Mostrando entradas con la etiqueta Suomi NPP (National Polar-orbiting Partnership). Mostrar todas las entradas
Mostrando entradas con la etiqueta Suomi NPP (National Polar-orbiting Partnership). Mostrar todas las entradas

domingo, 1 de enero de 2017

NASA : Lights in the Darkness .- Luces en la oscuridad............

https://www.nasa.gov/image-feature/lights-in-the-darkness

Nighttime image of Canada showing lights of aurora and cities
Just hours after the winter solstice, a mass of energetic particles from the Sun smashed into the magnetic field around Earth. The strong solar wind stream stirred up a display of northern lights over northern Canada.
 
With the “day-night band” (DNB) of the Visible Infrared Imaging Radiometer Suite (VIIRS), the Suomi NPP satellite acquired this view of the aurora borealis on Dec. 22, 2016. The northern lights stretched across British Columbia, Alberta, Saskatchewan, Manitoba, Nunavut, and Northwest Territories, areas that often fall under the auroral oval.
The DNB detects dim light signals such as auroras, airglow, gas flares, and reflected moonlight. In the case of the image above, the sensor detected the visible light emissions as energetic particles rained down from Earth’s magnetosphere and into the gases of the upper atmosphere.
The collision of solar particles and pressure into our planet’s magnetosphere accelerates particles trapped in the space around Earth (such as in the radiation belts). Those particles are sent crashing down into Earth’s upper atmosphere—at altitudes of 100 to 400 kilometers (60 to 250 miles)—where they excite oxygen and nitrogen molecules and release photons of light. The results are rays, sheets, and curtains of dancing light in the sky.
Suomi NPP is the result of a partnership between NASA, the National Oceanic and Atmospheric Administration, and the Department of Defense.
Image Credit: NASA Earth Observatory image by Jesse Allen, using VIIRS day-night band data from the Suomi National Polar-orbiting Partnership
Caption: Mike Carlowicz
Last Updated: Dec. 27, 2016
Editor: Sarah Loff
NASA
Guillermo Gonzalo Sánchez Achutegui
ayabaca@gmail.com
ayabaca@hotmail.com
ayabaca@yahoo.com
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sábado, 9 de abril de 2016

NASA : The Turbulent North Atlantic.- El Atlántico Norte turbulento



Satellite image of ocean with bright swirls of phytoplankton and white clouds overhead
The Gulf Stream waters flow in somewhat parallel layers, slicing across what is otherwise a fairly turbulent western North Atlantic Ocean in this March 9, 2016 image collected by the Visible Infrared Imaging Radiometer Suite on NASA-NOAA's Suomi NPP satellite. The turbulence — made visible by the pigmented phytoplankton it entrains — extends across the whole North American Basin from Anegada to Bermuda to Cape Cod.
Image Credit: NASA/Ocean Biology Processing Group, NASA Goddard Space Flight Center
Last Updated: April 5, 2016
Editor: Sarah Loff
NASA
Guillermo Gonzalo Sánchez Achutegui
ayabaca@gmail.com
ayabaca@hotmail.com
ayabaca@yahoo.com
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miércoles, 18 de noviembre de 2015

NASA : 97B - North Indian Ocean .-

Hola amigos:  A VUELO DE UN QUINDE EL BLOG., Durante la semana pasada extrema precipitaciones a partir de dos móviles áreas de baja presión tropicales lentas causado graves inundaciones en el sureste de la India. Uno de los puntos bajos, designado Sistema 97B continuaron persistir a lo largo de la costa sudeste de la India el 17 de noviembre como el sistema 97B y otra área de baja presión se redujo fuertes lluvias, la NASA y socios en todo el mundo se reunieron datos utilizando una serie de satélites.
Las inundaciones han causado tantos como 70 muertes. La ciudad de Chennai, en el estado de Tamil Nadu fueron golpeados excepcionalmente duro, como se informó de 59 personas asesinadas allí.
More information....

NASA Measures India's Deadly Flooding Rains


During the past week extreme rainfall from two slow moving tropical low pressure areas caused severe flooding in southeastern India. One of the lows, designated System 97B continued to linger along the southeastern Indian coast on November 17. As System 97B and another low pressure area dropped heavy rainfall, NASA and partners around the world gathered data using an array of satellites.

The flooding has caused as many as 70 reported deaths. The city of Chennai in the state of Tamil Nadu were hit exceptionally hard, as 59 people were reported killed there.
 
