All Issue

2026 Vol.61, Issue 4 Preview Page
31 August 2026. pp. 582-594
Abstract
References
1

권오상・박기웅・Naki Sambit Prasanajit・신현조・김영석, 2021, “고지진학적 방법을 이용한 울산단층 남부지역에서의 단층활동 특성 연구,” 지질학회지, 57(2), 109-121.

10.14770/jgsk.2021.57.2.109
2

김영석・진광민, 2006, “트렌치 단면의 단층변위 자료를 이용해 산정한 유계단층의 지진규모,” 지질학회지, 42(1), 79-94.

10.14770/jgsk.2006.42.1.79
3

김영석・진광민・최원학・기원서, 2011, “활성단층의 이해: 최근의 연구에 대한 고찰,” 지질학회지, 47(6), 723-752.

10.14770/jgsk.2011.47.6.723
4

김태형・최진혁・이호일・배한경・최이레・이태호・천영범・김창민・김동은・류충렬, 2022, “한반도 충북지역에서 최초로 발견된 고지진의 층서학적 기록,” 지질학회지, 58(4), 411-425.

10.14770/jgsk.2022.58.4.411
5

류충렬・김종선・이한영, 2008, “함안-의령 일대 서북서 방향의 선상구조와 좌향이동 지시자,” 자원환경지질, 41(4), 465-468.

6

송영석・하상민・이성준・강희철・최정헌・손문, 2020, “경주시 단구리 일원 굴착조사를 통한 양산단층의 제4기 지질구조 특성과 고지진 연구,” 지질학회지, 56(2), 155-173.

10.14770/jgsk.2020.56.2.155
7

이윤성・천영범・하상민・강희철・최정헌・손문, 2017, “경남 고성군 서외지점에서 발견된 제4기 단층의 기하와 운동학적 특성,” 지질학회지, 53(1), 115-127.

10.14770/jgsk.2017.53.1.115
8

진광민・김영석・강희철・신현조, 2013, “경북 울진군에 발달하는 제4기 구산단층의 발달특성 연구,” 지질학회지, 49(2), 197-207.

9

최정헌・정창식・장호완, 2004, “석영을 이용한 OSL(Optically Stimulated Luminescence) 연대측정의 원리와 지질학적 적용,” 지질학회지, 40(4), 567-583.

10.14770/jgsk.2004.40.4.567
10

최진혁・김영석・Yann, K., 2017, “대규모 지진에 수반된 지표파열특성에 관한 최근 연구동향,” 지질학회지, 53(1), 129-157.

10.14770/jgsk.2017.53.1.129
11

홍성찬・최정헌・여은영・김종욱, 2013, “K-장석을 이용한 IRSL(Infrared Stimulated Luminescence) 연대측정의 원리와 적용,” 지질학회지, 49(2), 305-324.

12

홍영민・신재열, 2021, “장대 단층 중부 구간 모곡리 단층의 제4기 활동성 및 누적 변위,” 대한지리학회지, 56(4), 449-459.

13

홍영민・신재열・최정헌・김석진・원효정, 2025, “금왕단층 북부 홍천군 방내리 일대 고유로 지형 발달과 하각률,” 지질학회지, 61(4), 589-604.

10.14770/jgsk.2025.032
14

Adamiec, G. and Aitken, M. J., 1998, Dose-rate conversion factors: update, Ancient TL, 16, 37-50.

10.26034/la.atl.1998.292
15

Buylaert, J. P., Huot, S., Van den Haute, P. and Murray, A. S., 2011, Infrared stimulated luminescence dating of an Eemian(MIS 5e) site in Denmark using K-feldspar, Boreas, 40, 46-56.

10.1111/j.1502-3885.2010.00156.x
16

Buylaert, J. P., Murray, A. S., Thomsen, K. J. and Jain, M., 2009, Testing the potential of an elevated temperature IRSL signal from K-feldspar, Radiation Measurements, 44(5-6), 560-565.

10.1016/j.radmeas.2009.02.007
17

Ha, S., Kang, H. C., Lee, S., Seong, Y. B., Choi, J. H., Kim, S. J. and Son, M., 2025, Quaternary surface ruptures of the inherited mature Yangsan Fault: Implications for intraplate earthquakes in southeastern Korea, Solid Earth, 16, 197-231.

10.5194/se-16-197-2025
18

Huntley, D. J. and Baril, M. R., 1997, The K content of the K-feldspars being measured in optical dating or in thermoluminescence dating, Ancient TL, 15, 11-13.

10.26034/la.atl.1997.271
19

Huntley, D. J. and Lamothe, M., 2001, Ubiquity of anomalous fading in K-feldspars and the measurement and correction for it in optical dating, Canadian Journal of Earth Sciences, 38, 1093-1106.

10.1139/e01-013
20

Kars, R. H., Wallinga, J. and Cohen, K. M., 2008, A new approach towards anomalous fading correction for feldspar IRSL dating-tests on samples in field saturation, Radiation Measurements, 106, 477-482.

21

Kim, C. M., Lee, T. H., Choi, J. H., Lee, H. and Kim, D. E., 2024a, Multi-scale analysis and paleoseismic investigations along the Geumwang Fault: An example of integrated approach in paleoseismology in slow tectonic region, Geosciences Journal, 28, 565-582.

10.1007/s12303-024-0029-x
22

Kim, D. E., Kim, C. M., Choi, H. W. and Lee, H., 2024b, New evidence of late Quaternary earthquake surface rupturing along the Gongju Fault, central Korea, Geosciences Journal, 28(5), 583-593.

