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Können wir Erdbeben mit Apps vorhersagen?

No app can predict earthquakes. Learn the difference between prediction and early warning, and which apps actually provide useful alerts.

The Myth: Smartphone Apps Can Predict Earthquakes

The app economy has transformed how people interact with every domain of life, and earthquake awareness is no exception. A proliferating ecosystem of apps claims to warn users of incoming earthquakes, predict quakes from unusual patterns, or crowdsource early detection. Some apps claim to detect "electromagnetic precursors" or "ionospheric disturbances" that allegedly precede earthquakes. Others promise to combine your phone's accelerometer data with crowd signals to provide minutes of warning. The promises are appealing, especially in an era when technology seems to make the impossible routine. But earthquake prediction remains beyond current science, and most apps claiming predictive capability are not what they seem.

The Fundamental Distinction: Prediction vs. Early Warning

The most important concept for evaluating earthquake apps is the distinction between Earthquake Prediction vs ForecastingPrediction claims to specify exact time, place, and magnitude of a future earthquake — currently impossible. Forecasting provides probabilistic estimates of earthquake likelihood over time periods. and early warning. These are fundamentally different capabilities.

Earthquake prediction — knowing in advance that a specific magnitude earthquake will occur at a specific location within a specific time window — is currently impossible with any reliable accuracy. No app, algorithm, or technology can do this, despite many claims to the contrary.

Earthquake Earthquake Early Warning (EEW)A system that detects an earthquake and sends alerts to people and systems before strong shaking arrives. Can provide seconds to tens of seconds of warning, enough to take protective action. is something entirely different and genuinely real. It detects P-waves from an earthquake that has already started, calculates the likely shaking intensity at distant locations, and sends alerts that arrive before the damaging S-waves and surface waves. The window is seconds to a few tens of seconds — enough to take cover, stop trains, pause surgeries, open firehouse doors. This is real-time physics, not prediction.

Legitimate Apps: [[ShakeAlert]] and Government-Backed Systems

[[ShakeAlert]] is the USGS-developed early warning system for the western United States, operational in California, Oregon, and Washington. It uses a network of hundreds of seismic sensors to detect P-wave arrivals, rapidly estimate earthquake parameters, and issue warnings to subscribers. The My Shake app (University of California Berkeley) and the FEMA/USGS ShakeAlert Earthquake Early Warning apps deliver these legitimate alerts to smartphones.

These apps genuinely work within their physical limitations: they provide real-time warning of ongoing earthquakes, with lead times proportional to how far you are from the epicenter. They cannot warn about future earthquakes they haven't detected yet. This is analogous to how a smoke detector works — it detects fire that is already happening, it doesn't predict when you will next accidentally leave something on the stove.

Pseudoscientific Apps and Their Red Flags

A separate category of apps makes claims that go well beyond what physics and seismology support. Common red flags include:

Apps that claim to predict earthquakes days or weeks in advance based on electromagnetic signals, atmospheric ionization, or animal behavior reports. No peer-reviewed science supports these mechanisms as reliable precursors, and any pattern-finding from these inputs is almost certainly spurious (see confirmation bias discussion elsewhere).

Apps that aggregate crowdsourced "feeling dizzy" or "animals acting strange" reports and use machine learning to predict earthquakes. While machine learning is powerful, it cannot extract predictive signal from data that contains no reliable signal. Training a model on weak correlations produces confident-sounding predictions that fail in prospective testing.

Apps that exploit the novelty of smartphone magnetometers and accelerometers to claim detection of "pre-seismic electromagnetic pulses." While phones do have these sensors, they are designed for consumer use cases (compass, step counting) and are not calibrated seismometers. The noise floor of a smartphone accelerometer is far too high to detect genuine pre-seismic signals even if such signals existed reliably, which they don't.

The AccelerometerA sensor that measures acceleration of ground motion, critical for earthquake engineering. Modern strong-motion accelerometers can record the intense shaking close to large earthquakes. Reality Check

Modern smartphones do contain AccelerometerA sensor that measures acceleration of ground motion, critical for earthquake engineering. Modern strong-motion accelerometers can record the intense shaking close to large earthquakes. sensors sensitive enough to detect strong earthquake ground motion — a smartphone on a table during a M4.0 earthquake will record detectable vibration. This capability has been used legitimately for crowdsourced strong motion networks (MyShake's seismic detection mode, for example) that help characterize earthquake shaking intensity in real time for events that have already occurred.

But there is a vast gulf between detecting ground motion from an ongoing earthquake (legitimate and useful) and detecting any signal that predicts a future earthquake (currently impossible). The former is an engineering problem with a solution; the latter is a scientific frontier with no demonstrated breakthrough.

Why False Prediction Apps Are Harmful

Apps that claim earthquake prediction capability cause real harm beyond the obvious financial exploitation of scared users. They generate constant false alarms, which create panic and erode trust in legitimate warning systems. When a real earthquake warning arrives through ShakeAlertThe US earthquake early warning system operated by USGS and university partners. Covers the West Coast (California, Oregon, Washington) and sends alerts through Wireless Emergency Alerts. after users have received dozens of false alarms from prediction apps, they may dismiss the legitimate alert. The "boy who cried wolf" problem is not hypothetical — studies of warning system effectiveness consistently find that false alarm rates critically undermine public response.

