M5.3 Earthquake near Tomioka, Japan — 27 December 2024
A moderate earthquake of magnitude 5.3 was recorded near Tomioka, Japan on , with an epicentre 40 km east of Tomioka, at a focal depth of 58.2 km.
Time (UTC): 2024-12-27 19:10:07
Time (your timezone): —
Magnitude: 5.3 (moderate)
Focal depth: 58.2 km (shallow)
Epicentre: 37.3936, 141.4730
Location: 40 km E of Tomioka, Japan
USGS link to NOAA tsunami information: Not linked
Review status: Reviewed
Source: USGS event page
How strong was this earthquake?
Moderate earthquakes can damage poorly built or unreinforced structures near the epicentre, while well-engineered buildings typically escape serious harm. Shaking is often strong enough to wake sleeping residents over a wide area.
A magnitude 5.3 earthquake radiates roughly 1,344 tons of TNT equivalent in seismic energy.
The USGS assigns this earthquake a significance score of 432, which is below the USGS threshold of more than 600 for its significant-earthquake list. The ranking combines magnitude with available Did You Feel It responses and PAGER alert level; it is not a direct measurement of damage.
Where was the epicentre?
The epicentre was located at 37.3936, 141.4730 — 40 km east of Tomioka. The closest other recorded event was a magnitude 4.7 earthquake 26 km north of here on 07 May 2026.
Why the 58 km depth matters
At 58 km this was a shallow earthquake. Shallow events release their energy close to the surface, so for a given magnitude they produce noticeably stronger shaking — and more damage — than deeper ones. Roughly three quarters of all earthquakes worldwide occur at shallow depths.
This catalogue does not ingest eyewitness responses, so it cannot confirm where this earthquake was felt. Based on magnitude alone, an event this size can be felt widely and may cause minor local damage. Its shallow focus makes stronger surface shaking more likely than for a deeper event of the same magnitude.
What does the tsunami information flag mean?
The USGS record does not carry a link to NOAA tsunami information. That field is not an all-clear and does not state whether a tsunami occurred. In this case, a damaging tsunami would be less likely because at M5.3 it falls below the magnitude 6.5 threshold that generally applies before a submarine earthquake displaces enough water to generate a damaging tsunami; it occurred inland rather than beneath the sea floor. For an active coastal alert, use tsunami.gov or your local warning authority.
How earthquakes generate tsunamis, and what the alert levels mean →
Aftershocks and local seismic history
No further earthquakes have been recorded within about 150 km of the epicentre in the seven days after this event.
139 earthquakes of magnitude 4 or above have been logged within roughly 200 km of this epicentre in our catalogue. The strongest was a magnitude 6.7 event near Ōfunato on 15 May 2026. This M5.3 event released about 126 times less energy than that event.
How long aftershock sequences last, and how large they get →
Where this event sits in the record
This earthquake is part of the December 2024 worldwide record. Browse the full monthly archive to compare periods.
Nearest recorded earthquakes to this epicentre
- M4.7 earthquake near Minami-Sōma, Japan — (26 km N)
- M4.4 earthquake near Tomioka, Japan — (27 km SE)
- M4.3 earthquake near Tomioka, Japan — (34 km E)
- M4.6 earthquake near Tomioka, Japan — (41 km E)
- M4.6 earthquake near Namie, Japan — (43 km W)
- M4.4 earthquake near Tomioka, Japan — (46 km WSW)
- M4.7 earthquake near Tomioka, Japan — (46 km SE)
- M4.5 earthquake near Iwaki, Japan — (47 km SW)
- M4.7 earthquake near Tomioka, Japan — (47 km ESE)
- M5.1 earthquake near Tomioka, Japan — (50 km E)
Other magnitude 5 earthquakes worldwide
- M5.2 earthquake near Severo-Kuril’sk, Russia —
- M5.2 earthquake near Tsunō, Japan —
- M5.1 earthquake near south of the Fiji Islands —
- M5.1 earthquake near Tristan da Cunha region —
- M5.1 earthquake near Tristan da Cunha region —
- M5.1 earthquake near south of the Fiji Islands —
- M5.6 earthquake near Port McNeill, Canada —
- M5.5 earthquake near Mutsu, Japan —
Questions about this earthquake
How strong is a magnitude 5.3 earthquake?
Moderate earthquakes can damage poorly built or unreinforced structures near the epicentre, while well-engineered buildings typically escape serious harm. Shaking is often strong enough to wake sleeping residents over a wide area. A magnitude 5.3 earthquake radiates roughly 1,344 tons of TNT equivalent in seismic energy.
How deep was the earthquake near Tomioka?
At 58 km this was a shallow earthquake. Shallow events release their energy close to the surface, so for a given magnitude they produce noticeably stronger shaking — and more damage — than deeper ones. Roughly three quarters of all earthquakes worldwide occur at shallow depths.
Was the M5.3 earthquake near Tomioka felt?
This catalogue does not ingest eyewitness responses, so it cannot confirm where this earthquake was felt. Based on magnitude alone, an event this size can be felt widely and may cause minor local damage. Its shallow focus makes stronger surface shaking more likely than for a deeper event of the same magnitude.
What does the USGS tsunami field mean for this event?
The USGS record does not carry a link to NOAA tsunami information. That field is not an all-clear and does not state whether a tsunami occurred. In this case, a damaging tsunami would be less likely because at M5.3 it falls below the magnitude 6.5 threshold that generally applies before a submarine earthquake displaces enough water to generate a damaging tsunami; it occurred inland rather than beneath the sea floor. For an active coastal alert, use tsunami.gov or your local warning authority.
Have there been aftershocks?
No further earthquakes have been recorded within about 150 km of the epicentre in the seven days after this event.
How often do earthquakes happen near Tomioka?
139 earthquakes of magnitude 4 or above have been logged within roughly 200 km of this epicentre in our catalogue. The strongest was a magnitude 6.7 event near Ōfunato on 15 May 2026. This M5.3 event released about 126 times less energy than that event.