GSTDTAP  > 气候变化
DOI10.1029/2020GL089591
Mixing Driven by Breaking Nonlinear Internal Waves
N. L. Jones; G. N. Ivey; M. D. Rayson; S. M. Kelly
2020-09-14
发表期刊Geophysical Research Letters
出版年2020
英文摘要

Non‐linear internal waves (NLIW) are important to processes such as heat transfer, nutrient replenishment and sediment transport on continental shelves. Our unique field observations of shoaling NLIW of elevation revealed a variety of different wave shapes, varying from relatively symmetric waves to waves with either steepened leading‐ or trailing‐faces; many had evidence of trapped cores. The wave shape was related to the position of maximum density overturns and diapycnal mixing. We observed both shear (where sheared currents overcome the stabilizing effects of stratification) and convective instabilities (where the local velocity exceeds the wave propagation speed). The elevated diapycnal mixing (>10‐3 m2s‐1) and heat flux (>500 Wm‐2) were predominantly local to the NLIW of elevation packets, and was transported onshore 10s kilometers with the wave packets. We demonstrate that wave steepness may be a useful bulk property for the parameterization of wave‐averaged diapycnal heat flux.

领域气候变化
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文献类型期刊论文
条目标识符http://119.78.100.173/C666/handle/2XK7JSWQ/295290
专题气候变化
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GB/T 7714
N. L. Jones,G. N. Ivey,M. D. Rayson,et al. Mixing Driven by Breaking Nonlinear Internal Waves[J]. Geophysical Research Letters,2020.
APA N. L. Jones,G. N. Ivey,M. D. Rayson,&S. M. Kelly.(2020).Mixing Driven by Breaking Nonlinear Internal Waves.Geophysical Research Letters.
MLA N. L. Jones,et al."Mixing Driven by Breaking Nonlinear Internal Waves".Geophysical Research Letters (2020).
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