Researchers used seismic signals and computer analysis to derive outlines of possible secondary faults in the San Andreas Fault zone. The study's findings suggest that continued drilling will encounter significant structures before reaching the fault zone.
Researchers detected physical changes in faults using seismic data from the Parkfield experiment. The study provided evidence for structural changes in fault zones that can be viewed with active seismic monitoring systems.
The newly launched San Andreas Fault Observatory at Depth (SAFOD) will provide researchers with tools for continuous monitoring from inside an active earthquake zone. This project is part of the larger EarthScope initiative, which aims to investigate geological forces shaping the North American continent.
Scientists from Japan, Canada, and the US conclude a 1700 Japan tsunami was caused by a magnitude 9 North American earthquake. Computer simulations reveal the Cascadia subduction zone can produce such a massive earthquake, posing a threat to coastal regions.
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The Penn State Earth 101 course uses B-movie clips to engage students in learning about natural disasters, promoting critical thinking and science-based decision-making. Students work on projects such as public affairs manuals for cities with earthquake histories, debating topics like government response to natural disasters.
A 1700 Cascadia earthquake is supported by a Japanese shipwreck and tsunami records from five other towns, suggesting the event was a magnitude 9 earthquake off the Washington coast. The shipwreck's nautical account and tsunami-related deaths confirm its validity.
A recent study by Tibi et al. provides new insights into the mechanism of deep earthquakes, with implications for earthquake prediction. The researchers demonstrated remote triggering of one deep earthquake by another, shedding light on how these powerful events begin.
SourceUniversity of California - Riverside·JournalNature·DateAug 28, 2003
Scientists mapped locked zones on the Cascadia megathrust, revealing a 56-mile swath of land faces a greater threat from earthquakes than previously thought. Another major earthquake is expected within the next 200 to 800 years, putting rapidly growing inland cities at risk.
SourceColumbia Climate School·JournalNature·DateAug 8, 2003
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SAMSUNG T9 Portable SSD 2TB transfers large imagery and model outputs quickly between field laptops, lab workstations, and secure archives.
Scientists tested a synthetic earthquake on a half-real building with conventional and simulated steel support columns. The experiment, called the 'Multi-Site Online Simulation Test,' used grid-linked machines to create a realistic simulation of an earthquake, producing a profusion of real-time data.
SourceUniversity of Southern California·DateAug 5, 2003
Researchers chart seismic effects on water levels to better understand the impact of earthquakes on hydrology. The study found that wells and aquifers respond differently to earthquakes than surface water, with effects recorded at greater distances.
SourceUniversity of Washington·JournalScience·DateJun 26, 2003
Researchers at Columbia University suggest that ancient faults in the Wabash Valley Fault System may be re-activated, causing recent earthquakes. The study analyzed seismic data from a June 2002 earthquake and found evidence of strike-slip faulting on a near-vertical fault plane at 18 km depth.
SourceColumbia Climate School·JournalBulletin of the Seismological Society of America·DateMay 13, 2003
A new study by Northwestern University suggests Memphis should consider California-style earthquake building codes, but experts argue the costs would be too high. The proposed code could cut earthquake damage in half, but would increase construction costs by 10-33% and have significant economic impacts.
Sky-Watcher EQ6-R Pro Equatorial Mount
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Scientists from University of Ulster's Geophysics Research Group warn of substantial loss of life possible in Bingol city after Thursday's earthquake, citing increased seismic risk. The team identified two highly stressed areas on the East Anatolian Fault Zone as most likely locations for future large events.
SourceUniversity of Ulster·JournalEarth and Planetary Science Letters·DateMay 2, 2003
A new early-warning system designed for southern California could give people up to 40 seconds of advanced notice of major earthquakes, allowing them to take shelter or evacuate. The system uses low-energy P-waves that travel faster than damaging S-waves and can provide precious seconds to react.
SourceUniversity of Wisconsin-Madison·JournalScience·DateMay 1, 2003
The Cornell laboratory will be a national center for calculating earthquake effects on structures, including soil deformation and seismic damage. The facility will use customized testing structures and actuators to apply displacements and loads, enabling researchers to study the behavior of structures during earthquakes.
