成因条件对极端降雨区域模拟的影响:对流参数化敏感性研究

IF 0.7 4区 地球科学 Q4 METEOROLOGY & ATMOSPHERIC SCIENCES MAUSAM Pub Date : 2023-03-29 DOI:10.54302/mausam.v74i2.5983
M. Kaur, S. Joseph, R. Phani, A. Sahai, A. Dey, R. Mandal
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引用次数: 0

摘要

物理参数化中近似和简化的真实大气过程影响是模型偏差的主要对应因素,特别是对于极端事件。本研究讨论了如何在一组多重对流参数化中不协调地模拟小尺度和大尺度典型环境中的事件发生。尽管存在一些固有误差,但大多数选定的对流参数化方案可能提前10-15天表明北阿坎德邦的暴雨是由大规模背景相互作用引起的。在这种情况下,没有任何对流方案的运行,以及新的Tiedtke和BMJ方案,表现更好。此外,除了新的Tiedtke之外,几乎所有的方案都失败了,因为Abu山洪水源于相对局部规模的相互作用,甚至是提前5天初始化。使用极端事件的最佳表现者和发现更有效的新Tiedtke,将结果进一步扩展到其他一些情况。该方案对对流(尤其是浅层)和低云的更好表示使其在模拟极端降水事件方面优于其他方案。
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Impact of genesis conditions on regional simulations of extreme rainfall : A convection parameterization sensitivity study
Approximated and simplified real-atmospheric process impact in physical parameterization is a primary correspondent of biases in the model, particularly for extreme events. The present study discusses how event genesis in the small and large-scale quintessential environment is incongruously simulated within a set of multiple convection parameterizations. Despite a few inherent errors, most of the selected convective parameterization schemes could indicate 10-15 days in advance the Uttarakhand heavy rains resulted from large-scale background interaction. The runs without any convection scheme, followed by new-Tiedtke and BMJ schemes, outperform in this case. Further, almost all schemes except new-Tiedtke flunked for the case of Mount-Abu flood originated from relatively local-scale interaction even from 5-day advance initialization. Results are further extended for a few other cases using best performers of both extreme events and new-Tiedtke found to be more efficient. The better representation of convection (especially the shallow) and low clouds in this scheme makes it superior to other schemes for simulating extreme precipitation events.
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来源期刊
MAUSAM
MAUSAM 地学-气象与大气科学
CiteScore
1.20
自引率
0.00%
发文量
1298
审稿时长
6-12 weeks
期刊介绍: MAUSAM (Formerly Indian Journal of Meteorology, Hydrology & Geophysics), established in January 1950, is the quarterly research journal brought out by the India Meteorological Department (IMD). MAUSAM is a medium for publication of original scientific research work. MAUSAM is a premier scientific research journal published in this part of the world in the fields of Meteorology, Hydrology & Geophysics. The four issues appear in January, April, July & October.
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