黑海东北部2021年春夏期总悬浮物分布特征

A. Latushkin, Y. Artamonov, Elena E. Skripaleva, Alexandr A. Fedirko, Danil D. Ryabokon
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引用次数: 0

摘要

本文介绍了2021年春季(4月22日至5月17日)和夏季(7月29日至8月10日)在黑海东北部进行的水文和水文光学测量结果,这是Vodyanitsky教授号第116和117次巡航。结果表明,在河流径流密集的春季,总悬浮物含量高的区域是沿克拉斯诺达尔边疆区海岸延伸的宽达40 km的带状区域。夏季河流径流减弱时,总悬浮物浓度的最大值出现在宽度不超过20 km的较窄的沿海地带。浑浊度在春季在表层最大,夏季降至季节性温跃层、盐跃层和斜斜层。总悬浮物浓度与温度水平分布的一致性在季节温跃层深层有显著水平,春季在20 ~ 35 m层,夏季在15 ~ 70 m层,而直接相关,即在这些深度,温暖的水域以浊度增加为特征。春季总悬浮物浓度、盐度和密度的水平场一致性最高的是20 ~ 25 m层,相关性相反,即在这些深度,含盐量低、密度大的水域浑浊度增加,这可以用河流径流密集来解释。夏季保持相关性的性质,总悬浮物浓度、盐度和密度水平场的一致性最好的是表层10-m层,深度大于20-40 m层的季节性盐跃层和斜跃层。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Total suspended matter distribution features in the north-eastern part of the Black Sea in spring-summer period of 2021
The results of hydrological and hydrooptical measurements carried out in the spring (April 22–May 17) and summer (July 29–August 10) 2021 in the north-eastern part of the Black Sea during cruises 116th and 117th of the R/V Professor Vodyanitsky are presented. It is shown that in spring, when there was an intensive rivers run-off, the area with a high content of total suspended matter was a strip up to 40 km wide, stretched along the coast of the Krasnodar Krai. In summer, when the river run-off was weakened, the maximum values of the total suspended matter concentration were noted in a relatively narrow coastal strip no more than 20 km wide. Maximum turbidity was noted in the surface layer in spring and in summer it descended into the layer of seasonal thermocline, halocline and pycnocline. The consistency of the horizontal distributions of the total suspended matter concentration and temperature had a significant level deeper than the seasonal thermocline – in the spring in the layer from 20 to 35 m, in the summer in the layer from 15 to 70 m, while a direct correlation was observed, i.e. at these depths, warmer waters were characterized by increased turbidity. The maximum level of consistency between the horizontal fields of the total suspended matter concentration, salinity and density in spring was observed in the upper 20–25 m layer, while the correlation was inverse, i.e. at these depths, less saline and denser waters were characterized by increased turbidity, which is explained by intensive river run-off. In summer, the nature of the correlation was preserved, and the best consistency of the horizontal fields of the total suspended matter concentration, salinity and density was observed in the surface 10-m layer and deeper than the seasonal halocline and pycnocline in the 20–40 m layer.
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