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Fang, Hongliang (2021): Vegetation structural field measurement data for Northeastern China Crops (NECC) [dataset]. PANGAEA, https://doi.org/10.1594/PANGAEA.939444

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Abstract:
Field measured structural variables, particularly continuous in-situ data are pivotal for mechanism study and remote sensing validation. Multiple continuous field measurement campains were conducted in northeastern China crop fields: Honghe (2012, 2013, 2019) and Hailun (2016) . The Honghe site (47.65°N, 133.51°E) is covered with large homogeneous paddy rice and the Hailun site (47.41°N, 126.82°E) is planted with maize, sorghum, and soybean. Continuous measurements were made throughout almost the entire growing season, ranging from day of year (DOY) 160 to 280. For each site, five plots were selected. Typically, four elemental sampling units (approximately 15 m*15 m) were sampled for each plot to reduce random sampling error. Destructive sampling, Digital hemispheric photography (DHP), LAI-2200 canopy analyzer, and AccuPAR meausrements were carried out in the field measurement simultaneously. The green leaf area index (GAI), yellow leaf area index (YAI), and plant area index (PAI, including the area of leaf, stem, and ear) were measured with destructive sampling. The effective leaf area index (LAIeff), leaf area index (LAI), fractional of vegetation cover (FCOVER), and clumping index (CI) were derived from DHP and LAI-2200. Since DHP and LAI-2200 cannot separate the stem from leaf, the LAI obtained from DHP and LAI-2200 can be regarded as the PAI. The fraction of absorbed photosynthetically active radiation (FAPAR) was measured with AccuPAR using the four flux method. High-resolution LAI reference maps of these sites were also produced from cloud-free HJ-1 (30 m), Landsat 7 ETM+ (30 m), and Sentinel-2A MSI (20 m) images. The HJ-1 images were rectified to the Landsat 7 ETM+ images and were atmospherically corrected and transformed to surface reflectance data. The high-resolution reference LAI was derived from surface reflectance using the look-up table approach based on the ACRM model simulation. The reference LAI shows high consistency with field LAI (R2=0.85, bias=0.22, and RMSE=0.66). The reference LAI mean and standard deviation values within an extent of 3 km * 3 km in each site were extracted and provided in the dataset. The dataset is useful for the study of vegetation structural parameters and the validation of remote sensing products.
Keyword(s):
China crops; clumping index (CI); fractional of vegetation cover (FCOVER); fraction of absorbed photosynthetically active radiation (FAPAR); leaf area index(LAI)
Related to:
Fang, Hongliang; Li, Wenjuan; Wei, Shanshan; Jiang, Chongya (2014): Seasonal variation of leaf area index (LAI) over paddy rice fields in NE China: Intercomparison of destructive sampling, LAI-2200, digital hemispherical photography (DHP), and AccuPAR methods. Agricultural and Forest Meteorology, 198-199, 126-141, https://doi.org/10.1016/j.agrformet.2014.08.005
Fang, Hongliang; Ye, Yongchang; Liu, Weiwei; Wei, Shanshan; Ma, Li (2018): Continuous estimation of canopy leaf area index (LAI) and clumping index over broadleaf crop fields: An investigation of the PASTIS-57 instrument and smartphone applications. Agricultural and Forest Meteorology, 253-254, 48-61, https://doi.org/10.1016/j.agrformet.2018.02.003
Fang, Hongliang; Zhang, Y; Wei, Shanshan; Li, Wenjuan; Ye, Yongchang; Sun, Tao; Liu, Weiwei (2019): Validation of global moderate resolution leaf area index (LAI) products over croplands in northeastern China. Remote Sensing of Environment, 233, 111377, https://doi.org/10.1016/j.rse.2019.111377
Zhang, Yinghui; Fang, Hongliang; Wang, Yao; Li, Sijia (2021): Variation of intra-daily instantaneous FAPAR estimated from the geostationary Himawari-8 AHI data. Agricultural and Forest Meteorology, 307, 108535, https://doi.org/10.1016/j.agrformet.2021.108535
Funding:
National Natural Science Foundation of China (NSFC), grant/award no. 41171333
National Natural Science Foundation of China (NSFC), grant/award no. 41471295
National Natural Science Foundation of China (NSFC), grant/award no. 41531174
Coverage:
Median Latitude: 47.530000 * Median Longitude: 130.165000 * South-bound Latitude: 47.410000 * West-bound Longitude: 126.820000 * North-bound Latitude: 47.650000 * East-bound Longitude: 133.510000
Event(s):
Hailun_site * Latitude: 47.410000 * Longitude: 126.820000 * Location: Northeastern China * Method/Device: Field measurement
Honghe_site * Latitude: 47.650000 * Longitude: 133.510000 * Location: Northeastern China * Method/Device: Field measurement
Status:
Curation Level: Basic curation (CurationLevelB)
Size:
197.3 kBytes

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