Contributions of shortwave radiation to the formation of temperature inversions in the Bay of Bengal and eastern equatorial Indian Ocean: A modeling approach

被引:0
作者
K. M. Azam Chowdhury
Wensheng Jiang
Changwei Bian
Guimei Liu
Md Kawser Ahmed
Shaila Akhter
机构
[1] Ocean University of China,College of Oceanic and Atmospheric Sciences
[2] University of Dhaka,Department of Oceanography & International Centre for Ocean Governance (ICOG)
[3] Ocean University of China,Key Lab of Marine Environment and Ecology of Ministry of Education
[4] Ocean University of China,Frontiers Science Center for Deep Ocean Multispheres and Earth System (FDOMES)
[5] Pilot National Laboratory for Marine Science and Technology (Qingdao),Bangladesh Betar
[6] National Marine Environmental Forecasting Center,undefined
[7] Ministry of Information and Broadcasting,undefined
[8] Government of the People’s Republic of Bangladesh,undefined
来源
Acta Oceanologica Sinica | 2022年 / 41卷
关键词
mixed layer cooling; haline stratification; temperature inversion; ROMS model; shortwave radiation; Bay of Bengal; eastern equatorial Indian Ocean;
D O I
暂无
中图分类号
学科分类号
摘要
Variations in incoming shortwave radiation influence the net surface heat flux, contributing to the formation of a temperature inversion. The effects of shortwave radiation on the temperature inversions in the Bay of Bengal and eastern equatorial Indian Ocean have never been investigated. Thus, a high-resolution (horizontal resolution of 0.07°×0.07° with 50 vertical layers) Regional Ocean Modeling System (ROMS) model is utilized to quantify the contributions of shortwave radiation to the temperature inversions in the study domain. Analyses of the mixed layer heat and salt budgets are performed, and different model simulations are compared. The model results suggest that a 30% change in shortwave radiation can change approximately 3% of the temperature inversion area in the Bay of Bengal. Low shortwave radiation reduces the net surface heat flux and cools the mixed layer substantially; it also reduces the evaporation rate, causing less evaporative water vapor losses from the ocean than the typical situation, and ultimately enhances haline stratification. Thus, the rudimentary outcome of this research is that a decrease in shortwave radiation produces more temperature inversion in the study region, which is primarily driven by the net surface cooling and supported by the intensive haline stratification. Moreover, low shortwave radiation eventually intensifies the temperature inversion layer by thickening the barrier layer. This study could be an important reference for predicting how the Indian Ocean climate will respond to future changes in shortwave radiation.
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页码:19 / 37
页数:18
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共 246 条
[1]  
Agarwal N(2007)Bay of Bengal summer monsoon 10–20 day variability in sea surface temperature using model and observations Geophysical Research Letters 34 L06602-3947
[2]  
Sharma R(2014)A modeling study of the processes of surface salinity seasonal cycle in the Bay of Bengal Journal of Geophysical Research: Oceans 119 3926-562
[3]  
Basu S(2021)Seasonal and long-term sea-level variations and their forcing factors in the northern Bay of Bengal: a statistical analysis of temperature, salinity, wind stress curl, and regional climate index data Dynamics of Atmospheres and Oceans 95 101239-2446
[4]  
Akhil V P(2011)Mixing in the surface layers in association with internal waves during winter in the northwestern Bay of Bengal Natural Hazards 57 551-3017
[5]  
Durand F(2016)An OGCM study of the impact of rain and river water forcing on the Bay of Bengal Journal of Geophysical Research: Oceans 121 2425-1908
[6]  
Lengaigne M(2008)A reanalysis of ocean climate using simple ocean data assimilation (SODA) Monthly Weather Review 136 2999-176
[7]  
Akhter S(2014)Salinity measurements collected by fishermen reveal a “river in the sea” flowing along the eastern coast of India Bulletin of the American Meteorological Society 95 1897-23
[8]  
Qiao F(2016)Development of a high-resolution multiscale modeling and prediction system for Bay of Bengal, Part I: climatology-based simulations Open Journal of Marine Science 6 145-39
[9]  
Wu K(2019)Formation and types of thermal inversion in the Bay of Bengal CLIVAR Exchanges 76 20-1126
[10]  
Babu S V(2021)Dominant physical-biogeochemical drivers for the seasonal variations in the surface chlorophyll-a and subsurface chlorophyll-a maximum in the Bay of Bengal Regional Studies in Marine Science 48 102022-494