海流和大气环流对克拉斯诺达尔地区黑海沿岸越冬欧洲凤尾鱼捕捞效率的影响

B. Panov, E. O. Spiridonova
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引用次数: 0

摘要

在欧洲凤尾鱼越冬和越冬迁徙期间,俄罗斯渔民主要在克拉斯诺达尔地区的黑海沿岸捕捞欧洲凤尾鱼。在越冬地,温度条件成为决定欧洲凤尾鱼商业集中行为的次要因素,风和海流是主要因素。因此,这项工作的目的是确定水循环和当地大气输送的每日数据在短期(1-7天)预测黑海欧洲凤尾鱼捕捞的潜在用途。该研究使用了2019年1月至3月的欧洲凤尾鱼渔业监测材料,以及上述期间黑海和亚速海海平面异常(来自卫星测高数据)和欧洲地表大气压力和温度(分析)的每日地图。利用图解法和相关法,研究了黑海东北部海区捕获率的动态变化及其与海拔和大气输送指标的关系。分析表明,导致捕捞量增加的主要因素是沿海60公里海域西北海流的增强。大气输送对捕捞效率的影响取决于近岸流场的中尺度涡结构。在强烈的西北海流存在时,西南大气输送对渔业有积极影响,而在反气旋曲流存在时,东北大气输送对渔业有积极影响。当捕捞绩效的决定因素变化1-7天时,存在最大显著关系,可以对捕捞效率进行短期预测。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Influence of Currents and Atmospheric Circulation on the Efficiency of European Anchovy Fishing during its Wintering off the Black Sea Coast of the Krasnodar Territory
Russian fishermen harvest European anchovy primarily off the Black Sea coast of the Krasnodar Territory during its wintering and wintering migrations. At wintering grounds, temperature conditions become a secondary factor in determining the behaviour of commercial concentration of European anchovy, with wind and currents being the primary factors. Therefore, the aim of this work is to determine the potential use of daily data on water circulation and local atmospheric transport in short-term (1–7 days) forecasting of European anchovy fishing in the Black Sea. The research used the European anchovy fishery monitoring materials for January – March 2019, as well as daily maps of the Black and Azov Seas level anomalies (from satellite altimetry data) and surface atmospheric pressure and temperature in Europe (analysis) for the mentioned period. The dynamics of the catch rate and its relation to altimetry and atmospheric transport indicators in the north-eastern part of the Black Sea were investigated using graphical and correlation methods. This analysis showed that the main factor contributing to increased catches is intensification of northwest currents in the coastal 60-km zone. The effect of atmospheric transport on fishing efficiency depends on the mesoscale eddy structure of the nearshore current field. In the presence of an intense northwest current in the fishing area, southwest atmospheric transports have a positive effect on fishing, while in the presence of an anticyclonic meander of currents, northeast atmospheric transports become effective. The presence of maximum significant relationships when the determinants of fishing performance are shifted by 1–7 days allows making short-term predictions of fishing efficiency.
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