Utilizing Spectral Indices to Estimate Total Dissolved Solids in Water Body Northwest Arabian Gulf

Adel Jassim Al-Fartusi, Mutasim Ibrahim Malik, Hameed Majeed Abduljabbar
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Abstract

Remote sensing techniques have made it possible to monitor an important parameter of water quality, total dissolved solids (TDS), more appropriately and regularly. The research aims to assess Landsat 8 OLI images' ability to expose TDS on the sea surface in Iraqi marine waters. six band combinations were employed in the correlation analysis between band values and six dissolved solids samples collected during the fieldwork in three sampling stations to determine the amount of total dissolved solids (TDS): st1, st2, and st3 in December 2014 (26,38,36.9) g.L-1 and mid-January 2022 (27.4,37.9,37) g.L-1, respectively. Furthermore, two images of the Landsat-8 OLI satellite were captured concurrently with the gathering of samples for TDS detection at the measuring stations. After atmospheric correction and the add the remote sensing indicators, the reflectance of water was extracted from satellite images and utilized to express the spectral characteristics of various TDS concentrations, since the values were (22.64, 38, 32.46) g.L-1 in 2014, and (27.5, 36.68, 38) g.L-1 in 2022. Correlation coefficient (R2) values of 0.81, 0.96, and Pearson correlation (r) values of 0.90, 0.97 were found among field measurements and spectral data of TDS indicator 2 (SI-2) derived from green, blue, and red bands of Landsat -8 at 2014, 2022 respectively.
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利用光谱指数估算阿拉伯湾西北部水体中溶解固体总量
遥感技术使人们能够更适当和更有规律地监测水质的一个重要参数,即溶解固体总量。这项研究的目的是评估Landsat 8 OLI图像在伊拉克海水表面暴露TDS的能力。采用6个波段组合对3个采样站野外采集的6个溶解固体样品的波段值进行相关性分析,分别确定2014年12月(26、38、36.9)g.L-1和2022年1月中旬(27.4、37.9、37)g.L-1的st1、st2和st3总溶解固体(TDS)量。此外,在测量站采集用于TDS检测的样品的同时,还捕获了Landsat-8 OLI卫星的两幅图像。经大气校正和添加遥感指标后,从卫星影像中提取水体反射率,用于表达不同TDS浓度的光谱特征,2014年的反射率为(22.64、38、32.46)g.L-1, 2022年的反射率为(27.5、36.68、38)g.L-1。Landsat -8卫星2014、2022年绿、蓝、红波段TDS指标2 (SI-2)实测数据与光谱数据的相关系数(R2)分别为0.81、0.96,Pearson相关系数(r)分别为0.90、0.97。
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