NOAA GOES Image Viewer website
7 Jun 2026 - 22:03 EDT
8 Jun 2026 - 02:03 UTC

Tropical Depression Two-E at 15.5°N - 99.5°W

North Pacific Ocean

Last observation: 08 Jun 2026 - 02:00 UTC

« Active Storms »

Tracking started: 7 Jun 2026 - 15:00 UTC


NHC Storm Description:

8 Jun 2026 - 0:00 UTC ...BROAD DEPRESSION MEANDERING OFF THE MEXICAN COASTLINE... ...FLOODING RAINFALL EXPECTED OVER PORTIONS OF SOUTHERN MEXICO THROUGH MONDAY NIGHT... As of 6:00 PM CST Sun Jun 07 the center of Two-E was located near 15.5, -99.5 with movement ENE at 3 mph. The minimum central pressure was 1005 mb with maximum sustained winds of about 35 mph.

7 Jun 2026 - 21:00 UTC ...SYSTEM LIKELY TO PRODUCE VERY HEAVY RAINFALL AND FLOODING OVER PORTIONS OF SOUTHERN MEXICO... As of 3:00 PM CST Sun Jun 07 the center of Two-E was located near 15.7, -99.7 with movement NE at 3 mph. The minimum central pressure was 1005 mb with maximum sustained winds of about 35 mph.

7 Jun 2026 - 18:00 UTC ...HEAVY RAINS AND FLOODING EXPECTED OVER PORTIONS OF SOUTHERN MEXICO... As of 12:00 PM CST Sun Jun 07 the center of Two-E was located near 15.7, -99.8 with movement NE at 6 mph. The minimum central pressure was 1005 mb with maximum sustained winds of about 35 mph.

7 Jun 2026 - 15:00 UTC ...TROPICAL DEPRESSION FORMS SOUTH OF MEXICO... ...TROPICAL STORM WARNING ISSUED FOR A PORTION OF THE SOUTHERN COAST OF MEXICO... As of 9:00 AM CST Sun Jun 07 the center of Two-E was located near 15.5, -99.9 with movement NE at 6 mph. The minimum central pressure was 1005 mb with maximum sustained winds of about 35 mph.

GeoColor - True Color daytime, multispectral IR at night
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GeoColor is a multispectral product composed of True Color (using a simulated green component) during daytime, and an Infrared product that uses bands 7 and 13 at night. During the day, the imagery looks approximately as it would when viewed with human eyes from space. At night, the blue colors represent liquid water clouds such as fog and stratus, while gray to white indicate higher ice clouds, and the city lights come from a static database derived from the VIIRS Day Night Band.

GeoColor was developed at the Cooperative Institute for Research in the Atmosphere (CIRA) and the STAR Regional and Mesoscale Meteorology Branch (RAMMB). For a full description of the algorithm, please see this article.

Please credit CIRA/NOAA when using GeoColor imagery.

NOTE: Lighted areas shown in nighttime images are not real-time depictions of city lights. The layer is derived from a compilation of JPSS VIIRS Day Night Band images and is included for orientation purposes.

 • CIRA GeoColor Product Quick Guide

Mexico GeoColor animation
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GeoColor is a multispectral product composed of True Color (using a simulated green component) during daytime, and an Infrared product that uses bands 7 and 13 at night. During the day, the imagery looks approximately as it would when viewed with human eyes from space. At night, the blue colors represent liquid water clouds such as fog and stratus, while gray to white indicate higher ice clouds, and the city lights come from a static database derived from the VIIRS Day Night Band.

GeoColor was developed at the Cooperative Institute for Research in the Atmosphere (CIRA) and the STAR Regional and Mesoscale Meteorology Branch (RAMMB). For a full description of the algorithm, please see this article.

Please credit CIRA/NOAA when using GeoColor imagery.

NOTE: Lighted areas shown in nighttime images are not real-time depictions of city lights. The layer is derived from a compilation of JPSS VIIRS Day Night Band images and is included for orientation purposes.

 • CIRA GeoColor Product Quick Guide

Eastern East Pacific GeoColor animation
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GeoColor is a multispectral product composed of True Color (using a simulated green component) during daytime, and an Infrared product that uses bands 7 and 13 at night. During the day, the imagery looks approximately as it would when viewed with human eyes from space. At night, the blue colors represent liquid water clouds such as fog and stratus, while gray to white indicate higher ice clouds, and the city lights come from a static database derived from the VIIRS Day Night Band.

GeoColor was developed at the Cooperative Institute for Research in the Atmosphere (CIRA) and the STAR Regional and Mesoscale Meteorology Branch (RAMMB). For a full description of the algorithm, please see this article.

