期刊论文详细信息
Progress in Earth and Planetary Science
Progress in modeling the Tohoku-oki megathrust earthquake cycle and associated crustal deformation processes
Review
Bunichiro Shibazaki1 
[1] International Institute of Seismology and Earthquake Engineering, Building Research Institute, 1 Tatehara, 305-0802, Tsukuba, Ibaraki, Japan;
关键词: 2011 Tohoku-oki earthquake;    Numerical modeling;    Megathrust earthquake cycle;    Hierarchical asperity model;    Dynamic weakening;    Postseismic deformation;    Viscoelastic relaxation;    Postseismic slip;    Long-term vertical deformation;   
DOI  :  10.1186/s40645-023-00575-x
 received in 2022-12-13, accepted in 2023-07-19,  发布年份 2023
来源: Springer
PDF
【 摘 要 】

This paper summarizes the results of 10 years of research on models of the megathrust earthquake cycles and crustal deformation associated with the 2011 Tohoku-oki earthquake. Several earthquake cycle models have been proposed for the northeast Japan subduction zone to elucidate why megathrust earthquakes occur at intervals of approximately 600 years and why large slips occurred in the shallow subduction zone. A model that considers a strong asperity in the shallow plate interface, and a hierarchical asperity model that considers the scale dependence of the critical displacement of the rate- and state-dependent friction law have been proposed. Modeling with dynamic weakening of faults has also been proposed. In the model using the shallow friction characteristics obtained by the Japan Trench Fast Drilling Project, rupture from depth can propagate to the trench, resulting in shallow large slips. Submarine crustal deformation has been observed for the first time in addition to dense observations of the inland crustal deformation. The observation of the seafloor deformation near the trench showed that viscoelastic relaxation played an important role in short-term postseismic deformation near the trench. The effects of the low-viscosity region at the oceanic lithosphere and asthenosphere boundary, and the cold forearc mantle wedge (cold nose) have been discussed. Simulations using the nonlinear flow law of rock in the mantle, where a power–law relationship holds between stress and strain rate, and the fault friction law at the plate boundary, show that the Tohoku-oki earthquake caused large stress fluctuations, resulting in a sudden viscosity decrease and rapid flow in the asthenosphere below the oceanic lithosphere. The simulations of the crustal deformation associated with the Tohoku-oki earthquake cycle also indicate that in the later stage of the earthquake cycle, the Pacific coastal region begins to subside due to the increasing slip deficit rate on the deeper parts of the plate interface. These results explain the subsidence of the Pacific coast of northeast Japan observed for about 100 years prior to the Tohoku-oki earthquake. In the future, a model that explains the long-term crust and mantle deformation during the entire Tohoku-oki earthquake cycle must be constructed.

【 授权许可】

CC BY   
© The Author(s) 2023

【 预 览 】
附件列表
Files Size Format View
RO202309150059235ZK.pdf 6191KB PDF download
Fig. 2 372KB Image download
Fig. 2 595KB Image download
Fig. 3 202KB Image download
Fig. 5 868KB Image download
Fig. 4 753KB Image download
Fig. 2 1276KB Image download
Fig. 1 224KB Image download
Fig. 1 180KB Image download
Fig. 2 103KB Image download
Fig. 3 3423KB Image download
12862_2023_2133_Article_IEq56.gif 1KB Image download
12862_2023_2133_Article_IEq61.gif 1KB Image download
Fig. 11 593KB Image download
12862_2023_2148_Article_IEq5.gif 1KB Image download
Fig. 3 1875KB Image download
MediaObjects/41408_2023_892_MOESM6_ESM.tif 1618KB Other download
Fig. 1 427KB Image download
Fig. 1 416KB Image download
MediaObjects/12302_2023_783_MOESM1_ESM.docx 16KB Other download
Fig. 1 133KB Image download
Fig. 1 147KB Image download
Fig. 2 1050KB Image download
Fig. 2 544KB Image download
Fig. 1 761KB Image download
Fig. 1 38KB Image download
Fig. 2 40KB Image download
Fig. 6 478KB Image download
Fig. 1 1240KB Image download
Fig. 5 2407KB Image download
Fig. 4 190KB Image download
Fig. 2 386KB Image download
Fig. 5 998KB Image download
Fig. 7 2606KB Image download
MediaObjects/41408_2023_892_MOESM7_ESM.xlsx 13KB Other download
MediaObjects/12974_2023_2855_MOESM6_ESM.tif 36752KB Other download
Fig. 3 404KB Image download
Fig. 2 73KB Image download
MediaObjects/41408_2023_892_MOESM9_ESM.xlsx 6057KB Other download
Fig. 3 118KB Image download
Fig. 6 632KB Image download
Fig. 1 1164KB Image download
MediaObjects/40798_2023_621_MOESM1_ESM.docx 14KB Other download
MediaObjects/12951_2023_1994_MOESM5_ESM.pptx 3702KB Other download
Fig. 3 272KB Image download
【 图 表 】

Fig. 3

Fig. 1

Fig. 6

Fig. 3

Fig. 2

Fig. 3

Fig. 7

Fig. 5

Fig. 2

Fig. 4

Fig. 5

Fig. 1

Fig. 6

Fig. 2

Fig. 1

Fig. 1

Fig. 2

Fig. 2

Fig. 1

Fig. 1

Fig. 1

Fig. 1

Fig. 3

12862_2023_2148_Article_IEq5.gif

Fig. 11

12862_2023_2133_Article_IEq61.gif

12862_2023_2133_Article_IEq56.gif

Fig. 3

Fig. 2

Fig. 1

Fig. 1

Fig. 2

Fig. 4

Fig. 5

Fig. 3

Fig. 2

Fig. 2

【 参考文献 】
  • [1]
  • [2]
  • [3]
  • [4]
  • [5]
  • [6]
  • [7]
  • [8]
  • [9]
  • [10]
  • [11]
  • [12]
  • [13]
  • [14]
  • [15]
  • [16]
  • [17]
  • [18]
  • [19]
  • [20]
  • [21]
  • [22]
  • [23]
  • [24]
  • [25]
  • [26]
  • [27]
  • [28]
  • [29]
  • [30]
  • [31]
  • [32]
  • [33]
  • [34]
  • [35]
  • [36]
  • [37]
  • [38]
  • [39]
  • [40]
  • [41]
  • [42]
  • [43]
  • [44]
  • [45]
  • [46]
  • [47]
  • [48]
  • [49]
  • [50]
  • [51]
  • [52]
  • [53]
  • [54]
  • [55]
  • [56]
  • [57]
  • [58]
  • [59]
  • [60]
  • [61]
  • [62]
  • [63]
  • [64]
  • [65]
  • [66]
  • [67]
  • [68]
  • [69]
  • [70]
  • [71]
  • [72]
  • [73]
  • [74]
  • [75]
  • [76]
  • [77]
  • [78]
  • [79]
  • [80]
  • [81]
  • [82]
  • [83]
  • [84]
  • [85]
  • [86]
  • [87]
  • [88]
  • [89]
  • [90]
  • [91]
  • [92]
  • [93]
  • [94]
  • [95]
  • [96]
  • [97]
  • [98]
  • [99]
  • [100]
  • [101]
  • [102]
  • [103]
  • [104]
  • [105]
  • [106]
  • [107]
  • [108]
  • [109]
  • [110]
  • [111]
  • [112]
  • [113]
  • [114]
  • [115]
  • [116]
  文献评价指标  
  下载次数:2次 浏览次数:0次