Skip navigation

DSpace

機構典藏 DSpace 系統致力於保存各式數位資料(如:文字、圖片、PDF)並使其易於取用。

點此認識 DSpace
DSpace logo
English
中文
  • 瀏覽論文
    • 校院系所
    • 出版年
    • 作者
    • 標題
    • 關鍵字
    • 指導教授
  • 搜尋 TDR
  • 授權 Q&A
    • 我的頁面
    • 接受 E-mail 通知
    • 編輯個人資料
  1. NTU Theses and Dissertations Repository
  2. 理學院
  3. 地質科學系
請用此 Handle URI 來引用此文件: http://tdr.lib.ntu.edu.tw/jspui/handle/123456789/40508
完整後設資料紀錄
DC 欄位值語言
dc.contributor.advisor陳于高教授(Yue-Gau Chen)
dc.contributor.authorYa-Wen Chenen
dc.contributor.author陳雅雯zh_TW
dc.date.accessioned2021-06-14T16:49:41Z-
dc.date.available2010-08-05
dc.date.copyright2008-08-05
dc.date.issued2008
dc.date.submitted2008-07-30
dc.identifier.citationAitken, M.J., 1985. Thermoluminescence Dating. Academic Press, London.
Aitken, M.J., 1998. An Introduction to Optical Dating: The Dating of Quaternary Sediments by the use of Photon-Stimulated Luminescence. Oxford University Press, Oxford.
Angelier, J., 1986. Preface. Geodynamics of Eurasia-Philippine Sea Plate boundary. Tectonophysics 125, IX-X.
Angelier, J., Barrier, E., Chu, H.T., 1986. Plate collision and paleostree trajectories in a fold-thrust belt: The foothills of Taiwan. Tectonophysics 125, 161-178.
Angelier, J., Chen, R.F., 2002. Mathematical analysis of longitudinal river profiles reveals tectonic uplift: Hsiaomei, Taiwan. C.R.Geosciences 333, 1103-1111.
Auclair, M., Lamothe, M., Huot, S., 2003. Measurement of anomalous fading for feldspar IRSL using SAR. Radiation Measurements 37, 487-492.
Auclair, M., Lamothe, M., Lagroix, F., Banerjee, S.K., 2007. Luminescence investigation of loess and tephra from Halfway House section, Central Alaska. Quaternary Geochronology 2, 34-38.
Bailey, R.M., Smith, B.W., Rhodes, E.J., 1997. Partial bleaching and the decay form characteristics of quartz OSL. Radiation Measurements 27, 123-136.
Bøtter-Jensen, L., Bulur, E., Duller, G.A.T., Murray, A.S., 2000. Advances in luminescence instrument systems. Radiation Measurements 32, 523-528.
Chang, C.P., Chang, T.Y., Angelier, J., Kao, H., Lee, J.C., Yu, S.B., 2003. Strain and stress field in Taiwan oblique convergent system: constraints from GPS observation and tectonic data. Earth and Planetary Science Letters 214, 115-127.
Chang, H.C., Lin, C.W., Chen, M.M., Lu, S.T., 1998a. An introduction to the active faults of Taiwan: explanatory text of the active fault map of Taiwan, scale 1:500,000. Special Publication of Central Geological Survey 10, Central Geological Survey, MOEA, Taipei, Taiwan. (in Chinese with English abstract).
Chang, J.C., Shih, T.T., Chen, H.L., 1998b. A study on coastal changes of Chianan Plain in southwestern Taiwan. Geographical Research 28, 83-105. (in Chinese with English abstract)
Chappell, J., Shackleton, N.J., 1986. Oxygen isotopes and sea level. Nature 324, 137-140.
Chapple, W. M., 1978. Mechanics of thin-skinned fold-and-thrust belts. Geological Society of America Bulletin 89, 1189-1198.
Chen, R., McKeever, S.W.S., 1997. Theory of Thermoluminescence and Related Phenomena. World Scientific, Singapore.
Chen, W.P., Chen, C.Y., 2004. Seismogenic structures along continental convergent zones: from oblique subduction to mature collision. Tectonophysics 385, 105-120.
Chen, W.S., Chen, Y.G., Chang, H.C., 2001a. Paleoseismic study of the Chelungpu fault in the Mingjian area. Western Pacific Earth Sciences 1, 3, 351-358.
Chen, W.S., Chen, Y.G., Chang, H.C., Lee, Y.H., Lee, C.C., 2001b. Paleoseismic study of the Chelungpu fault in the Wanfung area. Western Pacific Earth Sciences 1, 4, 499-506.
Chen, W.S., Lee, K.J., Lee, L.S., Ponti, D.J., Prentice, C., Chen, Y.G., Chang, H.C., Lee, Y.H., 2004. Paleoseismology of the Chelungpu Fault during the past 1900 years. Quaternary International 115-116, 167-176.
