NOAA GOES Image Viewer website
6 Dec 2019 - 11:49 EST
6 Dec 2019 - 16:49 UTC

GOES-East Mesoscale view - Day Cloud Phase at 10°N - 60°W - Near Trinidad and Tobago

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Day Cloud Phase - RGB used to evaluate the phase of cooling cloud tops - 22 Sep 2019 - 1426 UTC
Day Cloud Phase - RGB used to evaluate the phase of cooling cloud tops - 22 Sep 2019 - 1426 UTC
Day Cloud Phase - RGB used to evaluate the phase of cooling cloud tops - 22 Sep 2019 - 1427 UTC
Day Cloud Phase - RGB used to evaluate the phase of cooling cloud tops - 22 Sep 2019 - 1427 UTC
Day Cloud Phase - RGB used to evaluate the phase of cooling cloud tops - 22 Sep 2019 - 1428 UTC
Day Cloud Phase - RGB used to evaluate the phase of cooling cloud tops - 22 Sep 2019 - 1428 UTC
Day Cloud Phase - RGB used to evaluate the phase of cooling cloud tops - 22 Sep 2019 - 1429 UTC
Day Cloud Phase - RGB used to evaluate the phase of cooling cloud tops - 22 Sep 2019 - 1429 UTC
Day Cloud Phase - RGB used to evaluate the phase of cooling cloud tops - 22 Sep 2019 - 1430 UTC
Day Cloud Phase - RGB used to evaluate the phase of cooling cloud tops - 22 Sep 2019 - 1430 UTC
Day Cloud Phase - RGB used to evaluate the phase of cooling cloud tops - 22 Sep 2019 - 1431 UTC
Day Cloud Phase - RGB used to evaluate the phase of cooling cloud tops - 22 Sep 2019 - 1431 UTC
Day Cloud Phase - RGB used to evaluate the phase of cooling cloud tops - 22 Sep 2019 - 1432 UTC
Day Cloud Phase - RGB used to evaluate the phase of cooling cloud tops - 22 Sep 2019 - 1432 UTC
Day Cloud Phase - RGB used to evaluate the phase of cooling cloud tops - 22 Sep 2019 - 1433 UTC
Day Cloud Phase - RGB used to evaluate the phase of cooling cloud tops - 22 Sep 2019 - 1433 UTC
Day Cloud Phase - RGB used to evaluate the phase of cooling cloud tops - 22 Sep 2019 - 1434 UTC
Day Cloud Phase - RGB used to evaluate the phase of cooling cloud tops - 22 Sep 2019 - 1434 UTC
Day Cloud Phase - RGB used to evaluate the phase of cooling cloud tops - 22 Sep 2019 - 1435 UTC
Day Cloud Phase - RGB used to evaluate the phase of cooling cloud tops - 22 Sep 2019 - 1435 UTC
Day Cloud Phase - RGB used to evaluate the phase of cooling cloud tops - 22 Sep 2019 - 1436 UTC
Day Cloud Phase - RGB used to evaluate the phase of cooling cloud tops - 22 Sep 2019 - 1436 UTC
Day Cloud Phase - RGB used to evaluate the phase of cooling cloud tops - 22 Sep 2019 - 1437 UTC
Day Cloud Phase - RGB used to evaluate the phase of cooling cloud tops - 22 Sep 2019 - 1437 UTC
Day Cloud Phase - RGB used to evaluate the phase of cooling cloud tops - 22 Sep 2019 - 1438 UTC
Day Cloud Phase - RGB used to evaluate the phase of cooling cloud tops - 22 Sep 2019 - 1438 UTC
Day Cloud Phase - RGB used to evaluate the phase of cooling cloud tops - 22 Sep 2019 - 1441 UTC
Day Cloud Phase - RGB used to evaluate the phase of cooling cloud tops - 22 Sep 2019 - 1441 UTC
Day Cloud Phase - RGB used to evaluate the phase of cooling cloud tops - 22 Sep 2019 - 1443 UTC
Day Cloud Phase - RGB used to evaluate the phase of cooling cloud tops - 22 Sep 2019 - 1443 UTC
Day Cloud Phase - RGB used to evaluate the phase of cooling cloud tops - 22 Sep 2019 - 1444 UTC
Day Cloud Phase - RGB used to evaluate the phase of cooling cloud tops - 22 Sep 2019 - 1444 UTC
Day Cloud Phase - RGB used to evaluate the phase of cooling cloud tops - 22 Sep 2019 - 1445 UTC
