Atmospheric Boundary Layer Turbulence in the Presence of Swell: Turbulent Kinetic Energy Budget, Monin–Obukhov Similarity Theory, and Inertial Dissipation Method

Author:

Zou Zhongshui12,Li Shuiqing345,Huang Jian6,Li Peiliang1,Song Jinbao1,Zhang Jun A.7,Wan Zhanhong1

Affiliation:

1. a Ocean College, Zhejiang University, Zhoushan, China

2. b Ocean Research Center of Zhou Shan, Zhejiang University, Zhoushan, China

3. c Key Laboratory of Ocean Circulation and Waves, Institute of Oceanology, Chinese Academy of Sciences, Qingdao, China

4. d Laboratory for Ocean and Climate Dynamics, Qingdao National Laboratory for Marine Science and Technology, Qingdao, China

5. e Center for Ocean Mega-Science, Chinese Academy of Sciences, Qingdao, China

6. f Guangzhou Institute of Tropical and Marine Meteorology, CMA, Guangdong, China

7. g Cooperative Institute for Marine and Atmospheric Studies, University of Miami, and Hurricane Research Division, NOAA/AOML, Miami, Florida

Abstract

AbstractTurbulence over the mobile ocean surface has distinct properties compared to turbulence over land. Thus, findings that are based on the turbulent kinetic energy (TKE) budget and Monin–Obukhov similarity theory (MOST) over land may not be applicable to conditions over ocean partly because of the existence of a wave boundary layer (the lower part of atmospheric boundary layer including effects of surface waves; we used the term “WBL” in this article for convenience), where the total stress can be separated into turbulent stress and wave coherent stress. Here the turbulent stress is defined as the stress generated by wind shear and buoyancy, while the wave coherent stress accounts for the momentum transfer between ocean waves and atmosphere. In this study, applicability of the turbulent kinetic energy (TKE) budget and the inertial dissipation method (IDM) in the context of the MOST within the WBL are examined. It was found that turbulent transport terms in the TKE budget should not be neglected when calculating the total stress under swell conditions. This was confirmed by observations made on a fixed platform. The results also suggested that turbulent stress, rather than total stress, should be used when applying the MOST within the WBL. By combining the TKE budget and MOST, our study showed that the stress computed by the traditional IDM corresponds to the turbulent stress rather than the total stress. The swell wave coherent stress should be considered when applying the IDM to calculate the stress in the WBL.

Funder

National Natural Science Foundation of China

China Postdoctoral Science Foundation

National Basic Research Program of China

Publisher

American Meteorological Society

Subject

Oceanography

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