Reconstruction of the currents structure in the Kuibyshev Reservoir using satellite data and field measurements

I. A. Kapustin, A. Molkov, A. Ermoshkin, D. Dobrokhotova, O. Danilicheva, G. Leshchev
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Abstract

   This paper is devoted to a series of the first field subsatellite experiments conducted in the waters of the Kuibyshev Reservoir (Kama estuary) in 2023. Simultaneously with ship-based measurements of current and wind fields, as well as chlorophyll-a concentration, two high-spatial-resolution satellite scanners surveyed the study area of the reservoir. From sequential images, current fields were reconstructed using the standard maximum cross-correlation (MCC) method, which were then compared with measurements from the Acoustic Doppler Current Profiler (ADCP). In certain parts of the water area, satisfactory agreement was obtained between the reconstructed currents and direct measurement current data. And in those parts of the water area where a significant discrepancy between the ADCP and MCC data was recorded, the possible reasons for the discrepancies were analyzed. Preliminary estimates of the parameters that have a significant impact on the possibility of reconstructing currents using the MCC method in inland eutrophicated water bodies have been made, and some limitations of the MCC method as a whole have been identified. Possible ways of further development of the method are analyzed.
利用卫星数据和实地测量重建库比谢夫水库的水流结构
本文主要介绍 2023 年在库比谢夫水库(卡马河口)水域进行的一系列首次实地子卫星实验。在对水流场、风场以及叶绿素-a 浓度进行船基测量的同时,两台高空间分辨率卫星扫描仪对水库研究区域进行了勘测。根据连续图像,采用标准的最大交叉相关(MCC)方法重建了海流场,然后与声学多普勒海流剖面仪(ADCP)的测量结果进行比较。在某些水域,重建的海流与直接测量的海流数据之间取得了令人满意的一致。在 ADCP 和 MCC 数据存在明显差异的水域,分析了造成差异的可能原因。初步估算了对内陆富营养化水体中使用 MCC 方法重建水流的可能性有重大影响的参数,并确定了 MCC 方法整体上的一些局限性。分析了进一步发展该方法的可能途径。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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