Search engine for discovering works of Art, research articles, and books related to Art and Culture
ShareThis
Javascript must be enabled to continue!

Tsunami Damage to Oil Storage Tanks in the MW9.0 2011 Tohoku, Japan Earthquake

View through CrossRef
The Mw9.0 2011 Tohoku, Japan earthquake tsunami damaged 418 oil storage tanks located along the Pacific coast of the Hokkaido, Tohoku, and Kanto Districts of Japan. A wide variety of damage was observed, including movement and deformation of the tank body, scouring of the tank base and ground, and movement or structural fracture of the pipe. In total, 157 of the 418 tanks were moved by the tsunami. By comparing the severity of damage with the inundation depth of the tsunami experienced by the oil storage tank, a fragility curve projecting the damage rate for plumbing is presented, and a rough but easy-to-use method of predicting tsunami damage to an oil storage tank from a given inundation depth is also presented: (i) for inundation depths of 2–5 m, tanks suffer damage to their plumbing, and small tanks (capacity < 100 m3) and empty larger tanks may be moved; (ii) for inundation depths of greater than 5 m, most tanks are moved. The validity of the previously-proposed tsunami tank-movement prediction method is first examined. A comparison of the method’s predictions with the actual damage data from the 2011 Tohoku earthquake tsunami indicates a high hit rate of 76%.
American Society of Mechanical Engineers
Title: Tsunami Damage to Oil Storage Tanks in the MW9.0 2011 Tohoku, Japan Earthquake
Description:
The Mw9.
0 2011 Tohoku, Japan earthquake tsunami damaged 418 oil storage tanks located along the Pacific coast of the Hokkaido, Tohoku, and Kanto Districts of Japan.
A wide variety of damage was observed, including movement and deformation of the tank body, scouring of the tank base and ground, and movement or structural fracture of the pipe.
In total, 157 of the 418 tanks were moved by the tsunami.
By comparing the severity of damage with the inundation depth of the tsunami experienced by the oil storage tank, a fragility curve projecting the damage rate for plumbing is presented, and a rough but easy-to-use method of predicting tsunami damage to an oil storage tank from a given inundation depth is also presented: (i) for inundation depths of 2–5 m, tanks suffer damage to their plumbing, and small tanks (capacity < 100 m3) and empty larger tanks may be moved; (ii) for inundation depths of greater than 5 m, most tanks are moved.
The validity of the previously-proposed tsunami tank-movement prediction method is first examined.
A comparison of the method’s predictions with the actual damage data from the 2011 Tohoku earthquake tsunami indicates a high hit rate of 76%.

Related Results

Physics-Informed Neural Networks for Offshore Tsunami Data Assimilation
Physics-Informed Neural Networks for Offshore Tsunami Data Assimilation
In recent years, offshore tsunami observation networks equipped with ocean bottom pressure gauges (OBPGs), such as S-net, DONET, and N-net, have been deployed around Japan, enablin...
Physics-Informed Neural Networks for Offshore Tsunami Data Assimilation
Physics-Informed Neural Networks for Offshore Tsunami Data Assimilation
In recent years, offshore tsunami observation networks equipped with ocean bottom pressure gauges (OBPGs), such as S-net, DONET, and N-net, have been deployed around Japan, enablin...
Physics-Informed Neural Networks for Offshore Tsunami Data Assimilation
Physics-Informed Neural Networks for Offshore Tsunami Data Assimilation
In recent years, offshore tsunami observation networks equipped with ocean bottom pressure gauges (OBPGs), such as S-net, DONET, and N-net, have been deployed around Japan, enablin...
The NEAM-COMMITMENT EU project aiming to support improved tsunami risk management and planning in the NEAM region
The NEAM-COMMITMENT EU project aiming to support improved tsunami risk management and planning in the NEAM region
NEAM-COMMITMENT is a two-year project funded by the European Commission&#8217;s DG-ECHO, starting in 2025. We will present an overview of the project, its expected outcomes, an...
PENENTUAN CEPAT RAMBAT DAN DECAY TIME METEO-TSUNAMI AKIBAT ERUPSI VULKANIK HUNGA TONGA-HUNGA HA’APAI, TONGA 2022
PENENTUAN CEPAT RAMBAT DAN DECAY TIME METEO-TSUNAMI AKIBAT ERUPSI VULKANIK HUNGA TONGA-HUNGA HA’APAI, TONGA 2022
Penelitian ini menganalisis kinematika perambatan gelombang tsunami lintas Samudera Pasifik akibat erupsi vulkanik Hunga Tonga–Hunga Ha’apai (HTHH), Tonga pada tanggal 15 Januari 2...
Simulasi Penjalaran Tsunami Di Beberapa Pantai Di Sulawesi Utara Sebagai Upaya Mitigasi Bencana
Simulasi Penjalaran Tsunami Di Beberapa Pantai Di Sulawesi Utara Sebagai Upaya Mitigasi Bencana
Daerah pantai utara wilayah Sulawesi Utara merupakan kawasan pesisir yang memiliki kepadatan penduduk cukup besar. Sebelah utara laut Sulawesi atau selatan Filipina berdasarkan dat...
Numerical simulation of the tsunami triggered by the 17 December 2024 Port Vila, Vanuatu, Mw 7.3 earthquake
Numerical simulation of the tsunami triggered by the 17 December 2024 Port Vila, Vanuatu, Mw 7.3 earthquake
On 17 December 2024, a strong, damaging earthquake (Mw7.3) occurred 30 km WNW of the capital of Vanuatu, Port Vila, on Efate Island. The epicentral depth of the event is at ~57 km ...

Back to Top