Search and Rescue (SAR)
Definition
Organized efforts to locate and extract survivors trapped in collapsed structures after an earthquake. The first 72 hours are the critical window for finding survivors alive.
Example
International SAR teams rescued survivors from rubble up to 14 days after the 2023 Turkey earthquake.
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.
The 2011 Tohoku Earthquake and Tsunami: A Complete Analysis
The 2011 M9.1 Tohoku earthquake triggered a devastating tsunami and nuclear disaster. A comprehensive analysis of one of history's worst earthquakes.
The 2010 Haiti Earthquake: Disaster and Response
The 2010 M7.0 Haiti earthquake killed over 200,000 people. Learn why the devastation was so extreme and the lessons for earthquake preparedness.
The 1995 Kobe Earthquake: Japan's Wake-Up Call
The 1995 M6.9 Kobe earthquake exposed critical flaws in Japan's earthquake preparedness, killing 6,400 and transforming building codes.
The 2015 Nepal Earthquake: The Gorkha Quake
The 2015 M7.8 Nepal earthquake devastated Kathmandu and triggered avalanches on Everest. A study in building vulnerability and international response.
The 2023 Turkey-Syria Earthquake: Double Disaster
Two devastating earthquakes within hours killed over 50,000 in Turkey and Syria. The most destructive earthquake disaster of the 2020s.
After the Earthquake: Your First 72 Hours
The first 72 hours after an earthquake are critical. Learn the step-by-step actions for safety, communication, shelter, and recovery.
How Search and Rescue Works After an Earthquake
Search and rescue teams race against the 72-hour survival window. Learn how urban search and rescue operates after earthquake disasters.
The First 72 Hours: Emergency Response Timeline
The first 72 hours after an earthquake determine survival outcomes. Learn the emergency response timeline from initial shaking to organized relief.
Community Emergency Response Teams (CERT)
CERT trains civilians to help their communities after earthquakes. Learn how to join, what training involves, and why CERT matters.
Related Case Studies
The 2023 Turkey-Syria Earthquakes: A Double Mainshock That Killed 59,000
The deadliest earthquake disaster of the 2020s, notable for its unprecedented double mainshock sequence and the subsequent criminal prosecution of contractors for building code violations.
The 2005 Kashmir Earthquake: 87,000 Dead in the Himalayan Frontier
The deadliest Himalayan earthquake in modern history, which killed 17,000 students in collapsed schools and demonstrated the extreme difficulty of disaster response in remote mountainous terrain.
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.