A UC Irvine study found that hospitals can successfully evacuate patients and staff without relying on outside assistance. Non-structural problems like water leaks and electrical outages pose the biggest risk to facilities during disasters. The study provides basic steps for responding to bioterrorist attacks on medical facilities.
SourceUniversity of California - Irvine·JournalNew England Journal of Medicine·DateApr 7, 2003
Sarah Billington and Alexandria Boehm, two Stanford professors, are pioneering research in earthquake-resistant construction and coastal water quality. Their work aims to improve infrastructure sustainability and environmental protection.
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Apple iPhone 17 Pro delivers top performance and advanced cameras for field documentation, data collection, and secure research communications.
The new study modeled earthquakes using computer simulations, finding that sections of the fault with increased material strength can focus energy to an unexpected degree. This results in intense bursts of seismic waves posing significant hazards to nearby structures.
SourceUniversity of California - Santa Barbara·JournalScience·DateMar 11, 2003
Scientists used NASA's Terra satellite to study the effects of a 7.7 magnitude earthquake in India, detecting dewatering and surface water far from the epicenter. The Multi-angle Imaging SpectroRadiometer (MISR) instrument provided compelling evidence of surface water in remote locations inaccessible to teams on the ground.
SourceNASA/Goddard Space Flight Center·JournalEos·DateFeb 5, 2003
Researchers have discovered that an earthquake can cause damage to a neighboring fault line, potentially leading to more earthquakes. The study, led by UCLA's Vidale, measured seismic wave speed to detect this effect and found it in the Landers fault, which is 10 miles away from the Hector Mine fault.
SourceUniversity of California - Los Angeles·JournalNature·DateJan 30, 2003
Researchers created a unique model to study earthquake fault friction forces using angel hair pasta, glass beads, and sand. They found that initial conditions and particle dimensionality have a significant impact on friction, with smooth particles producing different results than irregular ones.
SourcePenn State·JournalGeophysical Research Letters·DateJan 3, 2003
Researchers found that small-magnitude earthquakes and micro-cracking in a region called the process zone precede propagation, followed by nucleation of the rift axis and upwelling of magma. This new understanding can be applied to more complex rift settings in oceans and continents.
SourceColumbia Climate School·JournalScience·DateNov 28, 2002
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Researchers have made key findings about the San Andreas fault system, predicting major earthquakes within 30 years for certain areas. The study, which analyzed paleoseismic data from 10 sites, suggests that at least 120 miles of the southernmost section of the fault may rupture in a large earthquake of magnitude 7.6 to 7.8.
SourceU.S. Geological Survey·JournalBulletin of the Seismological Society of America·DateNov 21, 2002
The study found that household damages were not always proportional to levels of ground motion, with average damages being almost identical in high and medium ground motion zones. The majority of damage ($913 million) occurred in the medium ground motion zone, which is where nearly 60% of Puget Sound households are located.
A 7.9 magnitude earthquake on Alaska's Denali fault system created a 145-mile scar across the landscape, with measurable offsets of up to 22 feet. The earthquake revealed new surface ruptures, clearly developed scarps and cracks where faults pass beneath glaciers.
Scientists use microgravity to study soil behavior and simulate earthquake effects, aiming to improve foundation design and mitigate soil liquefaction. The experiment will analyze the strength and stiffness of sand under different conditions, shedding light on the physics behind soil movement.
SourceNASA/Marshall Space Flight Center News Center·DateOct 4, 2002
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A new study by Stanford University geophysicists challenges the widely used time-predictable recurrence model, which estimates the time when an earthquake will occur. The researchers found that the model failed to predict a magnitude 6 quake on the San Andreas Fault in Central California.
Researchers uncovered characteristics of faults that move backwards, contrary to conventional observations, and found the material within faults is significantly different than its surroundings. The study provides a new way to identify potentially active faults and better understand the earthquake process.
SourceUniversity of California - San Diego·JournalScience·DateSep 12, 2002
Researchers found that a recent swarm of earthquakes was triggered by the injection of molten rock into the earth's crust. The study suggests that continuous GPS and seismic data can be used to forecast the rate and distribution of damaging earthquakes, potentially saving lives and property.