GPM image of 97B
An analysis of rainfall data from November 9 to 16, 2015 showed up to 550 mm (21.7 inches) of rain drenched India's southeastern coast in the state of Tamil Nadu. Over 200 mm (7.9 inches) fell in large areas of southeastern India and northern Sri Lanka.
Credits: NASA/JAXA/Hal Pierce

NASA's Integrated Multi-satellite Retrievals for GPM (IMERG) combines all data from 12 satellites into a global map of rainfall at half hourly intervals. The rainfall accumulation analysis above was computed from data generated by IMERG during the past week from November 9 to 16, 2015. An analysis of those data indicates that during the past week up to 550 mm (21.7 inches) of rain drenched India's southeastern coast in the state of Tamil Nadu. Rainfall totals of over 200 mm (7.9 inches) were measured in large areas of southeastern India and northern Sri Lanka.

Suomi NPP image of 97B
On Nov. 17 at 7:32 UTC (2:32 a.m. EST) the Visible Infrared Imaging Radiometer Suite (VIIRS) instrument aboard NASA-NOAA's Suomi NPP satellite captured a visible image of System 97B hugging the Indian coast.
Credits: NASA/NOAA/NRL
The Integrated Multi-satellitE Retrievals for GPM (IMERG) creates a merged precipitation product from the GPM constellation of satellites. These satellites include: DMSP (Defense Mapping Satellite Program) satellites from the U.S. Department of Defense, GCOM-W from the Japan Aerospace Exploration Agency (JAXA), Megha-Tropiques from the Centre National D’etudies Spatiales (CNES) and Indian Space Research Organization (ISRO), NOAA series from the National Oceanic and Atmospheric Administration (NOAA), Suomi-NPP from NOAA-NASA, and MetOps from the European Organisation for the Exploitation of Meteorological Satellites (EUMETSAT).  All of the instruments (radiometers) onboard the constellation partners are inter-calibrated with information from the GPM Core Observatory’s GPM Microwave Imager (GMI) and Dual-frequency Precipitation Radar (DPR). 

On November 16 at 1800 UTC (1 p.m. EST) System 97B was located just 55 nautical miles east of Chennai, India. It was centered near 13.2 degrees north latitude and 81.1 degrees east longitude. 

On Nov. 17 at 7:32 UTC (2:32 a.m. EST) the Visible Infrared Imaging Radiometer Suite (VIIRS) instrument aboard NASA-NOAA's Suomi NPP satellite captured a visible image of System 97B. The storm stretched over southwestern Bay of Bengal near and the northern coast of Tamil Nadu and southern Andhra Pradesh coast. The VIIRS image showed bands of thunderstorms wrapping from the northern quadrant into the southwestern quadrant. The Joint Typhoon Warning Center noted that computer models show that System 97B is expected to move in a northerly direction. Maximum sustained winds are estimated between 20 and 25 knots (23 to 28.7 mph/37 to 46.3 kph), and System 97B has a minimum central pressure near 1004 millibars.

The low pressure area continued to generate heavy rain in Tamil Nadu and at isolated places over south coastal Andhra Pradesh. For forecasts and updates from the Indian Meteorological Department, visit: http://www.imd.gov.in.

For more about NASA's Precipitation Measurement Missions, visit:

Harold F. Pierce / Rob Gutro
SSAI/NASA's Goddard Space Flight Center

Last Updated: Nov. 17, 2015
Editor: Lynn Jenner
Tags:  GPM (Global Precipitation Measurement), Hazards, Hurricanes, Suomi NPP (National Polar-orbiting Partnership),
NASA
Guillermo Gonzalo Sánchez Achutegui
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NASA : 27W - Northwestern Pacific Ocean .- 27W - Noroeste del Océano Pacífico

Hola amigos: A VUELO DE UN QUINDE EL BLOG., La tormenta tropical 27W fue captada en una imagen de luz visible del instrumento VIIRS bordo Suomi NPP satélite de la NASA-NOAA, el 17 de noviembre a las 0224 GMT (16 de noviembre a las 9:24 pm hora del este). La imagen VIIRS mostró el centro de bajo nivel de la circulación siguió consolidando. Bandas anchas de tormentas eléctricas en el cuadrante sur de la tormenta fueron terminando en el lado oriental de la tormenta.
More information....

NASA Sees Tropical Storm 27W Form in Marianas Islands, Warnings Up


The tropical low pressure area previously known as System 95W consolidated and was classified as a Tropical Depression 27W on November 17, 2015. The Suomi NPP satellite captured a view of the strengthening storm as warnings were posted in Micronesia.

Suomi NPP image of 27W
The VIIRS instrument aboard NASA-NOAA's Suomi NPP satellite saw Tropical Storm 27W on Nov. 17, as wide bands of thunderstorms in the southern quadrant of the storm were wrapping into the eastern side.
Credits: NASA/NOAA/NRL
 
Tropical Storm 27W was captured in a visible-light image from the VIIRS instrument aboard NASA-NOAA's Suomi NPP satellite on Nov. 17 at 0224 UTC (Nov. 16 at 9:24 p.m. EST). The VIIRS image showed the low-level center of circulation continued to consolidate. Wide bands of thunderstorms in the southern quadrant of the storm were wrapping into the eastern side of the storm.  

