Showing posts with label weather. Show all posts
Showing posts with label weather. Show all posts

Monday, December 11, 2017

New insights into the Ridiculously Resilient Ridge & North American Winter Dipole | California Weather Blog

A timely example: Persistent Western ridge, Eastern trough next 2+ weeks

A pronounced example of the “Warm West/Cool East” temperature dipole pattern will develop over North America in the coming days. (NCEP via tropicaltidbits.com)

December 4, 2017
In the coming days, a remarkably persistent weather pattern will begin to develop across North America and adjacent ocean regions. Characterized by strong high pressure near the West Coast and low pressure over the Eastern Seaboard, this “quasi-stationary,” high-amplitude atmospheric wave pattern will essentially become locked in place for at least the next 2 weeks. Patterns like this have a tendency to become self-reinforcing, lasting for much longer than more typical transient weather patterns and leading to prolonged stretches of unusual weather. This particular event will be no exception: California (and much of the West Coast) will almost certainly experience an extended, multi-week warm and dry spell, while much of the East Coast shivers through repeated blasts of cold, Arctic air.
As it turns out, these upcoming anomalous conditions provide a timely example of several atmospheric phenomena my colleagues and I have been studying over the past few years. In this post, I’ll explore the broader climate context of recent North American weather extremes, with a focus on insights gleaned from two recent scientific papers published by my colleagues and me.
more: New insights into the Ridiculously Resilient Ridge & North American Winter Dipole | California Weather Blog


Thursday, January 12, 2017

#Earth :: Surface Winds, Ocean Currents & Waves, Temperatures via earth.nullschool.net









via https://earth.nullschool.net (12 jan 2017)


Pacific Winds...
https://earth.nullschool.net/#current/wind/surface/level/orthographic=-132.71,2.75,349

Atlantic Winds...
https://earth.nullschool.net/#current/wind/surface/level/orthographic=-23.37,0.34,349

Pacific Currents...
https://earth.nullschool.net/#current/ocean/surface/currents/orthographic=-132.71,2.75,349

Atlantic Currents...
https://earth.nullschool.net/#current/ocean/surface/currents/orthographic=-23.37,0.34,349

Pacific Ocean Waves...
https://earth.nullschool.net/#current/ocean/primary/waves/overlay=significant_wave_height/orthographic=-132.71,2.75,349

Atlantic Ocean Waves...
https://earth.nullschool.net/#current/ocean/primary/waves/overlay=significant_wave_height/orthographic=-23.37,0.34,349

Pacific Temperatures...
https://earth.nullschool.net/#current/wind/surface/level/overlay=temp/orthographic

Atlantic Temperatures...
https://earth.nullschool.net/#current/wind/surface/level/overlay=temp/orthographic=-23.37,0.34,349


(on Facebook) #Earth :: Surface Winds, Ocean Currents & Waves, Temperatures via https://earth.nullschool.net/ (12 jan 2017)


Tuesday, February 2, 2016

▶ A Year of Weather 2015 | EUMETSAT video on YouTube



A Year of Weather 2015 - YouTube
Published on Jan 29, 2016 by EUMETSAT
This visualisation, comprised of imagery from the geostationary satellites of EUMETSAT, NOAA and the JMA, shows an entire year of weather across the globe during 2015, with audio commentary from Mark Higgins, Training Manager at EUMETSAT.

The visualisation has been produced by EUMETSAT's data visualisation team and is composed of a satellite infrared data layer superimposed over NASA's 'Blue Marble Next Generation' ground maps, which change with the seasons.



Monday, November 11, 2013

NASA Views Our Perpetual Ocean | NASA


click here to watch the animation


"This is an animation of ocean surface currents from June 2005 to December 2007 from NASA satellites. Watch how bigger currents like the Gulf Stream in the Atlantic Ocean and the Kuroshio in the Pacific carry warm waters across thousands of miles at speeds greater than four miles per hour (six kilometers per hour); how coastal currents like the Agulhas in the Southern Hemisphere move equatorial waters toward Earth's poles; and how thousands of other ocean currents are confined to particular regions and form slow-moving, circular pools called eddies." Credit: NASA/SVS


The swirling flows of tens of thousands of ocean currents were captured in this scientific visualization created by NASA's Goddard Space Flight Center in Greenbelt, Md.

"There is also a 20-minute long tour, which shows these global surface currents in more detail," says Horace Mitchell, the lead of the visualization studio. "We also released a three-minute version on our NASA Visualization Explorer iPad app."

Both the 20-minute and 3-minute versions are available in high definition here: http://svs.gsfc.nasa.gov/goto?3827

The visualization covers the period June 2005 to December 2007 and is based on a synthesis of a numerical model with observational data, created by a NASA project called Estimating the Circulation and Climate of the Ocean, or ECCO for short. ECCO is a joint project between the Massachusetts Institute of Technology and NASA's Jet Propulsion Laboratory in Pasadena, Calif. ECCO uses advanced mathematical tools to combine observations with the MIT numerical ocean model to obtain realistic descriptions of how ocean circulation evolves over time.

These model-data syntheses are among the largest computations of their kind ever undertaken. They are made possible by high-end computing resources provided by NASA's Ames Research Center in Moffett Field, Calif.

ECCO model-data syntheses are being used to quantify the ocean's role in the global carbon cycle, to understand the recent evolution of the polar oceans, to monitor time-evolving heat, water, and chemical exchanges within and between different components of the Earth system, and for many other science applications.

In the particular model-data synthesis used for this visualization, only the larger, ocean basin-wide scales have been adjusted to fit observations. Smaller-scale ocean currents are free to evolve on their own according to the computer model's equations. Due to the limited resolution of this particular model, only the larger eddies are represented, and tend to look more 'perfect' than they are in real life. Despite these model limitations, the visualization offers a realistic study in both the order and the chaos of the circulating waters that populate Earth's ocean.

Data used by the ECCO project include: sea surface height from NASA's Topex/Poseidon, Jason-1, and Ocean Surface Topography Mission/Jason-2 satellite altimeters; gravity from the NASA/German Aerospace Center Gravity Recovery and Climate Experiment mission; surface wind stress from NASA's QuikScat mission; sea surface temperature from the NASA/Japan Aerospace Exploration Agency Advanced Microwave Scanning Radiometer-EOS; sea ice concentration and velocity data from passive microwave radiometers; and temperature and salinity profiles from shipborne casts, moorings and the international Argo ocean observation system.
 

NASA Views Our Perpetual Ocean | NASA


Friday, November 2, 2012

images: hurricane, earthquake, halloween


earthquake, hurricane, and anti-nuke halloween images
27 October - 1 November 2012



hurricane sandy



jetstream + visible 10.26


nasa






M7.7 earthquake - Canadian Pacific







california fault lines


sf bay area



hurrican sandy forecasts










infrared




pacific storm, remnants of Sandy