Seismic Hazard Map
Definition
A map showing the probability of earthquake shaking exceeding specified levels over a given time period. Used by engineers, planners, and insurers to assess earthquake risk.
Example
USGS's National Seismic Hazard Maps are updated every 6 years based on the latest science.
Related Terms
Related Guides
Modified Mercalli Intensity: Measuring What You Feel
The Modified Mercalli Intensity scale rates earthquake effects from I (not felt) to XII (total destruction). Learn what each level means.
Earthquake Frequency: How Often Do They Happen?
About 500,000 earthquakes occur yearly, but only 100 cause damage. Learn the frequency-magnitude relationship and why big quakes are rare.
Do You Need Earthquake Insurance? A Complete Guide
Homeowners insurance doesn't cover earthquakes. Learn who needs earthquake insurance, what it costs, and how to decide if it's worth the premium.
Earthquake Insurance by State: A US Comparison
Earthquake insurance availability and cost varies dramatically by US state. Compare rates and coverage options across high-risk and low-risk areas.
Flood Insurance vs Earthquake Insurance: Know the Difference
Flood and earthquake insurance are separate policies with different rules. Understand which natural disasters are covered and where gaps exist.
Are Earthquakes Becoming More Frequent?
It seems like earthquakes are increasing, but improved detection explains the trend. Learn what the data actually shows about earthquake frequency.
Earthquake-Proofing Your Home: A Room-by-Room Guide
Protect your home from earthquake damage with this room-by-room guide to securing furniture, appliances, and structural weak points.
The Ring of Fire: Why the Pacific Rim Shakes
90% of earthquakes occur around the Ring of Fire. Explore this 40,000 km horseshoe of volcanic and seismic activity.
How Faults Work: Strike-Slip, Normal, and Reverse
Faults are where earthquakes happen. Learn the three main fault types and how each produces different kinds of seismic events.
Probabilistic Seismic Hazard Analysis Tools
PSHA tools calculate earthquake probabilities for any location. Learn how hazard maps are made and what they mean for your area.
Related Case Studies
The 1999 Izmit Earthquake: North Anatolian Fault Rupture at Turkey's Industrial Heart
The latest in a remarkable 60-year westward migration of M7+ earthquakes along the North Anatolian Fault, with stress calculations now pointing directly at Istanbul for the next major rupture.
The 1970 Ancash Earthquake: The Deadliest Earthquake in South American History
The deadliest earthquake in South American history, where a 50-million-cubic-meter avalanche from Mount Huascaran traveled at 300 km/h to bury the town of Yungay, killing 92% of its population.
The 1948 Ashgabat Earthquake: The Soviet Catastrophe That Was Hidden for Decades
The most concealed earthquake disaster in history, where the Soviet government classified the true death toll of 110,000 as a state secret for 40 years.
The 1755 Lisbon Earthquake: The Disaster That Shook the Enlightenment
The earthquake that launched both seismology as a science and modern emergency management, while simultaneously triggering a philosophical revolution.
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.