基于NDWI、MNDWI、NDMI、WRI和awi的Al-Abbasia河理化参数遥感与地理信息系统(GIS)检测

Rusul Al-Hakeem, Qusai Y. Al-Kubaisi
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摘要

本研究的目的是找出在实验室检查的水参数与从研究区域的卫星图像检查获得的水指数之间的联系。这是通过分析陆地卫星-8卫星图像结果以及地理信息系统(GIS)完成的。这项研究的主要目标是为纳杰夫阿什拉夫省的阿巴西亚河的化学和物理特征建立一个模型。本研究用水参数为PH、EC、TDS、TSS、Na、Mg、K、SO4、Cl、NO3。为了收集样本,确定了10个采样点,并在同一天获得了卫星图像。地理信息系统(GIS)通常用于在卫星(Landsat-8)图像中投影Al-Abbasia River沿线站点的协调过程,然后分析项目的光谱反射,然后使用(SPSS)软件对分析过程后获得的数据进行处理,找到相关系数和回归方程。由于水指标与水指数之间的高度关联,我们发现了四种回归模型。这些模型可以直接从卫星图像中预测沿Al-Abbasia河任意点的四种水变量(EC、SO4、Cl和NO3)。
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Detection of Physical and Chemical Parameters Using Water Indices (NDWI, MNDWI, NDMI, WRI, and AWEI) for Al-Abbasia River in Al-Najaf Al-Ashraf Governorate Using Remote Sensing and Geographic Information System (GIS) Techniques
The purpose of this study was to find out the connection between the water parameters that were examined in the laboratory and the water index acquired from the examination of the satellite image of the study area. This was accomplished by analysing the Landsat-8 satellite picture results as well as the geographic information system (GIS). The primary goal of this study is to develop a model for the chemical and physical characteristics of the Al-Abbasia River in Al-Najaf Al-Ashraf Governorate. The water parameters employed in this investigation are as follows: (PH, EC, TDS, TSS, Na, Mg, K, SO4, Cl, and NO3). To collect the samples, ten sampling locations were identified, and the satellite image was obtained on the same day. Geographical information systems (GIS) are commonly used for the process of projecting the coordination often Stations Along Al-Abbasia River in the image of the satellite (Landsat-8) to then analyze the spectral reflections of the items and then treat the data obtained after the analysis process by using (SPSS) Software to find the correlation coefficient and regression equations. Because of the high connections between water metrics and the water index, four regression models were discovered. These models can be used to predict the four water variables (EC, SO4, Cl, and NO3) at any point along the Al-Abbasia River directly from the satellite image.
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