SourceU.S. Geological Survey·JournalNature·DateSep 4, 2002
Researchers have developed a new technique to improve earthquake resistance in highway structures using epoxy and flexible materials like glass or carbon fibres. This method can strengthen concrete structures up to five times and extends their lifespan, providing crucial seconds for evacuation during earthquakes.
SourceUniversity of Toronto·JournalEngineering Structures·DateAug 12, 2002
A recent California quake occurred near a forecasted anomaly within the margin of error of its location, validating the University of Colorado's earthquake forecasting method. The scientists used a 'state vector' to characterize seismic activity in southern California and developed a probability index to predict large earthquakes.
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The University of California, Berkeley, has deployed a first permanent broadband earthquake monitor in Monterey Bay, which will measure earthquake activity from the ocean side of the fractured fault zone. The instrument aims to reveal new information about seismic activity on the Pacific Plate and improve understanding of earthquakes.
Researchers detected a magnitude 5.7 quake on Kilauea's southern flank in November 2000 using GPS data, which caused the volcano's southern flank to slide nearly 3.5 inches into the sea. The event could become a model for predicting catastrophic tsunamis in the Pacific.
Researchers have found evidence of recent earthquakes in a deep-sea core, suggesting the Cascadia subduction zone was active as recently as 300 years ago. The discovery provides new insights into earthquake cycles and helps establish methods to trace the history of earth's active crust.
The WTC's design had several vulnerabilities that made it susceptible to collapse, including flimsy floor trusses and weak connections in the tube frame system. The impact of the jetliners shattered support columns, causing partial collapse and triggering a fire that exacerbated the damage
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Geologist Edward Keller has discovered a lost island, Isla Calafia, submerged for over 13,000 years under the Santa Barbara channel. The island, 31 miles long and three miles wide, rises about 660 feet from the bottom of the channel and is bordered by two major earthquake faults.
SourceUniversity of California - Santa Barbara·DateOct 23, 2001
Researchers identify a consistent seismic pattern suggesting a recurrence time of 1,500-2,500 years for the 1356 Basel earthquake. This discovery could help safeguard infrastructure and fine-tune emergency procedures before a potential major earthquake strikes.
SourceAmerican Association for the Advancement of Science (AAAS)·JournalScience·DateSep 13, 2001
Researchers will use shake tables, centrifuges, and tsunami wave tanks from desktop workstations to conduct experiments. The virtual laboratory, NEESgrid, will connect researchers and facilities across the US, fostering collaboration and accelerating seismic design and hazard mitigation.
A research team led by University of Colorado at Boulder Professor Roger Bilham failed to find alternatives to huge Indian earthquakes, concluding that at least one 8.1-8.3 magnitude earthquake and up to seven are overdue due to the movement of the Indian plate towards Tibet.
SourceUniversity of Colorado at Boulder·JournalScience·DateAug 23, 2001
Seismologist Douglas A. Wiens finds deep earthquakes recur at the same spot repeatedly, supporting ductile shear zone model. The research uses seismic wave evidence to locate earthquakes with accuracy, enabling future study of deep fault zones.
SourceWashington University in St. Louis·JournalScience·DateAug 23, 2001
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Researchers found a significant difference in movement on each side of the Eastern California Shear Zone, with one side moving more than the other due to varying heat flow properties. This discovery provides a more accurate method for modeling earthquake data and could be applicable in many places.
SourcePenn State·JournalGeophysical Research Letters·DateJul 6, 2001
A new national collaborative network for advanced earthquake engineering research and experimentation is being developed, enabling engineers to pool their experience and perform experiments and simulations on a larger scale. The network will also improve the design of infrastructure to withstand earthquakes and tsunamis.
A minor earthquake occurred in the Evansville area with a preliminary magnitude of 3.9, according to the USGS. This region has been identified as having a potential for damaging earthquakes.
Researchers at Penn State and the University of Miami studied two fault lines in Baja California to understand how strain is partitioned between them. The team found that the Agua Blanco fault has little earthquake activity, while the San Miguel fault has most of the earthquakes.
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A new study by geophysicists Shelley J. Kenner and Paul Segall suggests that devastating earthquakes could strike the New Madrid seismic zone along the Mississippi River within this century, potentially causing widespread destruction from Arkansas to Iowa.
