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Hydrologic changes of Aral Sea: A reveal by the combination of radar altimeter data and optical images.

, and . Ann. GIS, 25 (3): 247-261 (2019)

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Hydrologic changes of Aral Sea: A reveal by the combination of radar altimeter data and optical images., and . Ann. GIS, 25 (3): 247-261 (2019)Remote determination of chromophoric dissolved organic matter in lakes, China., , , , , and . Int. J. Digit. Earth, 7 (11): 897-915 (2014)A Remote Sensing Algorithm of Column-Integrated Algal Biomass Covering Algal Bloom Conditions in a Shallow Eutrophic Lake., , , , and . ISPRS Int. J. Geo Inf., 7 (12): 466 (2018)Changing Patterns of Lakes on The Southern Tibetan Plateau Based on Multi-Source Satellite Data., , , , , , and . Remote. Sens., 12 (20): 3450 (2020)Monitoring Fractional Floating Algae Cover Over Eutrophic Lakes Using Multisensor Satellite Images: MODIS, VIIRS, GOCI, and OLCI., , , , , and . IEEE Trans. Geosci. Remote. Sens., (2022)A Hybrid EOF Algorithm to Improve MODIS Cyanobacteria Phycocyanin Data Quality in a Highly Turbid Lake: Bloom and Nonbloom Condition., , , , and . IEEE J Sel. Topics in Appl. Earth Observ. and Remote Sensing, 10 (10): 4430-4444 (2017)Satellite-Based Estimation of Column-Integrated Algal Biomass in Nonalgae Bloom Conditions: A Case Study of Lake Chaohu, China., , , , , , and . IEEE J Sel. Topics in Appl. Earth Observ. and Remote Sensing, 10 (2): 450-462 (2017)A Validation Study of an Improved SWIR Iterative Atmospheric Correction Algorithm for MODIS-Aqua Measurements in Lake Taihu, China., , , , and . IEEE Trans. Geosci. Remote. Sens., 52 (8): 4686-4695 (2014)Mapping species of submerged aquatic vegetation with multi-seasonal satellite images and considering life history information., , , , , , , and . Int. J. Appl. Earth Obs. Geoinformation, (2017)The refined spatiotemporal representation of soil organic matter based on remote images fusion of Sentinel-2 and Sentinel-3., , , , and . Int. J. Appl. Earth Obs. Geoinformation, (2020)