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Upwelling-enhanced seasonal stratification in a semiarid bay

机译:半干旱海湾中上升流增强的季节性分层

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摘要

The role of wind-driven upwelling in stratifying a semiarid bay in the Gulf of California is demonstrated with observations in Bahía Concepción, Baja California Sur, Mexico. The stratification in Bahía Concepción is related to the seasonal heat transfer from the atmosphere as well as to cold water intrusions forced by wind-driven upwelling. During winter, the water column is relatively well-mixed by atmospheric cooling and by northwesterly, downwelling-favorable, winds that typically exceed 10 m/s. During summer, the water column is gradually heated and becomes stratified because of the heat flux from the atmosphere. The wind field shifts from downwelling-favorable to upwelling-favorable at the beginning of summer, i.e., the winds become predominantly southeasterly. The reversal of wind direction triggers a major cold water intrusion at the beginning of the summer season that drops the temperature of the entire water column by 3-5 °C. The persistent upwelling-favorable winds during the summer provide a continuous cold water supply that helps maintain the stratification of the bay.
机译:在墨西哥湾下加利福尼亚州的巴伊亚·康塞普西翁(BahíaConcepción)观察到,证明了风动力上升流对加利福尼亚湾半干旱海湾分层的作用。巴伊亚州康塞普西翁(BahíaConcepción)的分层与大气中的季节性热量转移以及风向上升迫使冷水侵入有关。在冬季,水柱由于大气冷却和西北风(向下气流有利)的混合而相对混合,风速通常超过10 m / s。在夏季,由于来自大气的热通量,水柱逐渐变热并分层。在夏季开始时,风场从下涌有利的地方转变为上涌有利的地方,即,风向以东南为主。风向的逆转会在夏季开始时引发大量的冷水入侵,使整个水柱的温度下降3-5°C。夏季持续上升的有利风提供了持续的冷水供应,有助于维持海湾的分层。

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