Day Cloud Phase - RGB used to evaluate the phase of cooling cloud tops - 22 Sep 2019 - 1445 UTC
Day Cloud Phase - RGB used to evaluate the phase of cooling cloud tops - 22 Sep 2019 - 1446 UTC
Day Cloud Phase - RGB used to evaluate the phase of cooling cloud tops - 22 Sep 2019 - 1446 UTC
Day Cloud Phase - RGB used to evaluate the phase of cooling cloud tops - 22 Sep 2019 - 1447 UTC
Day Cloud Phase - RGB used to evaluate the phase of cooling cloud tops - 22 Sep 2019 - 1447 UTC
Day Cloud Phase - RGB used to evaluate the phase of cooling cloud tops - 22 Sep 2019 - 1448 UTC
Day Cloud Phase - RGB used to evaluate the phase of cooling cloud tops - 22 Sep 2019 - 1448 UTC
Day Cloud Phase - RGB used to evaluate the phase of cooling cloud tops - 22 Sep 2019 - 1449 UTC
Day Cloud Phase - RGB used to evaluate the phase of cooling cloud tops - 22 Sep 2019 - 1449 UTC
Day Cloud Phase - RGB used to evaluate the phase of cooling cloud tops - 22 Sep 2019 - 1450 UTC
Day Cloud Phase - RGB used to evaluate the phase of cooling cloud tops - 22 Sep 2019 - 1450 UTC
Day Cloud Phase - RGB used to evaluate the phase of cooling cloud tops - 22 Sep 2019 - 1451 UTC
Day Cloud Phase - RGB used to evaluate the phase of cooling cloud tops - 22 Sep 2019 - 1451 UTC
Day Cloud Phase - RGB used to evaluate the phase of cooling cloud tops - 22 Sep 2019 - 1452 UTC
Day Cloud Phase - RGB used to evaluate the phase of cooling cloud tops - 22 Sep 2019 - 1452 UTC
Day Cloud Phase - RGB used to evaluate the phase of cooling cloud tops - 22 Sep 2019 - 1453 UTC
Day Cloud Phase - RGB used to evaluate the phase of cooling cloud tops - 22 Sep 2019 - 1453 UTC
Day Cloud Phase - RGB used to evaluate the phase of cooling cloud tops - 22 Sep 2019 - 1454 UTC
Day Cloud Phase - RGB used to evaluate the phase of cooling cloud tops - 22 Sep 2019 - 1454 UTC
Day Cloud Phase - RGB used to evaluate the phase of cooling cloud tops - 22 Sep 2019 - 1455 UTC
Day Cloud Phase - RGB used to evaluate the phase of cooling cloud tops - 22 Sep 2019 - 1455 UTC
Day Cloud Phase - RGB used to evaluate the phase of cooling cloud tops - 22 Sep 2019 - 1456 UTC
Day Cloud Phase - RGB used to evaluate the phase of cooling cloud tops - 22 Sep 2019 - 1456 UTC
Day Cloud Phase - RGB used to evaluate the phase of cooling cloud tops - 22 Sep 2019 - 1457 UTC
Day Cloud Phase - RGB used to evaluate the phase of cooling cloud tops - 22 Sep 2019 - 1457 UTC
Day Cloud Phase - RGB used to evaluate the phase of cooling cloud tops - 22 Sep 2019 - 1458 UTC
Day Cloud Phase - RGB used to evaluate the phase of cooling cloud tops - 22 Sep 2019 - 1458 UTC
 

About Day Cloud Phase

This RGB is used to evaluate the phase of cooling cloud tops to monitor convective initiation, storm growth, and decay. It can also be used to identify snow on the ground. The Day Cloud Phase Distinction RGB takes advantage of cloud reflectance differences between the visible and near infrared channels and temperature variances between land and clouds in the infrared to provide increased contrast between background surfaces and phases of clouds (i.e., water vs. ice). Due to its reliance on visible bands 2 and 5, it is onlyusable during daylight hours. This RGB composite was developed by the Japan Meteorological Agency (JMA) for Himawari-8. Interpretation is still under investigation.

• For more details, see the Day Cloud Phase Product Guide, (PDF, 757 KB)

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