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The NASA POWER Project's Data Access Viewer (DAV) that provides solar radiation and meteorological data sets from NASA research for support of renewable energy, building energy efficiency and agricultural needs.
- Tutorials
The following sections detail the layout and functionality...
- Data Services
The POWER Data Services consists of a series of restful...
- Earthdata
The Prediction Of Worldwide Energy Resources (POWER) is a...
- Power
The Prediction Of Worldwide Energy Resources (POWER) project...
- Data Download
This is a webpage to navigate and download the POWER data...
- Tutorials
The Prediction Of Worldwide Energy Resources (POWER) project was initiated to improve upon the current renewable energy data set and to create new data sets from new satellite systems. The POWER project targets three user communities: (1) Renewable Energy, (2) Sustainable Buildings, and (3) Agroclimatology.
This is a webpage to navigate and download the POWER data archive.
The following sections detail the layout and functionality of the POWER DAV, which enables users to locate, analyze, and interact with geographic data and map features. Core DAV Tools are used to download and interact with POWER data.
3 de oct. de 2021 · The POWER Data Services consists of a series of restful Application Programming Interfaces (API), geospatial enabled image services, and the Registry of Open Data on AWS. These three different service offerings support data discovery, access, and distribution to our user base as Analysis Ready Data ( ARD ) and as direct application ...
23 de may. de 2024 · POWER provides data products for renewable energy, sustainable buildings, and agroclimatology from various sources and time scales. It is a geographic information system (GIS) that allows users to customize and explore the data interactively.
19 de dic. de 2019 · The POWER data, including the elevation value, represent average values over their original source spatial resolution. In complex terrain, such as mountains, the averaged elevation of the grid cell can be substantially different from the local elevation of a local surface site.