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지진은 단층을 따라서만 일어나는가?

While most earthquakes occur along faults, intraplate earthquakes can strike far from plate boundaries. Learn where unexpected earthquakes happen.

The Myth: Earthquakes Only Happen Along Fault Lines

Ask most people where earthquakes happen and they will point to the San Andreas Fault in California, the Cascadia Subduction Zone in the Pacific Northwest, or the fault systems of Japan and Indonesia. These are real, well-mapped seismic hazards, and their fame has created a mental model: earthquakes happen on faults, faults are mapped, therefore places without mapped faults are safe. This mental model is dangerously incomplete. While it is true that most earthquakes occur on fault structures, the distribution of seismic hazard is far broader and less tidy than the "just avoid fault lines" model suggests.

What Faults Are — and What We Don't Know

A Fault LineThe trace of a fault on the Earth's surface, visible as a line or zone of broken rock. Active fault lines are mapped by geologists to assess earthquake hazard for nearby communities. is a fracture or zone of fractures in the earth's crust along which past displacement has occurred. Major, frequently active faults like the San Andreas are well-mapped from surface expression, PaleoseismologyThe study of prehistoric earthquakes through geological evidence such as fault trenches, uplifted terraces, and tsunami deposits. Extends the earthquake record back thousands of years. trenching, and instrumental seismicity. But faults do not always break the surface. [[Blind-thrust-fault]] structures — reverse faults that terminate below the surface and produce folds in overlying rock — generate large earthquakes without any surface trace that traditional mapping methods could detect. The 1994 Northridge earthquake in Los Angeles (M6.7, 57 deaths) occurred on a previously unrecognized blind thrust fault that did not appear on any seismic hazard map at the time.

More fundamentally, faults exist at a range of scales. The US Geological Survey fault database contains thousands of entries, and detailed regional mapping continuously discovers previously unknown faults. In densely vegetated, covered, or urbanized terrain, fault mapping is extraordinarily difficult. The number of unmapped or unknown faults certainly exceeds the number of mapped ones globally.

[[Plate-boundary]] vs. Intraplate Hazard

The most seismically active zones on Earth correspond to Plate BoundaryThe edge where two tectonic plates meet. Most earthquakes, volcanic eruptions, and mountain building occur at plate boundaries. Three types: convergent, divergent, and transform. settings: subduction zones where oceanic crust dives beneath continental or island arc crust, transform boundaries where plates slide past each other, and continental collision zones. These boundaries host the great majority of large earthquakes. The Ring of FireA horseshoe-shaped zone around the Pacific Ocean where about 90% of the world's earthquakes occur. It spans 40,000 km and includes 452 volcanoes. around the Pacific Ocean is essentially a map of these plate boundaries.

But intraplate earthquakes — earthquakes occurring far from active plate boundaries, in the interiors of tectonic plates — represent a genuine and often underestimated hazard. The New Madrid Seismic Zone in the central United States, centered in Missouri, Arkansas, and Tennessee, produced a sequence of three M7.2-8.1 earthquakes in 1811-1812, among the largest instrumentally uncorrected events in US history. Memphis, Tennessee, and St. Louis, Missouri, are built largely on the Quaternary alluvial sediments that would experience severe Soil Amplification (Site Effect)The increase in shaking intensity caused by soft soil or sediment layers amplifying seismic waves. Structures built on soft soil can experience 2-10 times stronger shaking than those on bedrock. in a large New Madrid event. Yet neither city sits near a dramatic active fault like the San Andreas.

The Charleston Earthquake Warning

The 1886 Charleston, South Carolina, earthquake (estimated M7.0) struck a region with no previous instrumental seismicity record, on a fault system still not fully characterized more than a century later. South Carolina was not on anyone's earthquake risk map in 1885. The earthquake killed nearly 100 people, destroyed hundreds of buildings, and was felt from Cuba to New York. Seismological and geodetic research since then has documented ongoing strain accumulation in the region, making another large Charleston-area earthquake a genuine long-term hazard.

Charleston illustrates a fundamental point: intraplate seismic hazard zones are defined not by fault-line proximity but by the deep geological history of continental crust, ancient sutures and failed rifts, and stress concentrations in the lithosphere that are poorly understood compared to plate boundary settings.

[[Induced-seismicity]] Anywhere There Are Wells

As discussed extensively in the induced seismicity guide, human activities can create seismic hazard where little natural hazard existed. Oklahoma's earthquake rate transformation from near-zero to hundreds of M3+ events per year demonstrates that Fault (Geology)A fracture in rock along which movement has occurred. Faults range from millimeters to thousands of kilometers long. Major faults that produce earthquakes are called active faults. activation by wastewater injection can occur in geologically "quiet" regions if pre-existing faults are present — and pre-existing faults are ubiquitous in continental crust.

