Mixed Layer Temperature Budget in the Arabian Sea During Winter 2019 and Spring 2019: The Role of Diapycnal Heat Flux

被引:7
作者
Jofia, J. [1 ,2 ]
Girishkumar, M. S. [1 ]
Ashin, K. [1 ]
Sureshkumar, N. [1 ]
Shivaprasad, S. [1 ]
Rao, E. Pattabhi Ram [1 ]
机构
[1] Indian Natl Ctr Ocean Informat Serv INCOIS, Minist Earth Sci MoES, Hyderabad, Telangana, India
[2] Kerala Univ Fisheries & Ocean Studies, Sch Ocean Sci & Technol, Cochin, India
关键词
Arabian Sea; mixed layer temperature budget; diapycnal heat flux; air-sea interaction; EASTERN EQUATORIAL PACIFIC; INDIAN-OCEAN; BULK PARAMETERIZATION; BOUNDARY-LAYER; VARIABILITY; ATLANTIC; DIFFUSIVITY; TURBULENCE; MODEL; DISSIPATION;
D O I
10.1029/2022JC019088
中图分类号
P7 [海洋学];
学科分类号
0707 ;
摘要
Sea surface temperatures (SSTs) simulated by almost all models in Coupled Model Inter-comparison Project phase five are consistently colder (similar to-1 degrees C to -4 degrees C) than the observation in the northern Arabian Sea (AS) during winter and spring. These biases significantly weaken the seasonal and extended summer monsoon prediction skills and climate change projection's reliability in this region. To understand the relative contribution of diapycnal heat flux (J(h)) compared to other terms in the mixed layer (ML) temperature (MLT) budget during these two seasons, we use time series of vertical profiles of microstructure shear measurements collected in the northeastern AS (NEAS) at 18.4 degrees N and 67.4 degrees E during January 10-17, 2019 (W19) and May 7-21, 2019 (S19). It is found that the vertical processes term and net surface heat flux together determine the bulk of MLT tendency during S19 and W19, and the contribution of the horizontal advection and J(h) is relatively smaller. The mean value of J(h) (similar to-2 W m(-2)) at the base of the ML shows a comparable magnitude during W19 and S19, and the median values of diapycnal diffusivity (K-rho) at the ML base are not significantly different between W19 (similar to 3.1 x 10(-6) m(2) s(-1)) and S19 (similar to 5.2 x 10(-6) m(2) s(-1)). Besides, K-rho and J(h) values were estimated using different K-rho-Richardson number (Ri) based interior ocean parameterization schemes at the ML base in the NEAS overestimated with respect to observation. The alleged role of overestimation of K-rho and J(h) in parameterization schemes on model simulation of cold SST bias in the AS is also discussed.
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页数:27
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