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Breathing Earth System Simulator (BESS) Radiation v1
Breathing Earth System Simulator (BESS) adalah model berbasis proses sederhana yang menggabungkan transfer radiasi atmosfer dan kanopi, fotosintesis kanopi, transpirasi, dan keseimbangan energi. Model ini menggabungkan model transfer radiasi atmosfer dan jaringan saraf buatan dengan pemicu dari produk atmosfer MODIS untuk menghasilkan produk harian 5 km. … iklim evapotranspirasi gpp modis-derived par radiasi -
Deteksi Peristiwa Kebakaran Harian GlobFire Berdasarkan MCD64A1
Batas kebakaran berdasarkan set data MODIS MCD64A1. Data dihitung berdasarkan algoritma yang mengandalkan encoding dalam struktur grafik, yaitu hubungan ruang-waktu di antara patch area yang terbakar. Setiap kebakaran memiliki nomor unik yang mengidentifikasi peristiwa. area burnt disaster fire globfire mcd64a1 -
Deteksi Peristiwa Kebakaran Akhir GlobFire Berdasarkan MCD64A1
Batas kebakaran berdasarkan set data MODIS MCD64A1. Data dihitung berdasarkan algoritma yang mengandalkan encoding dalam struktur grafik, yaitu hubungan ruang-waktu di antara patch area yang terbakar. Setiap kebakaran memiliki nomor unik yang mengidentifikasi peristiwa. area burnt disaster fire globfire mcd64a1
Datasets tagged modis-derived in Earth Engine
[null,null,[],[[["\u003cp\u003eGlobFire provides daily and final fire boundary data based on the MODIS MCD64A1 dataset, using an algorithm that identifies fire events by analyzing the relationships between burned areas over time.\u003c/p\u003e\n"],["\u003cp\u003eEach fire event in the GlobFire dataset is assigned a unique identifying number.\u003c/p\u003e\n"],["\u003cp\u003eThe Breathing Earth System Simulator (BESS) is a process-based model that simulates interactions between the atmosphere and canopy, producing daily 5-km resolution products related to radiation, photosynthesis, and energy balance.\u003c/p\u003e\n"]]],["The content details three datasets. Two, \"GlobFire Daily\" and \"GlobFire Final,\" identify fire boundaries using the MODIS MCD64A1 dataset. An algorithm encodes the space-time relationship among burned areas, with each fire event having a unique identifier. The third, \"Breathing Earth System Simulator (BESS) Radiation v1,\" is a model coupling atmospheric and canopy transfers, photosynthesis, and energy balance. It uses MODIS atmospheric data to generate 5-km daily products.\n"],null,["# Datasets tagged modis-derived in Earth Engine\n\n-\n\n |-------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------|\n | [### Breathing Earth System Simulator (BESS) Radiation v1](/earth-engine/datasets/catalog/SNU_ESL_BESS_Rad_v1) |\n | Breathing Earth System Simulator (BESS) is a simplified process-based model that couples atmosphere and canopy radiative transfers, canopy photosynthesis, transpiration, and energy balance. It couples an atmospheric radiative transfer model and artificial neural network with forcings from MODIS atmospheric products to generate 5-km daily products. ... |\n | [climate](/earth-engine/datasets/tags/climate) [evapotranspiration](/earth-engine/datasets/tags/evapotranspiration) [gpp](/earth-engine/datasets/tags/gpp) [modis-derived](/earth-engine/datasets/tags/modis-derived) [par](/earth-engine/datasets/tags/par) [radiation](/earth-engine/datasets/tags/radiation) |\n\n-\n\n |-------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------|\n | [### GlobFire Daily Fire Event Detection Based on MCD64A1](/earth-engine/datasets/catalog/JRC_GWIS_GlobFire_v2_DailyPerimeters) |\n | Fire boundaries based on the MODIS dataset MCD64A1. The data were computed based on an algorithm that relies on encoding in a graph structure a space-time relationship among patches of burned areas. Each fire has a unique number identifying the event. |\n | [area](/earth-engine/datasets/tags/area) [burnt](/earth-engine/datasets/tags/burnt) [disaster](/earth-engine/datasets/tags/disaster) [fire](/earth-engine/datasets/tags/fire) [globfire](/earth-engine/datasets/tags/globfire) [mcd64a1](/earth-engine/datasets/tags/mcd64a1) |\n\n-\n\n |-------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------|\n | [### GlobFire Final Fire Event Detection Based on MCD64A1](/earth-engine/datasets/catalog/JRC_GWIS_GlobFire_v2_FinalPerimeters) |\n | Fire boundaries based on the MODIS dataset MCD64A1. The data were computed based on an algorithm that relies on encoding in a graph structure a space-time relationship among patches of burned areas. Each fire has a unique number identifying the event. |\n | [area](/earth-engine/datasets/tags/area) [burnt](/earth-engine/datasets/tags/burnt) [disaster](/earth-engine/datasets/tags/disaster) [fire](/earth-engine/datasets/tags/fire) [globfire](/earth-engine/datasets/tags/globfire) [mcd64a1](/earth-engine/datasets/tags/mcd64a1) |"]]