Affiliation:
1. Physical Oceanography Laboratory, Ocean University of China, Qingdao, Shandong, China
2. Department of Physical Oceanography, Woods Hole Oceanographic Institution, Woods Hole, Massachusetts
Abstract
Abstract
Wind stress and tidal dissipation are the most important sources of mechanical energy for maintaining the oceanic general circulation. The contribution of mechanical energy due to tropical cyclones can be a vitally important factor in regulating the oceanic general circulation and its variability. However, previous estimates of wind stress energy input were based on low-resolution wind stress data in which strong nonlinear events, such as tropical cyclones, were smoothed out.
Using a hurricane–ocean coupled model constructed from an axisymmetric hurricane model and a three-layer ocean model, the rate of energy input to the world’s oceans induced by tropical cyclones over the period from 1984 to 2003 was estimated. The energy input is estimated as follows: 1.62 TW to the surface waves and 0.10 TW to the surface currents (including 0.03 TW to the near-inertial motions). The rate of gravitational potential energy increase due to tropical cyclones is 0.05 TW. Both the energy input from tropical cyclones and the increase of gravitational potential energy of the ocean show strong interannual and decadal variability with an increasing rate of 16% over the past 20 years. The annual mean diapycnal upwelling induced by tropical cyclones over the past 20 years is estimated as 39 Sv (Sv ≡ 106 m3 s−1). Owing to tropical cyclones, diapycnal mixing in the upper ocean (below the mixed layer) is greatly enhanced. Within the regimes of strong activity of tropical cyclones, the increase of diapycnal diffusivity is on the order of (1 − 6) × 10−4 m2 s−1. The tropical cyclone–related energy input and diapycnal mixing may play an important role in climate variability, ecology, fishery, and environments.
Publisher
American Meteorological Society
Reference27 articles.
1. Improved global maps and 54-year history of wind-work done on the ocean inertial motions.;Alford;Geophys. Res. Lett.,2003
2. An adjoint analysis of the meridional overturning circulation in an ocean model.;Bugnion;J. Climate,2006
3. Hurricane-generated currents on the outer continental shelf. Part I: Model formulation and verification.;Cooper;J. Geophys. Res.,1989
4. The energy flux from the wind to near-inertial motions in the mixed layer.;D’Asaro;J. Phys. Oceanogr.,1985
5. Toward a general theory of hurricanes.;Emanuel;Amer. Sci.,1988
Cited by
62 articles.
订阅此论文施引文献
订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献