They also provide false reassurance when predictions don't materialize — users may lower their actual Earthquake PreparednessThe ongoing process of planning and preparation to minimize earthquake impact, including securing furniture, creating communication plans, maintaining emergency supplies, and practicing drills. because they believe an app is "watching" for danger.

The Current State of Earthquake Forecasting Science

Legitimate earthquake Earthquake Prediction vs ForecastingPrediction claims to specify exact time, place, and magnitude of a future earthquake — currently impossible. Forecasting provides probabilistic estimates of earthquake likelihood over time periods. science focuses on probabilistic hazard assessment over long time periods, as discussed in the USGS hazard map program. Short-term operational forecasting — elevated probability windows of days to weeks following significant earthquakes — is possible because AftershockA smaller earthquake that follows the mainshock in the same fault region. Aftershock sequences can last weeks to years, with the largest aftershock typically 1.0-1.2 magnitudes below the mainshock. sequences are predictable in statistical terms using Omori's LawAn empirical law describing the decay rate of aftershock frequency over time: the rate of aftershocks decreases roughly as the inverse of time since the mainshock. and related models. After a M6.0 earthquake, scientists can estimate that there is approximately a 5% chance of a larger aftershock in the following week. This is useful information for emergency managers, but it is not earthquake prediction in the folk sense, and no app has improved on these statistical models through any novel data source.

How to Use Earthquake Technology Wisely

Install government-backed Earthquake Early Warning (EEW)A system that detects an earthquake and sends alerts to people and systems before strong shaking arrives. Can provide seconds to tens of seconds of warning, enough to take protective action. apps appropriate to your region (ShakeAlert/MyShake for the US West Coast, PLUM/NHK for Japan, SASMEX for Mexico). Understand what they actually do — detect ongoing earthquakes, not predict future ones. Treat any app claiming prediction capability with strong skepticism and check whether its methodology has been peer-reviewed in reputable seismological journals. Use the Seismic Risk Checker for probabilistic hazard information based on real seismological data.

Häufig gestellte Fragen

Wichtige Schritte zur Erdbebenvorbereitung: Schwere Möbel und Warmwasserbereiter an Wänden befestigen; einen Notfallkoffer mit Wasser, Lebensmitteln, Taschenlampe, Radio und Erste-Hilfe-Material für mindestens 3 Tage bereithalten; sichere Plätze in jedem Raum identifizieren (unter stabilen Tischen, weg von Fenstern); „Drop, Cover and Hold On“-Übungen durchführen; und lernen, Gas und Wasser abzustellen.

Bei einem Erdbeben in Innenräumen: Drop, Cover und Hold On – auf Hände und Knie fallen, unter einem stabilen Schreibtisch oder Tisch Schutz suchen und festhalten, bis die Erschütterungen aufhören. NICHT nach draußen laufen oder in einem Türrahmen stehen. Im Freien: In einen offenen Bereich abseits von Gebäuden, Stromleitungen und Bäumen bewegen. Beim Autofahren: Anhalten, stehen bleiben und im Fahrzeug bleiben.

Erdbebenfrühwarnsysteme (EEW) erkennen die anfänglichen, weniger schädlichen P-Wellen und senden Warnungen, bevor die stärkeren S-Wellen eintreffen. Systeme wie ShakeAlert (USA), J-Alert (Japan) und SASMEX (Mexiko) können Sekunden bis Zehnersekunden Vorwarnzeit bieten – genug Zeit, um Schutz zu suchen, Züge anzuhalten und industrielle Prozesse herunterzufahren.

Erdbebenversicherungen decken Schäden an Gebäuden und Eigentum durch Erdbeben ab, die von Standard-Wohngebäudeversicherungen typischerweise ausgeschlossen sind. Ob Sie eine benötigen, hängt vom seismischen Risiko Ihres Standorts, der Bauart Ihres Gebäudes und Ihrer finanziellen Fähigkeit ab, Erdbebenschäden zu tragen. In Hochrisikogebieten wie Kalifornien und Japan wird sie dringend empfohlen.

Erdbebensichere Gebäude verwenden verschiedene Strategien: flexible Tragsysteme, die seismische Energie absorbieren, Basisisolierung zur Entkopplung des Gebäudes von der Bodenbewegung, Stahlbeton- und Stahlrahmen, Schubwände für seitliche Stabilität und Dämpfungsvorrichtungen. Moderne Bauvorschriften (IBC, Eurocode 8) legen Anforderungen basierend auf der lokalen seismischen Gefährdung fest.

Verflüssigung tritt auf, wenn wassergesättigter, locker gelagerter Boden während Erdbebenerschütterungen seine Festigkeit verliert und sich wie eine Flüssigkeit verhält. Dies kann dazu führen, dass Gebäude einsinken, kippen oder einstürzen und unterirdische Strukturen wie Rohre und Tanks an die Oberfläche schwimmen. Sandige Böden in der Nähe von Gewässern mit hohem Grundwasserspiegel sind am anfälligsten.