At 1200 UTC (7 a.m. EST) on November 17, a tropical storm warning was in effect for Sapwuafik, Micronesia. Tropical storm force winds of 39 to 73 mph are expected within 24 hours. A tropical storm watch remains in effect for Pohnpei, Nukuoro and Pakin in Pohnpei State. These islands are part of the Federated States of Micronesia. A tropical storm watch is also in effect for Lukunor, Losap, Chuuk and Fananu in Chuuk state. A tropical storm warning means that tropical storm force winds of 39 to 73 mph are possible within 24 to 48 hours.

At 1200 UTC (7 a.m. EST) on November 17 (10 p.m. CHST (Guam) local time on Nov. 16) the center of tropical storm 27W was located by satellite near latitude 4.7 degrees north and longitude 159.8 degrees east. That's about 190 miles southeast of Pohnpei and Pakin and about 185 miles east-southeast of Sapwuafik.

27W was moving west-northwest at 18 mph. Tropical storm 27W is expected to continue on this track over the next 24 to 48 hours. Maximum sustained winds have increased to 40 mph. Tropical storm force winds extend outward up to 30 miles from the center.

The Joint Typhoon Warning Center forecast takes the tropical cyclone on a west-northwestward path passing Pohnpei, Fananu and Chuuk before intensifying to typhoon-force. The forecast calls for Tropical Cyclone 27W to be at typhoon-force as it is expected to pass just south of Guam on November 21. For local warnings and watches for Guam and the Marianas, visit NOAA's National Weather Service office in Tiyan, Guam:

Last Updated: Nov. 17, 2015
Editor: Lynn Jenner
NASA
Guillermo Gonzalo Sánchez Achutegui
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domingo, 1 de noviembre de 2015

NASA : Colors After the Storms .- Colores después de las tormentas

Hola amigos: A VUELO DE UN QUINDE EL BLOG., Las fuertes lluvias perjudiciales cayeron en Carolina del Sur, en el sureste de Estados Unidos a principios de octubre de 2015. Gran parte de esa agua tenía, a mediados de octubre, fluyeron en el Océano Atlántico trayendo consigo pesadas cargas de sedimentos, nutrientes y materia orgánica disuelta. La imagen de arriba, desde el Visible Infrared Imaging Radiometer Suite (VIIRS) instrumento en el satélite Suomi NPP de la NASA-NOAA, muestra la segunda vuelta, ya que interactúa con las corrientes oceánicas en 15 de octubre

Suomi NPP, lanzado el 28 de octubre de 2011, representa un primer paso fundamental en la construcción del sistema de la Tierra por satélite de observación de la próxima generación que recogerá datos sobre el cambio climático a largo plazo y las condiciones meteorológicas a corto plazo. Suomi NPP lanzado con cinco instrumentos clave, incluyendo VIIRS, un radiómetro de exploración que recoge imágenes visibles e infrarrojas y las mediciones radiométricas de la tierra, la atmósfera, la criosfera y océanos. Datos VIIRS se utiliza para medir las nubes y aerosoles propiedades, color del océano, del mar y de la temperatura de la superficie terrestre, movimiento del hielo y de la temperatura, los incendios y el albedo de la Tierra. Los climatólogos utilizan datos VIIRS para mejorar nuestra comprensión del cambio climático global.
More information............

Color image of southeast United States from satellite showing sediment runoff in ocean
Damaging heavy rains fell on South Carolina in the southeastern United States at the beginning of October 2015. Much of that water had, by mid-October, flowed into the Atlantic Ocean bringing with it heavy loads of sediment, nutrients, and dissolved organic material. The above image, from the Visible Infrared Imaging Radiometer Suite (VIIRS) instrument on NASA-NOAA's Suomi NPP satellite, shows the runoff as it interacts with ocean currents on Oct. 15.
 
Suomi NPP, launched on Oct. 28, 2011, represents a critical first step in building the next-generation Earth-observing satellite system that will collect data on long-term climate change and short-term weather conditions. Suomi NPP launched with five key instruments, including VIIRS, a scanning radiometer which collects visible and infrared imagery and radiometric measurements of the land, atmosphere, cryosphere, and oceans. VIIRS data is used to measure cloud and aerosol properties, ocean color, sea and land surface temperature, ice motion and temperature, fires, and Earth's albedo. Climatologists use VIIRS data to improve our understanding of global climate change.
Image Credit: NASA/Goddard/SuomiNPP/VIIRS via NASA's OceanColor
Last Updated: Oct. 28, 2015
Editor: Sarah Loff
NASA
Guillermo Gonzalo Sánchez Achutegui
ayabaca@gmail.com
ayabaca@hotmail.com
ayabaca@yahoo.com
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