TY - JOUR
T1 - The Probability Density Function Related to Shallow Cumulus Entrainment Rate and Its Influencing Factors in a Large-Eddy Simulation
AU - Zhu, Lei
AU - Lu, Chunsong
AU - Xu, Xiaoqi
AU - He, Xin
AU - Li, Junjun
AU - Luo, Shi
AU - Wang, Yuan
AU - Wang, Fan
N1 - The authors would like to thank Jianfeng GU at Nanjing University for the helpful discussions. This research is supported by the National Natural Science Foundation of China (Grant Nos. 42175099, 42027804, 42075073) and the Innovative Project of Postgraduates in Jiangsu Province in 2023 (Grant No. KYCX23_1319). Shi LUO is supported by the National Natural Science Foundation of China (Grant No. 42205080), the Natural Science Foundation of Sichuan (Grant No. 2023YFS0442), and the Research Fund of Civil Aviation Flight University of China (Grant No. J2022-037). This research is also supported by the National Key Scientific and Technological Infrastructure project “Earth System Science Numerical Simulator Facility” (EarthLab). The numerical calculations in this paper were conducted on the supercomputing system in the Supercomputing Center of Nanjing University of Information Science & Technology.
Publisher Copyright:
© Institute of Atmospheric Physics/Chinese Academy of Sciences, and Science Press 2024.
PY - 2024/1
Y1 - 2024/1
N2 - The process of entrainment-mixing between cumulus clouds and the ambient air is important for the development of cumulus clouds. Accurately obtaining the entrainment rate (λ) is particularly important for its parameterization within the overall cumulus parameterization scheme. In this study, an improved bulk-plume method is proposed by solving the equations of two conserved variables simultaneously to calculate λ of cumulus clouds in a large-eddy simulation. The results demonstrate that the improved bulk-plume method is more reliable than the traditional bulk-plume method, because λ, as calculated from the improved method, falls within the range of λ values obtained from the traditional method using different conserved variables. The probability density functions of λ for all data, different times, and different heights can be well-fitted by a log-normal distribution, which supports the assumed stochastic entrainment process in previous studies. Further analysis demonstrate that the relationship between λ and the vertical velocity is better than other thermodynamic/dynamical properties; thus, the vertical velocity is recommended as the primary influencing factor for the parameterization of λ in the future. The results of this study enhance the theoretical understanding of λ and its influencing factors and shed new light on the development of λ parameterization.
AB - The process of entrainment-mixing between cumulus clouds and the ambient air is important for the development of cumulus clouds. Accurately obtaining the entrainment rate (λ) is particularly important for its parameterization within the overall cumulus parameterization scheme. In this study, an improved bulk-plume method is proposed by solving the equations of two conserved variables simultaneously to calculate λ of cumulus clouds in a large-eddy simulation. The results demonstrate that the improved bulk-plume method is more reliable than the traditional bulk-plume method, because λ, as calculated from the improved method, falls within the range of λ values obtained from the traditional method using different conserved variables. The probability density functions of λ for all data, different times, and different heights can be well-fitted by a log-normal distribution, which supports the assumed stochastic entrainment process in previous studies. Further analysis demonstrate that the relationship between λ and the vertical velocity is better than other thermodynamic/dynamical properties; thus, the vertical velocity is recommended as the primary influencing factor for the parameterization of λ in the future. The results of this study enhance the theoretical understanding of λ and its influencing factors and shed new light on the development of λ parameterization.
KW - large-eddy simulation
KW - cumulus clouds
KW - entrainment rate
KW - probability density functions
KW - spatial and temporal distribution
UR - http://www.scopus.com/inward/record.url?scp=85167507905&partnerID=8YFLogxK
U2 - 10.1007/s00376-023-2357-6
DO - 10.1007/s00376-023-2357-6
M3 - Journal article
AN - SCOPUS:85167507905
SN - 0256-1530
VL - 41
SP - 173
EP - 187
JO - Advances in Atmospheric Sciences
JF - Advances in Atmospheric Sciences
IS - 1
ER -