Chen, W.S., Lee, K.J., Lee, L.S., Streig, A.R., Rubin, C.M., Chen, Y.G., Yang, H.C., Chang, H.C., Lin, C.W., 2007. Paleoseismic evidence for coseismic growth-fold in the 1999 Chichi earthquake and earlier earthquakes, central Taiwan. Journal of Asian Earth Sciences 31, 204-213.
Chen, W.S., Lee, L.S., Lee, K.J., Yang, H.C., Yang, C.C., Yen, I.C., Chang, H.C., Ota, Y., Lin, C.W., Lin, W.S., Shih, T.S., Lu, S.T., 2005. Paleoseismology of the southern segment of the Chichi earthquake rupture (the Chelungpu fault), central Taiwan: keys to fault behavior and characteristic earthquakes. Hokudan International Symposium on Active Faulting, Abstract, p.17.
Chen, W.S., Yang, C.C., Shih, R.C., Yang, H.C., Yen, Y.C., Chen, Y.G., Chang, H.C., Lin, W.S., Lee, Y.H., Shih, T.S., Lu, S.T., 2003c. Structural characteristics of the Chiuchiungkeng fault. Special Publication of the Central Geological Survey 14, 123-139. (in Chinese with English abstract)
Chen, Y.G., 2000. The luminescence dating and correlation between shallow boreholes, Chianan and Lanyang coastal plain. Central Geological Survey Report 89-020, Central Geological Survey, MOEA, Taipei, Taiwan. (in Chinese with English abstract)
Chen, Y.G., Chen, W.S, Lee, J.C., Lee, Y.H., Lee, C.T., Chang, H.C., Lo, C.H., 2001c. Surface rupture of 1999 Chi-chi earthquake yields insights on active tectonics of central Taiwan. Bulletin of the Seismological Society of Amerrica 91, 977-985.
Chen, Y.G., Chen, Y.W., Chen, W.S., Lee, K.J., Lee, L.S., Lu, S.T., Lee, Y.H., Watanuki, T., Lin, Y.N., 2008a. Optical dating of a sedimentary sequence in a trenching site on the source fault of the 1999 Chi-Chi earthquake, Taiwan. Submitted to Quaternary International.
Chen, Y.G., Chen, Y.W., Chen, W.S., Zhang, J.F., Zhao, H., Zhou, L.P., Li, S.H., 2003a. Preliminary results of long-term slip rates of 1999 earthquake fault by luminescence and radiocarbon dating. Quaternary Science Reviews 22, 1213-1221.
Chen, Y.G., Liu, K.T., 2000. Holocene uplift and subsidence along an active tectonic margin southwestern Taiwan. Quaternary Science Reviews 19, 923-930.
Chen, Y.G., Shyu, J.B.H., Lai, K.Y., Wang, Y., Chuang, R.Y., Chen, W.S., 2002. Deformed terraces and active structures: a case along Tungpuna river, Nantao. 2002 Annual Meeting of the Geological Society of China, Abstracts with program, pp. 12–14.
Chen, Y.G., Wu, W.S., Chen, C.H., Liu, T.K., 2001d. A date for volcanic eruption inferred from a siltstone xenolith. Quaternary Science Reviews 20, 869-873.
Chen, Y.W., Chen, Y.G., Murray, A.S., Liu, T.K., Lai, T.C., 2003b. Luminescence dating of neotectonic activity on the southwestern coastal plain, Taiwan. Quaternary Science Reviews 22, 1223-1229.
Chen, Y.W., Chen, Y.G., Murray, A.S., Watanuki, T., Chen, W.S., Yang, C.C.B., Liu, T.K., Lin, C.W., 2008b. Long-term crustal movement caused by the Chiuchiungkeng Fault in southwestern Taiwan: constraints from luminescence dating. Accepted by Quaternary International.
Chi, W.R., Shaw, C.L., Huang, S.T., Liu, C.H., Wang, W.H., Chuang, K.C., Lu, D.L., Chou, T.F., Wu, J.C., 1988. Petroleus geology and hydrocarbon accumulation of the Chianan coastal plain- The Pachangchi sandstone and the Cretaceous sequence in the Peikang basement high. Annual report, Petroleum Geology of Taiwan. (in Chinese with English abstract)
Chiang, H.W., Chen, Y.G., 2005. Organic carbon inferred environmental fluctuations during late Quaternary, southwestern Taiwan. TAO 16, 1121-1132.
Choi, J.H., Murray, A.S., Cheong, C.S., Hong, D.G., Chang, H.W., 2003. The resolution of stratigraphic inconsistency in the luminescence ages of marine terrace sediments from Korea. Quaternary Science Reviews 22, 1201-1206.
Chung, Y., Chang, W.C., 1996. Uranium and thorium isotopes in marine sediments off northeastern Taiwan. Marine Geology 133, 89-102.
