hernández VE, Zheng F, Evans J et al (2016) Evaluating regional climate models for simulating sub-daily rainfall extremes. Clim Dyn 47:1613–1628
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