メインコンテンツへスキップ
🇿🇦

South Africa

地震帯: Low Africa
総地震回数
0
最大マグニチュード
地震帯
Low

South AfricaはAfricaに位置し、Lowの地震リスク分類に指定されています。同国の地震史では合計0回の地震が記録されています。 人口63,100,945人、国土面積1,221,037 km²の同国では、地震が社会基盤と公共安全に重大な影響を及ぼす可能性があります。

地震概要

South Africa presents a distinctive dual seismic profile: natural earthquakes from tectonic sources and mining-induced earthquakes from the world's deepest underground mines. The country sits on the Kaapvaal craton, one of Earth's oldest and most stable pieces of lithosphere, which by itself would produce very low natural seismicity. However, the extraordinary depth of South Africa's gold and platinum mines — some extending more than 4 kilometres below the surface — creates unique conditions for induced seismicity that has caused significant damage and casualties.

Natural earthquakes in South Africa are associated with several zones of ancient basement [[fault]]s. The most significant source area is the Ceres-Tulbagh region in the Western Cape, where a magnitude 6.3 earthquake struck on 29 September 1969, killing 9 people and injuring hundreds in the towns of Tulbagh, Ceres, and Wolseley. This remains the most destructive natural earthquake in South African history. The earthquake occurred on the north-northwest-trending fault systems of the Cape Fold Belt, which runs along the southwestern and southern margins of the country.

Mining-induced seismicity is concentrated in the Witwatersrand gold field of Gauteng Province and the surrounding platinum belt. The removal of enormous volumes of rock from depths of 2 to 4 kilometres creates stress changes around the excavations that can trigger slip on pre-existing fault planes — sometimes generating events of [[magnitude]] 3.0 to 5.5 that are felt at the surface and have caused damage to surface buildings and fatalities among miners. A magnitude 5.0 induced event at a gold mine near Klerksdorp in January 2005 killed eight miners. The [[epicenter]]s of mining-induced events cluster over the mine footprints and are easily distinguishable from natural events by their spatial pattern.

The Lesotho Highlands Water Project, one of Africa's largest infrastructure programmes, stores vast quantities of water in reservoirs in the Drakensberg mountains. Reservoir-induced seismicity has been detected near some of these facilities, though events have been small.

The southern coast of South Africa faces [[tsunami]] exposure from distant sources. The 2004 Indian Ocean tsunami generated minor but detectable wave anomalies along the South African coast. A locally generated tsunami from submarine landslides off the Agulhas Bank is theoretically possible but has not been observed in the historical record.

The [[seismic-wave]] characteristics of South African earthquakes — whether natural or induced — reflect the efficient propagation through the cold, rigid Kaapvaal craton lithosphere, which transmits seismic energy over unusually long distances with little attenuation. A magnitude 5.0 event in Gauteng can be felt hundreds of kilometres away in Botswana or Zimbabwe. Natural earthquakes in the Cape region and along the southern margins of the country show thrust and strike-slip mechanisms consistent with the compressional regime inherited from the Cape orogeny.

最近の地震

規模 場所 時刻
最近の地震はありません。

主な歴史的出来事

Earthquakes Near Major Cities in South Africa

よくある質問

South Africa has a low level of seismic activity. Large earthquakes are infrequent but not impossible. A total of 0 earthquakes have been recorded in South Africa's seismic history.

South Africa has had 0 recorded earthquakes. This count includes events of all magnitudes detected by seismic monitoring networks. The actual number of earthquakes may be higher, as smaller events can go undetected.

South Africa is classified in the "Low" seismic zone, located in Africa. Seismic zones indicate the relative level of earthquake hazard based on historical activity, geological conditions, and proximity to tectonic plate boundaries.

地震の最中は「まず低く、頭を守り、動かない」。丈夫な机やテーブルの下に入り、頭と首を守り、揺れが収まるまで動かないでください。窓や重い物体から離れてください。地震の後は、怪我がないか確認し、余震に備えてください。

国の地震リスクは、プレート境界への近接性、歴史的な地震活動(過去の地震の頻度とマグニチュード)、地質条件、地震帯の人口密度、建築基準法の施行状況など、複数の要因を用いて評価されます。QuakeFYIはこれらの要因に基づき、0(リスクなし)から4(非常に高い)までの地震帯を割り当てています。

地震帯とは、地震の危険度によって分類された地理的領域です。ゾーン0はリスクが無視できる程度、ゾーン1は低リスク、ゾーン2は中程度のリスク、ゾーン3は高リスク、ゾーン4は非常に高いリスクを示します。これらのゾーンは、歴史的な地震データ、テクトニクスの状況、地質条件によって決定されます。

環太平洋火山帯(リング・オブ・ファイア)沿いの国々が最も多くの地震を経験しています。日本、インドネシア、チリ、フィリピン、イランは常に最も高い地震活動を記録しています。アメリカ合衆国(特にアラスカとカリフォルニア)、トルコ、メキシコも地震活動が非常に活発な国々です。

人口密度が高いと、より多くの人々やインフラが潜在的な被害にさらされるため、地震リスクが増大します。人口密集都市でのマグニチュード7.0の地震は数千人の犠牲者を出す可能性がありますが、無人地帯で同じ地震が発生しても被害は生じないかもしれません。建築基準法と防災対策は、人口密集地域のリスクを大幅に低減します。

地震密度は、国土面積に対する地震活動の集中度を測定するもので、1,000平方キロメートルあたりの地震回数で表されます。地震密度が高いことは、単位面積あたりの地震活動が頻繁であることを示し、異なる面積の国々間で地震リスクを比較するのに役立ちます。