The central United States, which hosts both the New Madrid Seismic Zone's ancient rift structures and extensive oil and gas operations, represents a zone of both natural and induced seismic hazard far from any stereotypical "earthquake zone." The USGS one-year seismic hazard forecasts now explicitly include induced seismicity alongside natural tectonic hazard for precisely this reason.

Why Risk Mapping Must Be Probabilistic, Not Binary

The map of earthquake hazard is not a binary "safe/unsafe" overlay. It is a continuous probability surface, with the highest probabilities concentrated near active Plate BoundaryThe edge where two tectonic plates meet. Most earthquakes, volcanic eruptions, and mountain building occur at plate boundaries. Three types: convergent, divergent, and transform. faults but non-negligible probabilities nearly everywhere. The USGS National Seismic Hazard Maps express hazard as the probability of exceeding a given peak ground acceleration level in 50 years — and these maps show elevated hazard in many areas people assume are earthquake-free.

The appropriate mental model is not "faults are dangerous, everywhere else is safe" but rather "active plate boundaries have the highest hazard, intraplate zones have intermediate hazard with less certainty, and induced seismicity can elevate hazard temporarily in any region with subsurface fluid injection." This more accurate picture argues for universal baseline seismic design requirements, not just fault-proximity regulations.

The Design Implications

[[Building-code]] seismic provisions apply not only to coastal California and Pacific Northwest cities but across the entire country, with requirements scaled to local hazard levels. Cities in the New Madrid zone, Charleston, and other intraplate hazard areas have design requirements reflecting their specific risk. Understanding that you can face earthquake risk without living next to a famous fault should motivate engagement with local building codes and emergency preparedness regardless of perceived fault-line proximity.

자주 묻는 질문

주요 지진 대비 요령: 무거운 가구와 온수기를 벽에 고정하세요. 3일 이상의 물, 식량, 손전등, 라디오, 구급용품이 포함된 비상 키트를 준비하세요. 각 방에서 안전한 장소(튼튼한 탁자 아래, 창문에서 먼 곳)를 확인하세요. '엎드려, 보호하고, 잡으세요' 훈련을 연습하세요. 가스와 수도 차단 방법을 숙지하세요.

실내에 있을 경우: 엎드려, 보호하고, 잡으세요 — 무릎을 꿇고, 튼튼한 책상이나 탁자 아래로 들어가서 흔들림이 멈출 때까지 잡고 있으세요. 밖으로 뛰어나가거나 출입구에 서 있지 마세요. 실외에 있을 경우: 건물, 전선, 나무에서 멀리 떨어진 개방된 장소로 이동하세요. 운전 중일 경우: 차를 세우고 차량 안에 머무세요.

지진 조기 경보(EEW) 시스템은 초기의 피해가 적은 P파를 감지하여 더 강한 S파가 도달하기 전에 경보를 보냅니다. ShakeAlert(미국), J-Alert(일본), SASMEX(멕시코) 같은 시스템은 수 초에서 수십 초의 경고를 제공할 수 있으며, 이는 대피하고, 열차를 정지시키며, 산업 공정을 중단하는 데 충분한 시간입니다.

지진 보험은 일반 주택 보험에서 통상 제외되는 지진으로 인한 건물과 재산 피해를 보상합니다. 가입 여부는 거주 지역의 지진 위험도, 건물의 건축 유형, 지진 피해 비용을 감당할 수 있는 재정적 능력에 따라 달라집니다. 캘리포니아나 일본 같은 고위험 지역에서는 강력히 권장됩니다.

내진 건물은 여러 전략을 사용합니다: 지진 에너지를 흡수하는 유연한 구조 시스템, 지반 운동으로부터 건물을 분리하는 면진 장치, 철근 콘크리트와 철골 모멘트 프레임, 수평 저항을 위한 전단벽, 그리고 감쇠 장치 등입니다. 현대 건축 규정(IBC, Eurocode 8)은 지역 지진 위험도에 따른 설계 요건을 규정합니다.

액상화는 포화된 느슨한 토양이 지진 흔들림 중에 강도를 잃고 액체처럼 거동하는 현상입니다. 이로 인해 건물이 침하, 기울어짐 또는 붕괴될 수 있으며, 파이프와 탱크 같은 지하 구조물이 지표면으로 떠오를 수 있습니다. 지하수위가 높은 수변 근처의 사질 토양이 가장 취약합니다.