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Title Page
Contents
Abstract 11
1. Introduction 13
2. Geological settings around Dangu fault 21
3. Method 23
4. Characteristics and age of Dangu fault 26
4.1. Interpretation of Trench 1 26
4.2. Interpretation of Trench 2 33
4.3. Dangu fault age of movement 35
4.4. OSL dating method 36
4.5. Radiocarbon dating method 37
4.6. Archaeological dating estimation 38
5. Relationship of age dating method 42
6. Kumamoto earthquake and Futagawa-Hinagu Fault system 49
7. Yangsan-Ulsan Fault system 61
8. Relationship between fault system of geometrical Connection and Stress in fault growth 63
9. Characteristics of the Quaternary fault development in the Yangsan-Ulsan Fault system 65
10. Prediction of earthquake characteristics based on the similarity between Yangsna-Ulsan and Futagawa-Hinagu fault system 67
11. Conclusions 76
Reference 78
요약 87
Table 1. Comparison of the Yangsan-Ulsan Fault system and the Futagawa-Hinagu Fault system 74
Table 2. Major historical earthquake around Yangsan and Ulsan Fault 75
Fig. 1. (a, b) Regional geological map around the study area (modified from... 16
Fig. 2. (a) Lineament distribution around the study site (marked in a black circle). Main... 20
Fig. 3. Outcrop photo and sketch of the fault at Byeokgye site. This right-lateral fault is... 22
Fig. 4. Overviews of the trench site. 25
Fig. 5. Trench logs and dated stratigraphy of the trench 1. 30
Fig. 6. (a) Close view of T1-N. Black, dark green, green fault gouge is developed along the fault. (b) Slickenline of the Dangu fault... 31
Fig. 7. Trench logs and dated stratigraphy of the trench. (a) View of the southern... 32
Fig. 8. Trench logs and dated stratigraphy of the trench. (a) View of the northern section of the... 34
Fig. 9. Surface trace of the fault and ceramic fragment within the displaced layer. 40
Fig. 10. Potteries found in Unit B. porcelain age is estimated as a part of the... 41
Fig. 11. Structural model for the Danguri trench site. Field evidences show that at least... 47
Fig. 12. (a) Coulomb stress changes are concentrated in the eastern and southeastern... 48
Fig. 13. Distribution of surface ruptures and deformations identified during the... 55
Fig. 14. Mw 6.1 and 7.0 earthquake occurred central Kyushu lsland on 2016/04/14 and... 56
Fig. 15. SAR interferometry results demonstrating fault propagation and surface deformation... 57
Fig. 16. Damages and surface ruptures associated with the Kumamoto earthquake. 58
Fig. 17. Mainhock, aftershock clusters and related damage zones around several large-scale strike-slip... 59
Fig. 18. Mainshock and aftershock distribution of the Canterbury... 60
Fig. 19. (a) Transport directions of Quaternary faults developed along the Yansan-Ulsan... 73
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