Provisional symposium proceedings

J. Elken
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Abstract

QUALITY OF ESTONIAN COASTAL WATERS BY UNDERWATER OPTICAL MEASUREMENTS Victor Alari, Ants Erm, Germo Väli, Inga Lips and Urmas Lips Marine Systems Institute at Tallinn University of Technology, Akadeemia tee 21, 12618 Tallinn, Estonia ants@phys.sea.ee Underwater irradiation profiles of the Baltic Sea near the Estonian north and north western coast were measured in the spring and summer 2007. The vertical profiles of downwelling and scalar irradiance in the PAR region were measured in situ on the sea using a frame completed with two planar and a spherical PAR sensors. The measuring system allows calculate as the mean attenuation coefficients of a water column (Kd and Ko respectively) as well the depth profiles Kd(z) and Ko(z). These coefficients, e.g. optical density of the sea water, were varying from 0.13 m (Tallinn-Helsinki line, May) up to 0.75 m (Tallinn Bay, April). As an example some measurements’ series are shown in the figure 1. Fig.1. Variation of attenuation coefficients on Tallinn – Helsinki shipline in the spring 2007. It is seen, that the optical quality of water was much better in May compared to April 2007. Also, it is seen, that expecting the stations immediately near port and road, the Gulf of Finland was quite clear, especially in May. Some increase of optical density towards the Finnish coast could be mentioned also. Many of such cross-sections were made in the spring-summer period of 2007. For example a correlation between the water depth and optical density was followed on the shallows near Hiiumaa. US/EU-Baltic International Symposium 2008 Additionally the water transparency was estimated using the Secchi disk, profiles of chlorophyll were recorded with a fluorimeter, “spectrometric” attenuation coefficient spectra (c*λ), concentrations of chlorophyll a, suspended matter and yellow substance were determined from water samples in the laboratory. This study was supported by the Estonian Science Foundation (Grant No. 7000). The authors are thankful to Dr. Liis Sipelgas for the help with laboratory data. US/EU-Baltic International Symposium 2008 SEATRACK WEB FORECASTS AND BACKTRACKING OF OIL SPILLS AN EFFICIENT TOOL TO FIND ILLEGAL SPILLS USING AIS
临时研讨会论文集
水下光学测量爱沙尼亚沿海水域的质量Victor Alari, Ants Erm, Germo Väli, Inga Lips和Urmas Lips海洋系统研究所,爱沙尼亚塔林,12618爱沙尼亚塔林ants@phys.sea.ee在2007年春夏测量了爱沙尼亚北部和西北海岸附近波罗的海的水下辐射剖面。利用两个平面和一个球形PAR传感器组成的框架,在海面上原位测量了PAR区域的下坡垂直剖面和标量辐照度。测量系统可以计算水柱的平均衰减系数(分别为Kd和Ko)以及深度剖面Kd(z)和Ko(z)。这些系数,例如海水的光密度,从0.13 m(塔林-赫尔辛基线,5月)到0.75 m(塔林湾,4月)不等。作为一个示例,图1显示了一些测量序列。图1。2007年春季塔林-赫尔辛基航线衰减系数的变化。可以看出,5月份的水质比2007年4月份要好得多。此外,可以看出,芬兰湾的港口和公路附近的车站是相当清晰的,特别是在5月。也可以提到朝向芬兰海岸的光密度有所增加。许多这样的横截面是在2007年春夏期间制作的。例如,在Hiiumaa附近的浅滩上,研究了水深和光密度之间的相关性。此外,使用塞奇圆盘估计了水的透明度,用荧光仪记录了叶绿素的剖面,“光谱”衰减系数光谱(c*λ),在实验室中从水样中测定了叶绿素a、悬浮物和黄色物质的浓度。这项研究得到了爱沙尼亚科学基金会(批准号7000)的支持。作者感谢Liis Sipelgas博士在实验室数据方面的帮助。美国/欧盟-波罗的海国际研讨会2008:座位架网络预测和回溯:利用AIS发现非法溢油的有效工具
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