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Geographical Studies of Underwater Light Dynamics in the Coastal Archipelago of SW Finland, Baltic Sea

机译:芬兰西南部波罗的海沿海群岛水下光动力学的地理研究

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摘要

The underwater light field is an important environmental variable as it, among other things, enables aquatic primary production. Although the portion of solar radiation that is referred to as visible light penetrates water, it is restricted to a limited surface water layer because of efficient absorption and scattering processes. Based on the varying content of optical constituents in the water, the efficiency of light attenuation changes in many dimensions and over various spatial and temporal scales. This thesis discusses the underwater light dynamics of a transitional coastal archipelago in south-western Finland, in the Baltic Sea. While the area has long been known to have a highly variable underwater light field, quantified knowledge on the phenomenon has been scarce, patchy, or non-existent.This thesis focuses on the variability in the underwater light field through euphotic depths (1% irradiance remaining), which were derived from in situ measurements of vertical profiles of photosynthetically active radiation (PAR). Spot samples were conducted in the archipelago of south-western Finland, mainly during the ice-free growing seasons of 2010 and 2011. In addition to quantifying both the seasonal and geographical patterns of euphotic depth development, the need and usability of underwater light information are also discussed. Light availability was found to fluctuate in multiple dimensions and scales. The euphotic depth was shown to have combined spatio-temporal dynamics rather than separate changes in spatial and temporal dimensions. Such complexity in the underwater light field creates challenges in data collection, as well as in its utilisation. Although local information is needed, in highly variable conditions spot sampled information may only poorly represent its surroundings. Moreover, either temporally or spatially limited sampling may cause biases in understanding underwater light dynamics. Consequently, the application of light availability data, for example in ecological modelling, should be made with great caution.
机译:水下光场是重要的环境变量,因为它尤其可以实现水生初级生产。尽管被称为可见光的太阳辐射部分会穿透水,但由于有效的吸收和散射过程,它仅限于有限的地表水层。基于水中光学成分含量的变化,光衰减的效率在许多维度上以及在各种时空尺度上变化。本文讨论了波罗的海西南部芬兰沿海过渡群岛的水下光动力学。虽然早就知道该区域的水下光场变化很大,但对该现象的量化认识却很少,不完整或不存在。本论文着重研究了水下光场在富光深度下的变化(辐照度为1%)。剩余的),它们是从对光合有效辐射(PAR)的垂直剖面的原位测量中得出的。现场采样主要在芬兰西南部的群岛上进行,主要是在2010年和2011年的无冰生长季节进行的。除了量化常光深度发展的季节和地理模式外,还需要水下光信息并对其进行利用。还讨论了。发现光的可用性在多个维度和尺度上波动。结果表明,共生深度具有时空动力学结合,而不是时空变化。水下光场的这种复杂性给数据收集及其利用带来了挑战。尽管需要本地信息,但是在高度可变的条件下,现场采样的信息可能只能代表周围的环境。此外,在时间或空间上有限的采样可能会导致在理解水下光动力学方面出现偏差。因此,应非常谨慎地使用光可用性数据,例如在生态模型中。

著录项

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    Luhtala Hanna;

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  • 年度 2016
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