10.1007/s12303-024-0018-0
23

Lamothe, M., Auclair, M., Hamzaoui, C. and Huot, S., 2003, Towards a prediction of long-term anomalous fading of feldspar IRSL, Radiation Measurements, 37, 493-498.

10.1016/S1350-4487(03)00016-7
24

Leonard, M., 2014, Self-consistent earthquake fault-scaling relations: Update and extension to stable continental strike-slip faults, Bulletin of the Seismological Society of America, 104, 2953-2965.

10.1785/0120140087
25

Liritzis, I., Stamoulis, K., Papachristodoulou, C. and Ioannides, K., 2013, A re-evaluation of radiation dose-rate conver sion factors, Mediterranean Archaeology and Archaeometry, 13, 1-15.

26

Mejdahl, V., 1987, Internal radioactivity in quartz and feldspar grains, Ancient TL, 5, 10-17.

10.26034/la.atl.1987.119
27

Moss, R. E. S. and Ross, Z. E., 2011, Probabilistic fault displacement hazard analysis for reverse faults, Bulletin of the Seismological Society of America, 101, 1542-1553.

10.1785/0120100248
28

Murray, A. S. and Funder, S., 2003, OSL dating of a Danish Coastal Marine Deposit: A test of accuracy, Quaternary Science Reviews, 22, 1177-1183.

10.1016/S0277-3791(03)00048-9
29

Murray, A. S. and Wintle, A. G., 2000, Luminescence dating of quartz using an improved single-aliquot regenerative-dose protocol, Radiation Measurements, 32(1), 57-73.

10.1016/S1350-4487(99)00253-X
30

Petersen, M. D., Dawson, T. E., Chen, R., Cao, T., Wills, C. J., Schwartz, D. P. and Frankel, A. D., 2011, Fault displacement hazard for strike-slip faults, Bulletin of the Seismological Society of America, 101, 805-825.

10.1785/0120100035
31

Prescott, J. R. and Hutton, J. T., 1994, Cosmic ray contributions to dose rates for luminescence and ESR dating: Large depths and long-term time variation, Radiation Measurements, 23, 497-500.

10.1016/1350-4487(94)90086-8
32

Riedesel, S., 2025, Not fade away-The persistence of fading in feldspar luminescence, Ancient TL, 43, 9-19.

10.26034/la.atl.2025.7620
33

Shin, S., Cheon, Y., Choi, J. H., Cheong, D., Choi, S. Y., Lim, H. S., Bae, H. and Lee, H. K., 2020, Late Pleistocene sedimentary environment and reverse faulting along the Chugaryung Fault in the central Korean Peninsula: A case study on the Cheorwon Basin, Geosciences Journal, 24(6), 615-623.

10.1007/s12303-020-0026-7
34

Sohbati, R., Murray, A. S., Buylaert, J.-P., Ortuño, M., Cunha, P. P. and Masana, E., 2012, Luminescence dating of Pleistocene alluvial sediments affected by the Alhama de Murcia fault(eastern Betics, Spain)-a comparison between OSL, IRSL and post-IRIRSL ages, Boreas, 41, 250-262.

10.1111/j.1502-3885.2011.00230.x
35

Thiel, C., Tsukamoto, S., Tokuyasu, K., Buylaert, J.-P., Murray, A. S., Tanaka, K. and Shirai, M., 2015, Testing the application of quartz and feldspar luminescence dating to MIS 5 Japanese marine deposits, Quaternary Geochronology, 29, 16-29.

10.1016/j.quageo.2015.05.008
36

Thingbaijam, K. K. S., Mai, P. M. and Goda, K., 2017, New empirical earthquake-source scaling laws, Bulletin of the Seismological Society of America, 107, 2225-2246.

10.1785/0120170017
37

Wells, D. L. and Coppersmith, K. J., 1994, New empirical relationships among magnitude, rupture length, rupture area, and surface displacement, Bulletin of Seismological Society of America, 84, 974-1002.

10.1785/BSSA0840040974
38

Xu, S., Nieto-Samaniego, A. F. and Alaniz-Alvarez, S. A., 2009, Quantification of true displacement using apparent displacement along an arbitrary line on a fault plane, Tectonophysics, 467, 107-118.

10.1016/j.tecto.2008.12.004
39

Youngs, R. R., Arabasz, W. J., Anderson, R. E., Ramelli, A. R., Ake, J. P., Slemmons, D. B., McCalpin, J. P., Doser, D. I., Fridrich, C. J., Swan, F. H., Rogers, A. M., Yount, J. C., Anderson, L. W., Smith, K. D., Bruhn, R. L., Knuepfer, P. L. K., Smith, R. B., dePolo, C. M., O’Leary, D. W., Coppersmith, K. J., Pezzopane, S. K., Schwartz, D. P., Whitney, J. W., Olig, S. S. and Toro, G. R., 2003, A methodology for probabilistic fault displacement hazard analysis (PFDHA), Earthquake Spectra, 19, 191-219.

10.1193/1.1542891
40

Zimmerman, J., 1971, The Radiation-induced Increase of the 100°C Thermoluminescence Sensitivity of Fired Quartz, Journal of Physics C: Solid State Physics, 4, 3265.

10.1088/0022-3719/4/18/032
41

기상청, 역사지진자료, https://www.weather.go.kr/w/earth quake/archive/historical-eqk.do, 2026년 5월 13일 접속.

Information
  • Publisher :The Korean Geographical Society
  • Publisher(Ko) :대한지리학회
  • Journal Title :Journal of the Korean Geographical Society
  • Journal Title(Ko) :대한지리학회지
  • Volume : 61
  • No :4
  • Pages :582-594
  • Received Date : 2026-06-11
  • Revised Date : 2026-08-03
  • Accepted Date : 2026-08-14