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The Impact of Anthropogenic Land-Cover Change on the Florida Peninsula Sea Breezes and Warm Season Sensible Weather

机译:人为的土地覆盖变化对佛罗里达半岛海风和暖季敏感天气的影响

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During the twentieth century, the natural landscape of the Florida peninsula was transformed extensively by agriculture, urbanization, and the diversion of surface water features. The purpose of this paper is to present a numerical modeling study in which the possible impacts of this transformation on the warm season climate of the region were investigated. For three separate July-August periods (1973, 1989, and 1994), a pair of simulations was performed with the Regional Atmospheric Modeling System. Within each pair, the simulations differed only in the specification of land-cover class. The two different classes were specified using highly detailed datasets that were constructed to represent pre-1900 natural land cover and 1993 land-use patterns, thus capturing the landscape transformation within each pair of simulations. When the pre-1900 natural cover was replaced with the 1993 land-use dataset, the simulated spatial patterns of the surface sensible and latent heat flux were altered significantly, resulting in changes in the structure and strength of climatologically persistent, surface-forced mesoscale circulations―particularly the afternoon sea-breeze fronts. This mechanism was associated with marked changes in the spatial distribution of convective rainfall totals over the peninsula. When averaged over the model domain, this redistribution was reflected as an overall decrease in the 2-month precipitation total. In addition, the domain average of the diurnal cycle of 2-m temperature was amplified, with a noted increase in the daytime maximum. These results were consistent among all three simulated periods, and largely unchanged when subjected to a number of model sensitivity factors. Furthermore, the model results are in reasonable agreement with an analysis of observational data that indicates decreasing regional precipitation and increasing daytime maximum temperature during the twentieth century. These results could have important implications for water resource and land-use management issues in south Florida, including efforts to restore and preserve the natural hydroclimate of the Everglades ecosystem. This study also provides more evidence for the need to consider anthropogenic land-cover change when evaluating climate trends.
机译:在20世纪,由于农业,城市化和地表水特征的转移,佛罗里达半岛的自然景观发生了巨大变化。本文的目的是提供一个数值模型研究,其中研究了这种转变对该地区暖季气候的可能影响。在七个独立的七月至八月时期(1973年,1989年和1994年),使用区域大气模拟系统进行了一对模拟。在每一对中,模拟仅在土地覆盖类别的规范上有所不同。使用高度详细的数据集指定了两个不同的类别,这些数据集被构造为代表1900年前的自然土地覆盖和1993年的土地利用模式,从而在每对模拟中捕获了景观转换。当将1900年前的自然覆盖物替换为1993年的土地利用数据集时,表面感热和潜热通量的模拟空间格局发生了显着变化,从而导致了气候持久性,表面强迫的中尺度环流的结构和强度发生了变化。 ―特别是下午的海风前沿。该机制与半岛对流降水总量空间分布的明显变化有关。当对模型域进行平均时,这种重新分布反映为2个月降水总量的总体下降。此外,2 m温度昼夜周期的区域平均值被放大,白天最大值明显增加。这些结果在所有三个模拟周期中都是一致的,并且在受到许多模型敏感性因素影响时,在很大程度上没有变化。此外,该模型的结果与观测数据的分析基本吻合,后者表明了二十世纪区域降水减少和白天最高气温升高。这些结果可能会对佛罗里达州南部的水资源和土地利用管理问题产生重要影响,包括努力恢复和保护大沼泽地生态系统的自然水文气候。这项研究还为评估气候趋势时需要考虑人为土地覆盖变化提供了更多证据。

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