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Jie Wang

Researcher at University of Oklahoma

Publications -  39
Citations -  2605

Jie Wang is an academic researcher from University of Oklahoma. The author has contributed to research in topics: Vegetation & Normalized Difference Vegetation Index. The author has an hindex of 23, co-authored 35 publications receiving 1651 citations. Previous affiliations of Jie Wang include China Agricultural University.

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Tracking the dynamics of paddy rice planting area in 1986–2010 through time series Landsat images and phenology-based algorithms

TL;DR: Wang et al. as mentioned in this paper developed an automated, Landsat-based paddy rice mapping (Landsat-RICE) system that uses time series Landsat images and a phenology-based algorithm based on the unique spectral characteristics of paddy Rice during the flooding/transplanting phase.
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Mapping paddy rice planting areas through time series analysis of MODIS land surface temperature and vegetation index data

TL;DR: This study demonstrated that the improved algorithm by using both thermal and optical MODIS data, provides a robust, simple and automated approach to identify and map paddy rice fields in temperate and cold temperate zones, the northern frontier of rice planting.
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Consistency Between Sun-Induced Chlorophyll Fluorescence and Gross Primary Production of Vegetation in North America

TL;DR: In this article, the authors used satellite-based Vegetation Photosynthesis Model (VPM), MODIS (Moderate Resolution Imaging Spectrometer) images at 8-day temporal and 500 meter spatial resolutions, and NCEP-NARR (National Center for Environmental Prediction-North America Regional Reanalysis) climate data.
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Divergent trends of open-surface water body area in the contiguous United States from 1984 to 2016.

TL;DR: The uneven water-resource distribution across the contiguous United States is presented with the western half of the United States having less water body area but stronger interannual variability compared with the eastern half, and the impacts of climatic and anthropogenic drivers on waterBody area dynamics are examined.