Clifton, J., McDonald, P., Plater, A., Oldfield, F., 1999. An investigation into the efficiency of particle size separation using Stokes’ Law. Earth Surface Processes and Landforms 24, 725-730.
Deffontaines, B., Lacombe, O., Angelier, J., Chu, H.T., Mouthereau, F., Lee, C.T., Deramond, J., Lee, J.F.,Yu, M.S., Liew, P.M., 1997. Quaternary transfer faulting in the Taiwan Foothills: Evidence from a multisource approach. Tectonophysics 274, 61-82.
Delcaillau, B., Deffontaines, B., Floissac, L., Angelier, J., Deramond, J., Souquet, P., Chu, H.T., Lee, J.F., 1998. Morphotectonic evidence from lateral propagation of an active frontal fold; Pakuashan anticline, foothills of Taiwan. Geomorphology 24, 263-290.
Douglass, A.E., 1920. Evidence of climatic effects in the annual rings of trees. Ecology 1, 24-32.
Duller, G.A.T., Bøtter-Jensen, L., Murray, A.S., 2000. Optical dating of single sand-sized grains of quartz: sources of variability. Radiation Measurements 32, 453-457.
Evernden, J.F., Savage, D.E., Curtis, G.H., James, G.T., 1964. Potassium-argon dates and Cenozoic mammalian chronology of North America. American Journal of Science 262, 145-198.
Fleischer, R.L., Price, P.B., 1964a. Fission track evidence for the simultaneous origin of tektites and other natural glasses. Geochimica et Cosmochimica Acta 28, 755-756.
Fleischer, R.L., Price, P.B., 1964b. Techniques for geological dating of minerals by chemical etching of fission fragment tracks. Geochimica et Cosmochimica Acta 28, 1705-1712.
Godfrey-Smith, D.I., Huntley, D.J., Chen, W.H., 1988. Optical dating studies of quartz and feldspar sediment extracts. Quaternary Science Reviews 7, 373-380.
Hashimoto, T., Yamazaki, K., Morimoto, T., Sakaue, H., 2001. Radiation-induced luminescence color images from some feldspars. Analytical Science 17, 825-831.
Ho, C.S., 1982. Tectonic evolution of Taiwan. Ministry of Economic Affairs, Taipei, Taiwan.
Ho, C.S., 1986. A synthesis of the geologic evolution of Taiwan. Tectonophysics 125, 1-16.
Hsu, C.Y., 2003. The Study of Chiuhsiumgken-fault. Unpublished M.Sc. thesis, National Cheng Kung University, Tainan, Taiwan. (in Chinese with English abstract)
Hsu, Y.J., Simons, M., Yu, S.B., Kao, L.C., Chen, H.Y., 2003. A two-dimensional dislocation model for interseismic deformation of the Taiwan mountain belt. Earth and Planetary Science Letters 211, 287-294.
Huang, B.S., Chen, K.C., Huang, W.G., Wang, J.H., Chang, T.M., Hwang, R.D., Chiu, H.C., Tsai, C.C.P., 2000. Characteristics of strong ground motion across a thrust fault tip from the September 21, 1999, Chi-Chi, Taiwan earthquake. Geophysical Research Letters 27, 2729-2732.
Huang, Y.T., 2001. Upper quaternary sedimentary environments and sequence stratigraphy of the Tsengwen-hsi River basin, Chianan Plain: a preliminary study. Unpublished M.Sc. thesis, National Taiwan University, Taipei, Taiwan. (in Chinese with English abstract)
Hung, J.H., Wiltschko, D.V., Lin, H.C., Hickman, J.B., Fang, P., Bock, Y., 1999. Structure and motion of the southwestern Taiwan fold and thrust belt. TAO 10, 543-568.
Huntley, D.J., Godfrey-Smith, D.I., Thewalt, M.L.W., 1985. Optical dating of sediments. Nature 313, 105-107.
Huntley, D.J., 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.
Huot, S., Chen, Y.W., Buylaert, J.P., Murray, A.S., 2008. On the effect of thermal variability in fading measurements of feldspars. Submitted to Radiation Measurement.
Huot, S., Lamothe, M., 2003. Variability of infrared stimulated luminescence properties from fractured feldspar grains. Radiation Measurements 37, 499-503.
Ikeya, M., Miki, T., 1980. Electron Spin Resonance Dating of Animal and Human Bones. Science 207, 977-979.
Jain, M., Murray, A.S., Bøtter-Jensen, L., 2003. Characterisation of blue-light stimulated luminescence components in different quartz samples: implications for dose measurement. Radiation Measurements 37, 441-449.
Joly, J., 1923. The Age of the Earth. The Scientific Monthly 16, 205-216.
Kao, H., Chen, W.P., 2000. The Chi-Chi earthquake sequence: Active, out-of-sequence thrust faulting in Taiwan. Science 288, 2346-2349.
Kao, H., Jian, P.R., 2001. Seismogenic patterns in the Taiwan region: insights from source parameter inversion of BATS data. Tectonophysics 333, 179-198.
