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首页> 外文期刊>Continental Shelf Research: A Companion Journal to Deep-Sea Research and Progress in Oceanography >Sub-seasonal to interannual variations of sea surface temperature, salinity, oxygen anomaly, and transmissivity in Santa Monica Bay, California from 1987 to 1997
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Sub-seasonal to interannual variations of sea surface temperature, salinity, oxygen anomaly, and transmissivity in Santa Monica Bay, California from 1987 to 1997

机译:1987年至1997年,加利福尼亚州圣莫尼卡湾的海表温度,盐度,氧气异常和透射率的季节变化到年际变化

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摘要

While the basic hydrographic and circulation pattern of Santa Monica Bay (SMB) are relatively well known, the seasonal and interannual variations of these patterns are not well established nor are the mechanisms behind them well understood. We analyzed 10 years of hydrographic observations (1987-1997) in the surface layer of SMB off southern California to establish the mean seasonal cycle and to deduce patterns Of sub-seasonal to interannual variability of sea surface temperature, salinity, oxygen anomaly (the difference between oxygen concentration and its solubility), and transmissivity using empirical orthogonal functions and time-lagged cross-correlation methods. All four variables exhibit distinct seasonal variations, whose spatial distributions are a consequence of the interaction of bottom topography, vertical mixing, horizontal advection, freshwater discharge, and biological processes. The seasonal anomalies of all four parameters were estimated by removing the mean seasonal cycle; they exhibit three basic patterns: (1) an inshore/offshore gradient; (2) a balance between horizontal advection of the California Current from the northwest and the Southern California Countercurrent from the south; and (3) freshwater discharge from Ballona, Creek. Air/sea heat flux and vertical mixing are the main factors regulating the dynamics of sea surface temperature. Freshwater discharge centered at Ballona Creek is the principal factor creating the salinity pattern. The annual mean oxygen anomaly shows a substantial supersaturation across the entire SMB. The variations of oxygen anomalies are regulated by local biological productivity, vertical mixing, and horizontal transport. Vertical mixing influences water transparency by suspension of sediments and nutrient supply stimulating phytoplankton growth, A remarkably clear pattern of spatio-temporal variations of all parameters is observed in a relatively small basin; these variations are regulated by both local meteorological factors (air temperature, wind, atmospheric precipitation) and remote forcing, including the El Ni (n) over tildeo-Southern Oscillation cycle. (C) 2004 Elsevier Ltd. All rights reserved.
机译:尽管圣莫尼卡湾(SMB)的基本水文和环流模式是众所周知的,但这些模式的季节和年际变化尚不十分清楚,其背后的机理也未得到很好的理解。我们分析了南加州南部SMB表层的10年水文观测(1987-1997),以建立平均季节周期并推断海表温度,盐度,氧气异常的次季节至年际变化(差异)氧浓度及其溶解度之间的关系),以及使用经验正交函数和时滞互相关方法的透射率。这四个变量均表现出明显的季节变化,其空间分布是底部地形,垂直混合,水平对流,淡水排放和生物过程相互作用的结果。通过去除平均季节周期来估计所有四个参数的季节异常。它们表现出三种基本模式:(1)近岸/近海梯度; (2)在西北方向的加利福尼亚海流与南部的南加利福尼亚逆流的水平对流之间取得平衡; (3)克里克州巴罗纳的淡水排放。空气/海洋热通量和垂直混合是调节海面温度动态的主要因素。以Ballona Creek为中心的淡水排放是形成盐度模式的主要因素。在整个SMB中,年平均氧异常显示出明显的过饱和。氧异常的变化受局部生物生产力,垂直混合和水平运输的调节。垂直混合会通过沉积物的悬浮和养分的供应刺激浮游植物的生长而影响水的透明度。在一个相对较小的盆地中,所有参数的时空变化模式都非常清晰。这些变化受当地气象因素(气温,风,大气降水)和遥测强迫(包括在波浪-南部涛动周期内的El Ni(n))的调节。 (C)2004 Elsevier Ltd.保留所有权利。

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