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Please use this identifier to cite or link to this item: http://scholars.ntou.edu.tw/handle/123456789/26734
Title: Cold Pool Formation Over the Taiwan Bank Driven by Shoaling Internal Tides
Authors: Chang, Ming-Huei
Yeh, Yu-Yu
Cheng, Yu-Hsin 
Yang, Yiing Jang
Ko, Dong Shan
Wang, Shih-Hong
Keywords: internal tides;tidal bore;turbulent mixing;south China sea;Taiwan Band;upwelling
Issue Date: 2026
Publisher: AMER GEOPHYSICAL UNION
Journal Volume: 131
Journal Issue: 6
Start page/Pages: 18
Source: JOURNAL OF GEOPHYSICAL RESEARCH-OCEANS
Abstract: 
Cold, saline, and chlorophyll-rich surface waters are frequently observed over the Taiwan Bank in the southern Taiwan Strait, forming a distinct feature referred to as the Green-Cold Pool (GCP). Despite its ecological importance, the physical mechanisms sustaining this cold pool remain unclear. Using an integrated analysis of in situ hydrographic and microstructure observations, geostationary satellite measurements of sea surface temperature (SST) and chlorophyll-a, and high-resolution numerical simulations, we demonstrate that the GCP is primarily driven by shoaling and breaking semidiurnal internal tides. Internal tides generated in the Luzon Strait propagate northwestward and shoal over the continental slope south of the Taiwan Bank. As the internal tide trough encounters the steep slope, it steepens and evolves into internal tidal bores. These bores propagate upslope, inducing cold-water run-up from downslope regions and pushing previously uplifted cold water farther onto the bank. Strong turbulent diffusivity of O(10-3-10-1) m2 s-1 develops near the bore head and within the bottom boundary layer, promoting intense vertical mixing and irreversible upward transport of O(10-3) m s-1. This combined effect forms a bottom-mixed layer (BML) that supplies cold, saline, and nutrient-rich water onto the bank. Depending on the intensity and vertical extent of turbulence, the BML may remain capped by a thin warm surface layer or outcrop at the surface, producing the observed cold SST signal. Barotropic tidal currents modulate the semidiurnal migration of the cold pool but are insufficient to sustain its persistence.
URI: http://scholars.ntou.edu.tw/handle/123456789/26734
ISSN: 2169-9275
DOI: 10.1029/2026JC024010
Appears in Collections:海洋環境資訊系

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