Lacombe, O., Mouthereau, F., Angelier, J., Deffontaines, B., 2001. Structural, geodetic and seismological evidence for tectonic escape in SW Taiwan. Tectonophysics 333, 323-345.
Lai, K.Y., Chen, Y.G., Hung, J.H., Suppe, J., Yue, L.F., Chen, Y.W., 2006. Surface deformation related to kink-folding above an active fault: Evidence from geomorphic features and co-seismic slips. Quaternary International 147, 44-54.
Liew, P.M., Hsieh, M.L., 2000. Late Holocene (2 ka) sea level, river discharge and climate interrelationship in the Taiwan region. Journal of Asian Earth Sciences 18, 499-505.
Lin, A.T., Watts, A.B., 2002. Origin of the West Taiwan basin by orogenic loading and flexure of a rifted continental margin. Journal of Geophysical Research 107, 2185.
Lin, A.T., Watts, A.B., Hesselbo, S.P., 2003. Cenozoic stratigraphy and subsidence history of the South China Sea margin in the Taiwan region. Basin Research 15, 453-478.
Lin, C.W., Chang, H.C., Lu, S.T., Shih, T.S., Huang, W.J., 2000. An introduction to the active faults of Taiwan: explanatory text of the active fault map of Taiwan, scale 1:500,000, 2nd Edition. Special Publication of Central Geological Survey 13, MOEA, Taipei, Taiwan. (in Chinese with English abstract)
Lin, C.W., Hsu, C.Y., Yu, T.D., 2007. The Chiuhsiungken fault: A candidate to trigger a hazardous earthquake in western Taiwan. Journal of Asian Earth Science 30, 390-402.
Liu, Y.C., Lin, C.W., Lin, Y.H., Lee, M.S., 2003. The drilling report of “Earthquake Geologic Investigation and Data Bank Compilation on Active Faults in Taiwan”. Central Geological Survey, MOEA, Taipei, Taiwan. (in Chinese)
Lo, C.C., 1996. Thermoluminescence dating of several shallow marine deposits in Taiwan. Unpublished M.Sc. thesis, National Taiwan University, Taipei, Taiwan. (in Chinese with English abstract)
Lu, C.Y., Jeng, F.S., Chang, K.J., Jian, W.T., 1998. Impact of basement high on the structure and kinematics of the western Taiwan thrust wedge: insights from sandbox models. TAO 9, 533-550.
Ma, K.F., Song, T.R.A., 2004. Thermo-mechanical structure beneath the young orogenic belt of Taiwan. Tectonophysics 388, 21-31.
Matinson, D.G., Pisias, N.G., Hays, J.D., Imbrie, J., Moore, T.C., Shackleton, N.J., 1987. Age dating and the orbital theory of the ice ages: development of a high resolution 0 to 300,000-year chronostratigraphy. Quaternary Research 27, 1-29.
Mazess, R.B., Zimmerman, D.W., 1966. Pottery Dating from Thermoluminescence. Science 152, 347-348.
McCalpin, J.P., 1996. Application of paleoseismic data to seismic hazard assessment and neotectonic research. In: McCalpin, J.P. (Ed.), Paleoseismology, Academic Press, New York.
Mejdahl, V., 1979. Thermoluminescence dating: beta-dose attenuation in quartz grains. Archaeometry 21, 61-72.
Mejdahl, V., 1985. Thermoluminescence dating based on feldspars. Nuclear Tracks and Radiation Measurements 10, 133-136.
Mejdahl, V., Bøtter-Jensen, L., 1997. Experience with the SARA OSL method. Radiation Measurements 27, 291-294.
Miall, A.D., 1996. The geology of fluvial deposits. Springer, Berlin.
Mouthereau, F., Lacombe, O., 2006. Inversion of the Paleogene Chinese continental margin and thick-skinned deformation in the Western Foreland of Taiwan. Journal of Structural Geology 28, 1977-1993.
Mouthereau, F., Lacombe, O., Deffontaines, B., Angelier, J., Brusset, S., 2001. Deformation history of the southwestern Taiwan foreland thrust belt: insights from tectono-sedimentary analyses and balanced cross-sections. Tectonophysics 333, 293-322.
Murray, A.S., 1981. Environmental radioactivity studies Rrelevant to thermoluminescence dating. Unpublished D.Phil. thesis, University of Oxford.
Murray, A.S., 1996a. Developments in optically stimulated luminescence and photo-transferred thermoluminescence dating of young sediments: Application to a 2000-year sequence of flood deposits. Geochimica et Cosmochimica Acta 60, 565-576.
Murray, A.S., 1996b. Incomplete stimulation of luminescence in young quartz sediments and its effect on the regenerated signal. Radiation Measurements 26, 221-231.