Despite technological advancements, earthquake prediction remains elusive due to the Heat-Flow Paradox and debates on fault strength. Research efforts have shed light on variations along the San Andreas fault, with some areas experiencing locked stresses while others creep slowly.
A small earthquake off Washington's coast caused hydrothermal vent systems miles away to pump out warmer water in an unexpected pulsing pattern. This has led scientists to re-evaluate their understanding of fluid flow within oceanic crust, which had previously been assumed to be stable and relatively unchanging.
SourceUniversity of Washington·JournalNature·DateSep 12, 2000
The USGS will install a monitoring well in San Jose to track groundwater pressures and assess earthquake hazards. The project aims to improve models for estimating earthquake shaking in the region, enabling better planning and design of structures to reduce damage from future earthquakes.
The National Science Foundation awarded the University of Illinois at Urbana-Champaign a $300,000 grant to lead a national partnership in planning and designing the NEESgrid, a virtual laboratory for earthquake engineering. This grant could potentially lead to a $10 million integration grant.
SourceUniversity of Southern California·DateSep 4, 2000
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The National Science Foundation-funded project aims to improve seismic design of buildings and infrastructure in the US. Researchers will collaborate using high-performance networking, shared databases, computer modeling, and simulation tools.
A new model of the northern Hayward Fault in California's San Francisco Bay Area suggests that a major earthquake along that portion of the fault may be less likely than previously suspected. Aseismic creep has been relieving strain on the northern part of the fault, making a large earthquake on this segment unlikely.
SourceAmerican Association for the Advancement of Science (AAAS)·JournalScience·DateAug 17, 2000
A new study suggests that Istanbul is likely to suffer a major earthquake within the next 30 years. The research estimates a 62% probability of strong shaking near the city, comparable to recent disasters in Izmit and Düzce.
SourceAmerican Association for the Advancement of Science (AAAS)·JournalScience·DateApr 26, 2000
Researchers present findings on the geological evolution of the North American Cordillera, including the Cascadia subduction zone's impact on earthquake hazards. They also explore tectonic movement and its implications for densely populated areas in the Pacific Northwest.
A new analysis by University of Colorado at Boulder professor Karl Mueller indicates a high threat of large earthquake in the New Madrid seismic zone. The study gathered evidence on a pivotal 'blind-thrust' fault and found a slip rate of nearly 45 feet over 2,300 years, posing significant risks to Memphis and St. Louis.
SourceUniversity of Colorado at Boulder·JournalScience·DateNov 3, 1999
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Researchers confirm hazard posed by intraslab earthquakes in Pacific Northwest, which can cause significant damage and loss of life. A magnitude 7-7.5 intraslab earthquake could strike the region, posing a greater risk than larger offshore earthquakes.
SourceArizona State University·JournalScience·DateOct 27, 1999
The USGS has been monitoring a series of large earthquakes around the world since August 17. The seismic activity is believed to be related to stress buildup in the Earth's crust. Scientists will discuss their findings and lessons learned from recent earthquakes, including those in Turkey, Greece, Taiwan, and Mexico.
A new device called a magnetorheological damper has been tested on a model building set atop an earthquake-simulating shake table, showing promise in minimizing damage in earthquakes. The device reduces the peak acceleration by 50 percent, and is designed to be inexpensive, straightforward, and powered by a battery.
SourceWashington University in St. Louis·DateOct 4, 1999
Mete Sozen, a structural engineer from Purdue University, has proposed a simplified alternative engineering method for designing earthquake-resistant buildings in Turkey. The five-page method is simpler than the current 75-page code and could be more easily understood and applied by engineers.
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A report on a June 15 earthquake in Mexico highlights the need for enforcing special seismic design standards for critical buildings like schools, hospitals, and fire stations. The study found that these buildings are often constructed with heavier materials than recommended, increasing the risk of damage during earthquakes.
Researchers found that rigidity of rock and sediments increases with depth in subduction zones, affecting earthquake duration and seismic waves. This discovery provides a powerful tool for seismologists to improve earthquake probability calculations and better understand destructive earthquakes.
SourceUniversity of California - Santa Cruz·JournalNature·DateJul 28, 1999