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Using Remote Sensing to Understand the Total Suspended Matter Dynamics in Lakes Across Inner Mongoli

本站小编 Free考研考试/2021-12-12

论文编号:
论文题目: Using Remote Sensing to Understand the Total Suspended Matter Dynamics in Lakes Across Inner Mongolia
英文论文题目: Using Remote Sensing to Understand the Total Suspended Matter Dynamics in Lakes Across Inner Mongolia
第一作者: 杜云霞
英文第一作者: Y. X. Du
联系作者: 宋开山
英文联系作者: K. S. Song
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发表年度: 2021
卷: 14
期:
页码: 7478-7488
摘要:
英文摘要: An exponential function model was developed based on the red band from Landsat and in situ data. The model performed well, the calibration determination coefficient (R-2) was 0.82 and validation metrics root-mean-square error, mean absolute percent error, and bias was 8.23 mg/L, 30% and -2.35 mg/L, respectively. Then, the time series of total suspended matter (TSM) concentrations for the lakes across Inner Mongolia were presented using the Landsat data from 1984-2019. The results showed that the number of the lakes with TSM decrease was slightly more than that with TSM increase (57% versus 43%). A total of 70.72% of those lakes had a changing rate less than 1 mg/L/yr in TSM, while the other 29.28% had a changing rate more than 1 mg/L/yr. In some lakes (24.2%), the coefficient of variation was greater than 102% indicating significant spatial variation. The TSM less than 20 mg/L mainly appeared in the reservoirs. Based on different environmental backgrounds, this study showed comprehensive estimates (increasing and decreasing regions) of TSM concentrations. Finally, the relative roles of several factors to the TSM changes were quantified and examined at different scales. The responses of TSM changes to NDVI representing vegetation coverage indicated that vegetation played an important role for most lakes. Whilst wind speed and precipitation significantly affected a few lakes. For most lakes, the TSM were affected by multiple factors, where a single factor could not be highlighted. Nevertheless, a comprehensive analysis of the factors surrounding a lake remains relevant for determining the possible trend (better or worse) of its TSM variation.
刊物名称: Ieee Journal of Selected Topics in Applied Earth Observations and Remote Sensing
英文刊物名称: Ieee Journal of Selected Topics in Applied Earth Observations and Remote Sensing
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英文参与作者: Y. X. Du, K. S. Song, Q. Wang, G. Liu, Z. D. Wen, Y. X. Shang, L. L. Lyu, J. Du, S. J. Li, H. Tao, B. H. Zhang and X. Wang
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