Murray, A.S., Funder, S., 2003. Optically stimulated luminescence dating of a Danish Eemian coastal marine deposit: a test of accuracy. Quaternary Science Reviews 22, 1177-1183.
Murray, A.S., Marten, R., Johnston, A., Martin, P., 1987. Analysis for naturally occuring radionuclides at environmental concentrations by gamma spectrometry. Journal of Radioanalytical and Nuclear Chemistry 115, 263-288.
Murray, A.S., Olley, J.M., 2002. Precision and accuracy in the optically stimulated luminescence dating of sedimentary quartz: a status review. Geochronometria 21, 1-16.
Murray, A.S., Wintle, A.G., 2000. Luminescence dating of quartz using an improved single-aliquot regenerative-dose protocol. Radiation Measurement 32, 57-73.
Murray, A.S., Wintle, A.G., 2003. The single aliquot regenerative dose protocol: potential for improvements in reliability. Radiation Measurements 37, 377-381.
Olley, J.M, Murray, A.S., Robert, R.G., 1996. The effects of disequilibria in the uranium and thorium decay chain on burial dose rates in fluvial sediments. Quaternary Science Reviews (Quaternary Geochronology) 15, 751-760.
Olley, J.M., Caitcheon, G.G., Murray, A.S., 1998. The distribution of apparent dose as determined by optically stimulated luminescence in small aliquots of fluvial quartz: implications for dating young sediments. Quaternary Geochronology 17, 1033-1040.
Olley, J.M., Caitcheon, G.G., Roberts, R.G., 1999. The origin of dose distributions in fluvial sediments, and the prospect of dating single grains from fluvial deposits using optically stimulated luminescence. Radiation Measurements 1999, 207-217.
Olley, J.M., Murray, A.S, Roberts, R.G., 1996. The effects of disequilibria in the uranium and thorium decay chains on burial dose rates in fluvial sediments. Quaternary Science Reviews 15, 751-760.
Olley, J.M., Pietsch, T., Roberts, R.G., 2004. Optical dating of Holocene sediments from a variety of geomorphic settings using single grains of quartz. Geomorphology 60, 337-358.
Ota, Y., Watanabe, M., Suzuki, Y., Sawa, H., 2004. Geomorphological identification of pre-existing active Chelungpu Fault in central Taiwan, especially its relation to the location of surface rupture by the 1999 Chichi earthquake. Quaternary International 115-116, 155-166.
Pillans, B., Naish, T., 2004. Defining the Quaternary. Quaternary Science Reviews 23, 2271-2282.
Posamentier, H.W., Allen, G.P., 1999. Siliciclastic sequence stratigraphy-concepts and applications. SEPM.
Prescott, J.R., Huntley, D.J., Hutton, J.T., 1993. Estimation of equivalent dose in thermoluminescence dating - the Australian slide method. Ancient TL 11, 1-5.
Prescott, J.R., Hutton, J.T., 1988. Cosmic ray and gamma ray dosimetry for TL and ESR. Nuclear Tracks Radiation Measurements 14, 223-227.
Prescott, J.R., Hutton, J.T., 1994. Cosmic ray contribution to dose rates for luminescence and ESR dating: large depths and long-term time variations. Radiation Measurements 23, 497-500.
Rhodes, E.J., 2000. Observations of thermal transfer OSL signals in glacigenic quartz. Radiation Measurements 32, 595-602.
Shih, R.C., Chen, P.H., Lu, M.T., Chen, W.S., 2002. Final report of Geophysical Prospecting of Active Faults. Central Geological Survey, MOEA, Taipei, Taiwan. (in Chinese)
Shyu, J.B.H. 1999. The sedimentary environment of southern Pingdong plain since the last glacial. Unpublished M.Sc. thesis, National Taiwan University, Taipei, Taiwan. (in Chinese with English abstract)
Sieh, K., 1984. Lateral offsets and revised dates of large earthquakes at Pallett Creek, California. Journal of Geophysical Research 89, 7641-7670.
Singarayer, J.S., Bailey, R.M., 2003. Further investigations of the quartz optically stimulated luminescence components using linear modulation. Radiation Measurements 37, 451-458.
Singarayer, J.S., Bailey, R.M., Ward, S., Stokes, S., 2005. Assessing the completeness of optical resetting of quartz OSL in the natural environment. Radiation Measurements 40, 13-25.
Spooner, N.A., 1994. The anomalous fading of infrared-stimulated luminescence from feldspars. Radiation Measurements 23, 625-632.
Stuiver, M., Reimer, P.L., 1993. Extended 14C database and revised CALIB 3.0 14C age calibration program. Radiocarbon 35, 215-230.
Suppe, J., 1980. Imbricate structure of western foothills belt, south-central Taiwan. Petroleum Geology of Taiwan 17, 1-16.
Suppe, J., Namson, J., 1979. Fault-bend origin of frontal folds of the western Taiwan fold-and-thrust belt. Petroleum Geology of Taiwan 16, 1-18.
