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A Comprehensive Investigation of an Offshore Active Fault in the Western Sagami Bay, Central Japan
引用本文:Izumi SAKAMOTO,How Kin WONG. A Comprehensive Investigation of an Offshore Active Fault in the Western Sagami Bay, Central Japan[J]. 《地质学报》英文版, 2002, 76(3): 300-307. DOI: 10.1111/j.1755-6724.2002.tb00546.x
作者姓名:Izumi SAKAMOTO  How Kin WONG
作者单位:Japan Marine Science & Technology Center,Natsushima 2-15,Yokusuka 237-0061,Japan,Institute of Geochemistry and Marine Chemistry,University of Hamburg,Bundesstrasse 55,D-20146 Hamburg,Germany
摘    要:Offshore active faults, especially those in the deep sea, are very difficult to study because of the water and sedimentary cover. To characterize the nature and geometry of offshore active faults, a combination of methods must be employed. Generally, seismic profiling is used to map these faults, but often only fault-related folds rather than fracture planes are imaged. Multi-beam swath bathymetry provides information on the structure and growth history of a fault because movements of an active fault are reflected in the bottom morphology. Submersible and deep-tow surveys allow direct observations of deformations on the seafloor (including fracture zones and microstructures). In the deep sea, linearly aligned cold seep communities provide indirect evidence for active faults and the spatial migration of their activities.The Western Sagami Bay fault (WSBF) in the western Sagami Bay off central Japan is an active fault that has been studied in detail using the above methods. The bottom morphology, fracture


A Comprehensive Investigation of an Offshore Active Fault in the Western Sagami Bay, Central Japan
WU Shiguo Institute of Oceanology,Chinese Academy of Sciences,Nanhai Roa,Qingdao,ChinaIzumi SAKAMOTO Japan Marine Science , Technology Center,Natsushima -,Yokusuka -,JapanXU JirenInstitute of Geology,Chinese Academy of Geological Sciences,Baiwanzhuang Roa,Beijing,China and How Kin WONGInstitute of Geochemistry and Marine Chemistry,University of Hamburg,Bundesstrasse,D- Hamburg,Germany. A Comprehensive Investigation of an Offshore Active Fault in the Western Sagami Bay, Central Japan[J]. Acta Geologica Sinica (English Edition), 2002, 76(3): 300-307. DOI: 10.1111/j.1755-6724.2002.tb00546.x
Authors:WU Shiguo Institute of Oceanology  Chinese Academy of Sciences  Nanhai Roa  Qingdao  ChinaIzumi SAKAMOTO Japan Marine Science & Technology Center  Natsushima -  Yokusuka -  JapanXU JirenInstitute of Geology  Chinese Academy of Geological Sciences  Baiwanzhuang Roa  Beijing  China  How Kin WONGInstitute of Geochemistry  Marine Chemistry  University of Hamburg  Bundesstrasse  D- Hamburg  Germany
Abstract:Offshore active faults, especially those in the deep sea, are very difficult to study because of the water and sedimentary cover. To characterize the nature and geometry of offshore active faults, a combination of methods must be employed. Generally, seismic profiling is used to map these faults, but often only fault-related folds rather than fracture planes are imaged. Multi-beam swath bathymetry provides information on the structure and growth history of a fault because movements of an active fault are reflected in the bottom morphology. Submersible and deep-tow surveys allow direct observations of deformations on the seafloor (including fracture zones and microstructures). In the deep sea, linearly aligned cold seep communities provide indirect evidence for active faults and the spatial migration of their activities.The Western Sagami Bay fault (WSBF) in the western Sagami Bay off central Japan is an active fault that has been studied in detail using the above methods. The bottom morphology, fractured breccias directly observed and photographed, seismic profiles, as well as distribution and migration of cold seep communities provide evidence for the nature and geometry of the fault. Focal mechanism solutions of selected earthquakes in the western Sagami Bay during the period from 1900 to 1995 show that the maximum compression trends NW-SE and the minimum stress axis strikes NE-SW, a stress pattern indicating a left-lateral strike-slip fault.
Keywords:offshore active fault   deep-tow imagery   submersible   stress field   Sagami Bay
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