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Evaluating Linkages of Weather Patterns and Water Quality Responses in South Florida Using a Synoptic Climatological Approach

机译:用天气气候学方法评估南佛罗里达州天气模式与水质响应之间的联系

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Coastal ocean ecosystems are impacted by atmospheric conditions and events, including episodic severe systems such as hurricanes as well as more regular seasonal events. The complexity of the atmosphere-ocean relationship makes establishing concrete connections difficult. In this paper, this relationship is assessed through synoptic climatological methods, a technique well established in applied climatological research but heretofore rarely used in assessing coastal ocean water quality and ecological status. Historical sea level pressure data are used to define 10 circulation patterns across the southeastern United States and adjacent Gulf of Mexico, based on the spatial pattern of sea level pressure, which can then be associated with the presence of cyclones, precipitation, and wind stress. The frequency of these patterns, and their deviation from climatological means, is then compared with Sea-Viewing Wide Field-of-View Sensor (SeaWiFS) chlorophyll observations over the Florida Bay and south Florida shelf for the period 1997-2010. Several circulation patterns indicative of cyclonic activity over the broader region are associated with increased chlorophyll levels in the study area, while several other patterns, indicative of anticyclonic conditions, are associated with decreased chlorophyll levels. These relationships are spatially and temporally variable, generally with stronger correlations observed in winter and spring, and farther north in the study region when compared with more southern locations near the Florida Keys. The results here demonstrate the potential of using synoptic analysis and derived statistics for tracking and modeling changes in chlorophyll and other indicators related to water quality and biological health.
机译:沿海海洋生态系统受到大气条件和事件的影响,其中包括诸如飓风之类的严重严重系统以及更常规的季节性事件。大气-海洋关系的复杂性使建立具体的联系变得困难。在本文中,通过天气气候学方法对这种关系进行了评估,这是一种在应用气候学研究中已经确立的技术,但迄今为止很少用于评估沿海海洋水质和生态状况。历史海平面压力数据基于海平面压力的空间模式,用于定义美国东南部和相邻墨西哥湾的10种环流模式,然后将其与旋风,降水和风应力的存在联系起来。然后,将这些模式的频率及其与气候手段的偏差,与1997-2010年期间在佛罗里达湾和南佛罗里达大陆架上的海景宽视野传感器(SeaWiFS)叶绿素观测值进行比较。指示较广区域气旋活动的几种循环模式与研究区域的叶绿素水平升高相关,而指示抗气旋状况的其他几种模式与叶绿素水平降低相关。这些关系在空间和时间上是可变的,通常在冬季和春季观察到更强的相关性,而与佛罗里达礁岛附近的更多南部地区相比,研究区域的北部更远。这里的结果证明了使用天气分析和派生统计数据来跟踪和建模叶绿素及其他与水质和生物健康有关的指标变化的潜力。

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