Please credit CIRA/NOAA when using GeoColor imagery.

NOTE: Lighted areas shown in nighttime images are not real-time depictions of city lights. The layer is derived from a compilation of JPSS VIIRS Day Night Band images and is included for orientation purposes.

 • CIRA GeoColor Product Quick Guide

GOES-West - All States GeoColor animation
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GeoColor is a multispectral product composed of True Color (using a simulated green component) during daytime, and an Infrared product that uses bands 7 and 13 at night. During the day, the imagery looks approximately as it would when viewed with human eyes from space. At night, the blue colors represent liquid water clouds such as fog and stratus, while gray to white indicate higher ice clouds, and the city lights come from a static database derived from the VIIRS Day Night Band.

GeoColor was developed at the Cooperative Institute for Research in the Atmosphere (CIRA) and the STAR Regional and Mesoscale Meteorology Branch (RAMMB). For a full description of the algorithm, please see this article.

Please credit CIRA/NOAA when using GeoColor imagery.

NOTE: Lighted areas shown in nighttime images are not real-time depictions of city lights. The layer is derived from a compilation of JPSS VIIRS Day Night Band images and is included for orientation purposes.

 • CIRA GeoColor Product Quick Guide

Mesoscale - 14°N - 99°W
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GeoColor is a multispectral product composed of True Color (using a simulated green component) during daytime, and an Infrared product that uses bands 7 and 13 at night. During the day, the imagery looks approximately as it would when viewed with human eyes from space. At night, the blue colors represent liquid water clouds such as fog and stratus, while gray to white indicate higher ice clouds, and the city lights come from a static database derived from the VIIRS Day Night Band.

GeoColor was developed at the Cooperative Institute for Research in the Atmosphere (CIRA) and the STAR Regional and Mesoscale Meteorology Branch (RAMMB). For a full description of the algorithm, please see this article.

Please credit CIRA/NOAA when using GeoColor imagery.

NOTE: Lighted areas shown in nighttime images are not real-time depictions of city lights. The layer is derived from a compilation of JPSS VIIRS Day Night Band images and is included for orientation purposes.

 • CIRA GeoColor Product Quick Guide

GeoColor

True Color daytime, multispectral IR at night
8 Jun 2026 - 01:40 UTC

GLM FED

Lightning flash extent over GeoColor
8 Jun 2026 - 01:41 UTC

Day Convection

RGB used to identify areas of rapid intensification
8 Jun 2026 - 01:40 UTC

Day Night Cloud Micro Combo

Day: show cloud-top phase; Night: distinguish clouds / fog
8 Jun 2026 - 01:40 UTC

Air Mass RGB

RGB based on data from IR & water vapor
8 Jun 2026 - 01:40 UTC

Sandwich RGB

Blend combines IR band 13 with visual band 3
8 Jun 2026 - 01:40 UTC


Band 1

0.47 µm
Blue - Visible
8 Jun 2026 - 01:40 UTC

Band 2

0.64 µm
Red - Visible
8 Jun 2026 - 01:40 UTC

Band 3

0.86 µm
Veggie - Near IR
8 Jun 2026 - 01:40 UTC

Band 4

1.37 µm
Cirrus - Near IR
8 Jun 2026 - 01:40 UTC

Band 5

1.6 µm
Snow/Ice - Near IR
8 Jun 2026 - 01:40 UTC

Band 6

2.2 µm
Cloud Particle - Near IR
8 Jun 2026 - 01:40 UTC

Band 7

3.9 µm
Shortwave Window - IR
8 Jun 2026 - 01:40 UTC

Band 8

6.2 µm
Upper-Level Water Vapor - IR
8 Jun 2026 - 01:40 UTC

Band 9

6.9 µm
Mid-Level Water Vapor - IR
8 Jun 2026 - 01:40 UTC

Band 10

7.3 µm
Lower-level Water Vapor - IR
8 Jun 2026 - 01:40 UTC

Band 11

8.4 µm
Cloud Top - IR
8 Jun 2026 - 01:40 UTC

Band 12

9.6 µm
Ozone - IR
8 Jun 2026 - 01:40 UTC

Band 13

10.3 µm
Clean Longwave Window - IR
8 Jun 2026 - 01:40 UTC

Band 14

11.2 µm
Longwave Window - IR
8 Jun 2026 - 01:40 UTC

Band 15

12.3 µm
Dirty Longwave Window - IR
8 Jun 2026 - 01:40 UTC

Band 16

13.3 µm
CO₂ Longwave - IR
8 Jun 2026 - 01:40 UTC