Seismic Alert System
Definition
Mexico's SASMEX, one of the world's first public earthquake early warning systems, operational since 1991. Provides up to 60 seconds of warning for Mexico City from coastal earthquakes.
Example
SASMEX provided 60 seconds of warning before the 2017 M8.2 Chiapas earthquake reached Mexico City.
Related Terms
Related Guides
P-Waves and S-Waves: How Seismic Waves Travel
Learn how P-waves and S-waves travel through Earth, why P-waves arrive first, and how scientists use them to locate earthquakes.
Aftershocks Explained: Why Earthquakes Come in Clusters
Aftershocks can continue for months or years after a major earthquake. Learn what causes them, how they're predicted, and when they'll stop.
The 2004 Indian Ocean Tsunami: The Deadliest Wave
The 2004 M9.1 Sumatra earthquake generated a tsunami that killed 230,000 people across 14 countries. The disaster that changed warning systems.
California's Earthquake Landscape: Living on the San Andreas
California sits on the San Andreas Fault, one of the world's most studied. Learn about the Big One risk, ShakeAlert, and how Californians prepare.
Mexico's Earthquake Zones: Triple Junction Risk
Mexico City faces severe earthquake risk due to subduction zones and soft lake-bed soil amplification. Learn about SASMEX and seismic preparedness.
Earthquake Early Warning: Those Critical Seconds
Even 10 seconds of earthquake early warning saves lives. Learn how automated systems use those critical seconds to protect people and infrastructure.
The Global Seismographic Network Explained
150+ stations monitor every earthquake on Earth. Learn how the GSN works and why it's essential for global seismic safety.
Earthquake Early Warning Systems: How They Work
Earthquake early warning provides seconds of life-saving alert. Learn how ShakeAlert, SASMEX, and Japan's system detect quakes.
GPS and Earthquakes: Measuring Ground Deformation
GPS stations track millimeter-scale crustal movements revealing how strain builds on faults between earthquakes.
How Earthquake Early Warning Apps Work
Earthquake early warning apps can give you seconds of warning before shaking arrives. Learn how ShakeAlert and MyShake work.
Related Case Studies
The 2017 Mexico City Earthquake: M7.1 on the Anniversary of the 1985 Disaster
Striking on the exact 32nd anniversary of the 1985 disaster during a national earthquake drill, the 2017 earthquake served as a live audit of Mexico City's three decades of seismic improvements.
The 1985 Mexico City Earthquake: The Resonance Disaster That Defied Distance
The definitive case study in site amplification and structural resonance, where lake-bed sediments selectively amplified 2-second seismic waves that destroyed mid-rise buildings 350 km from the epicenter.
Frequently Asked Questions
The epicenter is the point on the Earth's surface directly above the hypocenter (focus) where the earthquake rupture begins. It is typically reported as latitude and longitude coordinates. The strongest shaking usually occurs near the epicenter, though local soil conditions and fault geometry can shift the zone of maximum damage.
A seismograph (or seismometer) is an instrument that detects and records ground motion caused by seismic waves. Modern broadband seismometers can detect movements smaller than the width of an atom. Networks of seismographs around the world enable scientists to locate earthquakes and determine their magnitude within minutes.
P-waves (primary waves) are compressional waves that travel fastest through rock, arriving first at seismic stations. S-waves (secondary waves) are shear waves that arrive later but cause more ground shaking. P-waves travel through solids, liquids, and gases; S-waves only travel through solids. The time difference between them helps determine earthquake distance.
The hypocenter (or focus) is the point within the Earth where an earthquake rupture initiates. It is described by latitude, longitude, and depth. The vertical distance between the hypocenter and the surface directly above is the earthquake's depth, which strongly influences how the earthquake is felt at the surface.
Seismology is the scientific study of earthquakes and the propagation of seismic waves through the Earth. It encompasses earthquake detection, location, and characterization; Earth's internal structure; seismic hazard assessment; and earthquake engineering. Seismologists use data from global seismograph networks to study these phenomena.