Teng, L.S., 1990. Geotectonic evolution of late Cenozoic arc-continent collision in Taiwan. Tectonophysics 183, 57-76.
Teng, L.S., Lee, C.T., Peng, C.H., Chen, W.F., Chu, C.J., 2001. Origin and geological evolution of the Taipei basin, northern Taiwan. Western Pacific Earth Sciences 1, 115-142.
Thomas, P.J., Murray, A.S., Sandgren, P., 2003. Age limit and age underestimation using different OSL signals from lacustrine quartz and polymineral fine grains. Quaternary Science Reviews 22, 1139-1143.
Tsukamoto, S., Murray, A.S., Huot, S., Watanuki, T., Denby, P.M., Bøtter-Jensen, L., 2007. Luminescence property of volcanic quartz and the use of red isothermal TL for dating tephras. Radiation Measurements 42, 190-197.
Wallinga, J., Murray, A.S., Duller, G.A.T., Törnqvist, T.E., 2001. Testing optically stimulated luminescence dating of sand-sized quartz and feldspar from fluvial deposits. Earth and Planetary Science Letters 193, 617-630.
Wallinga, J., Murray, A.S., Wintle, A.G., 2000. The single-aliquot regenerative-dose (SAR) protocol applied to coarse-grain feldspar. Radiation Measurements 32, 529-533.
Wang, C.H., Shieh, Y.T., Chen, M.P., 1994. Holocene oxygen and carbon isotopic records of core OR102-3 off southeastern Taiwan: paleoceanographic implications. TAO 5, 421-429.
Wang, C.Y., Kuo, H.Y., Wu, M.S., Oung, T.W., 2005. Confirming the Chiuchiungkeng fault by the seismic reflection method. Special Publication of the Central Geological Survey 16, 125-141. (in Chinese with English abstract)
Watanuki, T., Murray, A.S., Tsukamoto, S., 2003. A comparison of OSL ages derived from silt-sized quartz and polymineral grains from Chinese loess. Quaternary Science Reviews 22, 991-997.
Watanuki, T., Murray, A.S., Tsukamoto, S., 2005. Quartz and polymineral luminescence dating of Japanese loess over the last 0.6 Ma: Comparison with an independent chronology. Earth and Planetary Science Letters 240, 774-789.
Wei, K., 1997. Thermoluminescence dating and organic carbon isotopic analysis of Wu-ku core, Taipei basin. Unpublished M.Sc. thesis, National Taiwan University, Taipei, Taiwan. (in Chinese with English abstract)
Wei, K.Y., Lee, M.Y., Duan, W.W., Chen, C.Y., Wang, C.H., 1998. Palaeoceanographic change in the northeastern South China Sea during the last 15000 years. Journal of Quaternary Science 13, 55-64.
Wintle, A.G., 1973. Anomalous fading of thermoluminescence in mineral samples. Nature 245, 143-144.
Wintle, A.G., Murray, A.S., 2000. Quartz OSL: Effects of thermal treatment and their relevance to laboratory dating procedure. Radiation Measurements 32, 387-400.
Wintle, A.G., Murray, A.S., 2006. A review of quartz optically stimulated luminescence characteristics and their relevance in single-aliquot regeneration dating protocols. Radiation Measurements 41, 369-391.
Wu, L.C., 1999. Analyses of sediment and depositional environments on the Chia-Nan Plain and stratigraphic correlation. Central Geological Survey Report 88-015, Central Geological Survey, MOEA, Taipei, Taiwan. (in Chinese).
Wu, T.J., 2007. Sedimentary environment of the Chiayi coastal plain since the last glacial epoch. Unpublished M.Sc. thesis, National Taiwan University, Taipei, Taiwan. (in Chinese with English abstract)
Wu, W.S., 1994. Thermoluminescence dating of Choushui Fan-Delta, Yunlin. Unpublished M.Sc. thesis, National Taiwan University, Taipei, Taiwan. (in Chinese with English abstract)
Yang, C.C.B., Chen, W.S., Wu, L.C., Lin, C.W., 2007. Active deformation front delineated by drainage pattern analysis and vertical movement rates, southwestern Coastal Plain of Taiwan. Journal of Asian Earth Sciences 31, 251-264.
Yang, C.H., Cheng, P.H., You, J.I., Tsai, L.L., 2002. Significant resistivity changes in the fault zone associated with the 1999 Chi-Chi earthquake, west-central Taiwan. Tectonophysics 350, 299-313.
Yang, K.M., Huang, S.T., Wu, J.C., Ting, H.H., Mei, W.W., 2006. Review and new insights on foreland tectonics in Western Taiwan. International Geology Review 48, 910-941.
Yu, S.B., Chen, H.Y., Kuo, L.C., 1997. Velocity field of GPS stations in the Taiwan area. Tectonophysics 274, 41-59.
