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  1. 地点別平年値データ・グラフ (世界の天候データツール (ClimatView 月統計値))

    • Data Description
    • Format
    • Sample Program
    • Data File Download
    • Reference

    Global OHC anomalies are calculated from monthly temperature analysis and monthly climatological salinity data. Temperatures are analyzed objectively on monthly 1° grids for 26 levels at depths of 0 – 2000 m. The analysis is based on in situ observations only. The gridded OHC values are computed by vertically integrating the heat content for each l...

    Data are in ASCII format. All values are stored as annual mean OHC anomalies from the 1991 – 2020 average in 1019 J. Errors indicate one standard deviation. Missing data are set to the value given in the header (-9.9999). The grids represent areas of 1°×1°. The data array consists of 180 rows and 360 columns. The cell in the first column of the fir...

    ohcsample.ZIP- a sample Fortran90 program source file for reading data (179.5°E, 0.5°N) from specific years compressed in ZIP format.

    Each decade is archived in one file. All files are compressed in ZIP format, and all file sizes are less than around 1 MB.

    The following citation should be included when these data are used: Ishii, M., Y. Fukuda, H. Hirahara, S. Yasui, T. Suzuki, and K. Sato, 2017: Accuracy of Global Upper Ocean Heat Content Estimation Expected from Present Observational Data Sets. SOLA, Vol. 13, 163 – 167, doi:10.2151/sola.2017-030.

  2. 2024年2月20日 · Global ocean heat content. Updated on 20 Feb. 2024. Japan Meteorological Agency. An increase in the globally integrated ocean heat content (0 – 2000m) was observed from 1955 to 2023 with a linear trend of 6.18 × 10 22 J per decade. Time series representation of the globally integrated ocean heat content (0 – 2000m) relative to 1955.

  3. 1) True Color Reproduction imagery. True Color Reproduction (TCR) technology enables the display of earth images taken from space in a way that is familiar to the human eye. The imagery consists of data from three visible bands (Band 1, 2 and 3), one near-infrared band (Band 4) and one infrared band (Band 13). To reproduce colors as seen by the ...

  4. Observation Areas. Himawari-8 and -9 will each carry an Advanced Himawari Imager (AHI) scanning five areas: Full Disk (images of the whole Earth as seen from the satellite), the Japan Area (Regions 1 and 2), the Target Area (Region 3) and two Landmark Areas (Regions 4 and 5). While the scan ranges for Full Disk and the Japan Area will be ...

  5. Real-Time Image. Full Disk, Japan and Individual Sectors. Himawari Real-Time Image. The RGB composite imagery is produced by composing satellite images colored in red, green and blue. Details are refer to " RGB Training Library (JMA website)". Select Area.

  6. The Meteorological Satellite Center (MSC) of Japan Meteorological Agency (JMA) has been operating a series of Geostationary Meteorological Satellites (GMSs) since 1978. Its images are contributing to prevent and mitigate several natural disasters.