4.2 Article

Seasonal surface ocean circulation and dynamics in the Philippine Archipelago region during 2004-2008

期刊

DYNAMICS OF ATMOSPHERES AND OCEANS
卷 47, 期 1-3, 页码 114-137

出版社

ELSEVIER SCIENCE BV
DOI: 10.1016/j.dynatmoce.2008.10.007

关键词

Philippine Archipelago; Straits; Circulation and dynamics; Transport

资金

  1. ONR [N00014-07-1-0413, N00014-07-1-0417, N00014-06-1-0689]
  2. NASA Ocean Vector Wind Science Team [1283568]
  3. NASA Modeling, Analysis and Prediction (MAP) Program
  4. Directorate For Geosciences
  5. Div Atmospheric & Geospace Sciences [0745872] Funding Source: National Science Foundation

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The dynamics of the seasonal surface circulation in the Philippine Archipelago (117 degrees E-128 degrees E, 0 degrees N-14 degrees N) are investigated using a high-resolution configuration of the Regional Ocean Modeling System (ROMS) for the period of January 2004-March 2008. Three experiments were performed to estimate the relative importance of local, remote and tidal forcing. On the annual mean, the circulation in the Sulu Sea shows inflow from the South China Sea at the Mindoro and Balabac Straits, outflow into the Sulawesi Sea at the Sibutu Passage, and cyclonic circulation in the southern basin. A strong jet with a maximum speed exceeding 100 cm, s(-1) forms in the northeast Sulu Sea where currents from the Mindoro and Tablas Straits converge. Within the Archipelago, strong westward currents in the Bohol Sea carry the surface water of the western Pacific (WP) from the Surigao Strait into the Sulu Sea via the Dipolog Strait. In the Sibuyan Sea, currents flow westward, which carry the surface water from the WP near the San Bernardino Strait into the Sulu Sea via the Tablas Strait. These surface currents exhibit strong variations or reversals from winter to summer. The cyclonic (anticyclonic) circulation during winter (summer) in the Sulu Sea and seasonally reversing currents within the Archipelago region during the peak of the winter (summer) monsoon result mainly from local wind forcing, while remote forcing dominates the current variations at the Mindoro Strait, western Sulu Sea and Sibutu passage before the monsoons reach their peaks. The temporal variations (with the mean removed), also referred to as anomalies, of volume transports in the upper 40 m at eight major Straits are caused predominantly by remote forcing, although local forcing can be large during sometime of a year. For example, at the Mindoro Strait, the correlation between the time series of transport anomalies due to total forcing (local, remote and tides) and that due only to the remote forcing is 0.81 above 95% significance, comparing to the correlation of 0.64 between the total and local forcing. Similarly, at the Sibutu Passage. the correlation is 0.96 for total versus remote effects, comparing to 0.53 for total versus local forcing. The standard deviations of transports from the total, remote and local effects are 0.59 Sv, 0.50 Sv, and 0.36 Sv, respectively, at the Mindoro Strait; and 1.21 Sv, 1.13 Sv, and 0.59 Svat the Sibutu Passage. Nonlinear rectification of tides reduces the mean westward transports at the Surigao, San Bernardino and Dipolog Straits, and it also has non-negligible influence on the seasonal circulation in the Sulu Sea. (c) 2008 Elsevier B.V. All rights reserved.

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