Yue, L.F., Suppe, J.,Hung, J.H., 2005. Structural geology of a classic thrust belt earthquake: the 1999 Chi-Chi earthquake Taiwan (Mw=7.6). Journal of Structural Geology 27, 2058-2083.
Zhao, H., Li, S.H., 2005. Internal dose rate to K-feldspar grains from radioactive elements other than potassium. Radiation Measurements 40, 84-93.
Zimmerman, D.W., 1971. Thermoluminescent dating using fine grains from pottery. Archaeometry 13, 29-52.
dc.identifier.urihttp://tdr.lib.ntu.edu.tw/jspui/handle/123456789/40508-
dc.description.abstract近十數萬年只是地球歷史短暫而微不足道的ㄧ小段,但在人類的演化過程卻是輝煌且重要的ㄧ頁。倘若科學家期望可以預測未來,掌握過去的趨勢是ㄧ個重要的關鍵,因而亟需可靠的年代資料加以佐證。本研究將就近年來螢光定年法之應用結果與適用性進行深入的探討;經過反覆測試後證實,螢光定年法可提供確實的年代資料用以進行區域構造之詮釋;當沉積層序與年代架構(特別是螢光定年所提供的連續性年代)相互配合,更可協助我們了解某些鑽井位置下的調節空間,在西南海岸平原區所呈現的地質構造意義。本研究推斷,位於研究區域西南方的沈降中心,自晚更新世後仍舊持續提供空間來接受大量的沉積物堆積;而位於東北方沿著基底面滑移的構造抬升活動,在約十萬年前就已經開始向西推移了。這些重要的地質研究結果,在填補上年代資料後,便可由原本靜態的地質現象轉變為對地質活動的探討。此外,近年來為減低因地質構造活動對人類造成的生命財產損失,所有可應用之定年方法-特別是螢光定年法,均投入活動斷層之研究,期望能對已知之地質構造提供更詳細的研究與資訊。本研究將螢光定年法分別應用在車籠埔與九芎坑斷層上,期許所得之長期滑移速率與斷層型態,可提供斷層活動性與再發周期之必要訊息。最後,基於適當的實驗測試條件,並針對不同環境進行些微的調整後,我們確信螢光定年法已能夠成功的應用於台灣西部之第四紀研究中。zh_TW
dc.description.abstractA hundred thousand years is but a short period in the earth’s history; however, it is the most momentous period for human beings. If scientists would like to predict the future, learning the trend of the past is the key and reliable chronological data are needed. In this study, the feasibility and applicability of luminescence methods are presented. As results from multiple tests of such methods have so far been successful in interpreting regional tectonics, confidence is what we have. Sequence stratigraphy and continuous chronological framework, especially from the luminescence dating, are integrated to investigate the accommodation space for specific drill sites in the southwestern coastal plain of Taiwan. It is concluded that tectonic subsidence has been operating since very late Pleistocene with a depo-centre located further southwestwards. Also a tectonic uplift due to detachment westward migration has been proposed to have occurred after 100 ka. Furthermore, in order to diminish losses in an earthquake, multiple dating methods, in particular focusing on the luminescence dating method, are employed in the studies to explore the details of active faults. The Chiuchiungkeng Fault and Chelungpu Fault have both been tested in this study to deduce the long-term slip rate and fault behavior. With evidence from successful applications employing appropriate experimental testing criteria, with minor adjustments for different areas, we conclude that the luminescence dating method has passed the acceptance criteria for Quaternary research in western Taiwan.en
dc.description.provenanceMade available in DSpace on 2021-06-14T16:49:41Z (GMT). No. of bitstreams: 1
ntu-97-F90224212-1.pdf: 4242444 bytes, checksum: 6a61b7ac559b7b5e4cfe75a0cd107480 (MD5)
Previous issue date: 2008
en
dc.description.tableofcontentsTable of Contents
Approval
Acknowledgements
Abstract
Table of Contents
List of Figures
List of Tables
Chapter 1 Introduction 1
1.1 Background 4
1.2 Luminescence dating 6
1.3 Study overview 8
Chapter 2 Methodology 11
2.1 Luminescence mechanism 12
2.2 Experiment 14
2.2.1 Facilities 14
2.2.2 Sample preparation 14
2.3 Natural dose rate 17
2.3.1 Natural radioactivity 17
2.3.2 Annual dose 19
2.4 Luminescence measurement 20
2.4.1 Multiple-aliquot methods 20
2.4.2 Single-aliquot methods 22
2.5 Relevant aspects of young geological materials in Taiwan 24
2.6 Relevant aspects of old geological materials in Taiwan 26
Chapter 3 Application 1: Luminescence dating of neotectonic activity on the active structures in southwesterncoastal plain, Taiwan 30
