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首页> 外文期刊>Israel Journal of Plant Sciences >Underwater light field patterns in subtropical coastal waters: A case study from the Gulf of Eilat (Aqaba)
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Underwater light field patterns in subtropical coastal waters: A case study from the Gulf of Eilat (Aqaba)

机译:亚热带沿海水域的水下光场模式:以埃拉特湾(亚喀巴)为例

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In this study, we describe the seasonal patterns and the depth dependence of the underwater distribution of ultraviolet radiation (UVR) and photosynthetically active radiation (PAR) in the Gulf of Eilat (Aqaba). Our data show a remarkable seasonal variation in the daily irradiance dose that reaches the benthos, including seaweeds, turf algae, seagrasses, and the endosymbiotic algae of corals. Corals experience 7 times less light in the winter than in summer, which is equivalent to an almost 30 m deeper location. This seasonal variation in irradiance to which high-latitude benthic phototrophs are exposed, is due to a synergetic effect of changes in solar elevation and in water transparency. Unlike the major seasonal difference in insolation in subtropical regions, low-latitude coral reefs and benthic macrophytes are exposed to only much subtler differences in irradiance. One of the northernmost coral reefs in the world, yet a very highly diverse one, is found at the northern tip of the Gulf of Eilat(Aqaba) at 29°N. Together with its geographical marginality, this reef is also characterized by low cloud cover, making it an appropriate model for demonstrating the dynamics of a "clean" seasonal light field, in contrast to coral reefs at high latitudes with much higher cloud cover. Based on these data, we present a model allowing calculation of the seasonal variation of a light field as a function of depth and latitude under clear-sky conditions, and variable water transparency.
机译:在这项研究中,我们描述了埃拉特湾(Aqaba)的紫外线辐射(UVR)和光合有效辐射(PAR)的水下分布的季节模式和深度依赖性。我们的数据显示,到达底栖动物的日照剂量存在明显的季节性变化,包括海藻,草皮藻类,海草和珊瑚的内共生藻类。冬季,珊瑚的光线比夏季少7倍,相当于深了近30 m。高纬度底栖生物所暴露的辐照度的这种季节性变化是由于太阳海拔高度和水透明度的协同作用所致。与亚热带地区日照的主要季节性差异不同,低纬度珊瑚礁和底栖大型植物的辐照度仅受到很小的差异。在埃拉特湾(亚喀巴)北端29°N处发现了世界上最北端的珊瑚礁之一,但种类非常丰富。连同其地理边缘性,该礁还具有低云量的特征,使其成为展示“清洁”季节性光场动态的合适模型,与高纬度地区云量高得多的珊瑚礁相反。基于这些数据,我们提出了一个模型,该模型可以计算在晴空条件下以及可变的水透明度下,光场的季节变化与深度和纬度的关系。

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