3.1 Introduction 31
3.2 Sampling sites and experimental treatment 33
3.3 Luminescence characteristics 33
3.3.1 Preheat and cutheat plateaus 33
3.3.2 Growth curves 36
3.3.3 Thermal transfer and dose recovery tests 37
3.4 Luminescence ages and discussion 38
3.4.1 Dose rates and ages 38
3.4.2 Comparison with Stratigraphy 39
3.5 Conclusion 40
Chapter 4 Application 2: Using OSL dates of quartz and feldspar to unravel sediment accumulation rates in a tectonically active foreland basin, southwestern Taiwan 43
4.1 Introduction 45
4.2 Geological environment and lithostratigraphic correlation 47
4.3 Samples and analytical facilities 48
4.4 Dosimetry 50
4.4.1 Quartz 51
4.4.2 Feldspar 52
4.5 Luminescence characteristics of quartz 53
4.5.1 The selection of preheat temperature 54
4.5.2 Laboratory dose response curve 55
4.5.3 Quartz ages 56
4.6 Luminescence characteristic of potassium feldspar 56
4.6.1 Dose recovery 57
4.6.2 Laboratory dose response curve 58
4.6.3 Uncorrected potassium feldspar ages 59
4.7 Fading measurement 59
4.7.1 Potassium feldspar 60
4.7.2 Quartz 62
4.8 Multiple aliquots measurement of quartz 65
4.9 Residual dose in modern samples 66
4.10 Discussion 67
4.10.1 OSL date comparison of quartz and feldspar 67
4.10.2 Pleistocene high sediment accumulation rates and thrust front migration 68
4.10.3 The existence of EW trending active structure 69
4.11 Conclusions 70
Chapter 5 Application 3: Long-term crustal movement caused by the Chiuchiungkeng Fault in southwestern Taiwan: constraints from luminescence dating 72
5.1. Introduction 73
5.2. Sampling sites and experimental treatment 76
5.2.1. Geomorphological features 76
5.2.2. Depositional environment and stratigraphy 76
5.2.3 Dose rate determination 79
5.3 Luminescence characteristics 81
5.3.1 Preheat plateaus 81
5.3.2 Dose recovery tests 82
5.3.3 Growth curve shape 83
5.3.4 SARA OSL method 84
5.3.5 Multiple aliquots method 87
5.4 Discussion 88
5.4.1 Borehole stratigraphy and luminescence ages 88
5.4.2 Behaviour of the Chiuchiungkeng Fault 90
5.5 Conclusions 92
Chapter 6 Application 4: The applications of luminescence method on paleoseismology and long-term slip rates of the 1999 Chi-Chi earthquake fault 93
6.1 The advantage of OSL method 94
6.2 The problems encountered in post Chi-Chi studies 96
6.3 Study strategy 97
6.4 Bleaching effects: the constraint from modern fluvial sediments 99
6.5 Results 100
6.5.1 Long-term slip rate along the earthquake fault 100
6.5.2 Paleoseismic events identified at the Pineapple site 101
6.6 Summary 103
Chapter 7 Conclusions 104
References 107
dc.language.isoen
dc.subject螢光定年法zh_TW
dc.subject活動構造zh_TW
dc.subject台灣西部zh_TW
dc.subject第四紀zh_TW
dc.subjectLuminescence Datingen
dc.subjectWestern Taiwanen
dc.subjectActive Structuresen
dc.subjectQuaternaryen
dc.title螢光定年法於台灣第四紀沈積物之定年研究:以台灣西部活動構造為例zh_TW
dc.titleLuminescence Dating on Quaternary Sediments: Cases of Active Structures in Western Taiwanen
dc.typeThesis
dc.date.schoolyear96-2
dc.description.degree博士
dc.contributor.oralexamcommittee陳文山教授,劉聰桂教授,劉平妹教授,魏國彥教授,朱傚祖博士,李錫堤副教授
dc.subject.keyword螢光定年法,第四紀,台灣西部,活動構造,zh_TW
dc.subject.keywordLuminescence Dating,Quaternary,Western Taiwan,Active Structures,en
dc.relation.page115
dc.rights.note有償授權
dc.date.accepted2008-07-31
dc.contributor.author-college理學院zh_TW
dc.contributor.author-dept地質科學研究所zh_TW
顯示於系所單位:地質科學系

文件中的檔案:
檔案 大小格式 
ntu-97-1.pdf
  未授權公開取用
4.14 MBAdobe PDF
顯示文件簡單紀錄


系統中的文件,除了特別指名其著作權條款之外,均受到著作權保護,並且保留所有的權利。

社群連結
聯絡資訊
10617臺北市大安區羅斯福路四段1號
No.1 Sec.4, Roosevelt Rd., Taipei, Taiwan, R.O.C. 106
Tel: (02)33662353
Email: ntuetds@ntu.edu.tw
意見箱
相關連結
館藏目錄
國內圖書館整合查詢 MetaCat
臺大學術典藏 NTU Scholars
臺大圖書館數位典藏館
本站聲明
© NTU Library All Rights Reserved