Discussion on estimates of the amount and rate of sea-level change across the Rhaetian–Hettangian and Pliensbachian–Toarcian boundaries (latest Triassic to Early Jurassic)
J. C. W. Cope writes: Hallam’s (1997) paper provides some interesting ideas about sea-level change in the Early Jurassic.His accordance of equal durations to ammonite zones and subzones may distort the picture somewhat, but I would agree that it does allow the overall calculations to be in the right...
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Published in | Journal of the Geological Society Vol. 155; no. 2; pp. 421 - 422 |
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Main Authors | , |
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Language | English |
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The Geological Society of London
01.03.1998
Geological Society Geological Society Publishing House |
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Abstract | J. C. W. Cope writes: Hallam’s (1997) paper provides some interesting ideas about sea-level change in the Early Jurassic.His accordance of equal durations to ammonite zones and subzones may distort the picture somewhat, but I would agree that it does allow the overall calculations to be in the right order of magnitude. One of the subjects which Hallam discusses is an estimation of the time taken to deposit the Yorkshire JeRock. On the basis of the fact that it lasts one ammonite subzone, equal division of the Gradstein et al. 1994 time-scale would give it a duration of c. 630 000 years, as shown by Hallam (1997), but Hallam’s calculations from laminations suggested 3.5 Ma— a factor close to five times the other, as noted by Hallam (1997, p. 776).
The most recent account of this succession of laminated bituminous shales, which total 7.53 m thick in the Whitby area, is by Howarth (1992). Hallam (1967) concluded that the laminae were probably annual, and in the same paper recorded the organic laminae as about 20 3m in average thickness and the interlaminated clays as varying from 20 to 50µm. The figure Hallam (1997) quotes for the average thickness of a bituminous shale/clay coupleted is 50µm. In a thickness of the 7 m he calculated that there would be 3 500 000 such couplets (p. 776), which led him to dismiss the idea that the couplets could be annual as their.number exceeded the time calculated by a factor of five However |
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AbstractList | J. C. W. Cope
writes: Hallam’s (1997) paper provides some interesting ideas about sea-level change in the Early Jurassic.His accordance of equal durations to ammonite zones and subzones may distort the picture somewhat, but I would agree that it does allow the overall calculations to be in the right order of magnitude. One of the subjects which Hallam discusses is an estimation of the time taken to deposit the Yorkshire JeRock. On the basis of the fact that it lasts one ammonite subzone, equal division of the Gradstein
et al.
1994 time-scale would give it a duration of
c.
630 000 years, as shown by
Hallam (1997)
, but Hallam’s calculations from laminations suggested 3.5 Ma— a factor close to five times the other, as noted by Hallam (1997, p. 776).
The most recent account of this succession of laminated bituminous shales, which total 7.53 m thick in the Whitby area, is by
Howarth (1992)
.
Hallam (1967)
concluded that the laminae were probably annual, and in the same paper recorded the organic laminae as about 20 3m in average thickness and the interlaminated clays as varying from 20 to 50µm. The figure
Hallam (1997)
quotes for the average thickness of a bituminous shale/clay coupleted is 50µm. In a thickness of the 7 m he calculated that there would be 3 500 000 such couplets (p. 776), which led him to dismiss the idea that the couplets could be annual as their.number exceeded the time calculated by a factor of five However Cope discusses an article by Hallam (1997) on sea-level change in the Early Jurassic, arguing that his accordance of equal durations to ammonite zones and subzones may distort the picture somewhat. Hallam responds. J. C. W. Cope writes: Hallam’s (1997) paper provides some interesting ideas about sea-level change in the Early Jurassic.His accordance of equal durations to ammonite zones and subzones may distort the picture somewhat, but I would agree that it does allow the overall calculations to be in the right order of magnitude. One of the subjects which Hallam discusses is an estimation of the time taken to deposit the Yorkshire JeRock. On the basis of the fact that it lasts one ammonite subzone, equal division of the Gradstein et al. 1994 time-scale would give it a duration of c. 630 000 years, as shown by Hallam (1997), but Hallam’s calculations from laminations suggested 3.5 Ma— a factor close to five times the other, as noted by Hallam (1997, p. 776). The most recent account of this succession of laminated bituminous shales, which total 7.53 m thick in the Whitby area, is by Howarth (1992). Hallam (1967) concluded that the laminae were probably annual, and in the same paper recorded the organic laminae as about 20 3m in average thickness and the interlaminated clays as varying from 20 to 50µm. The figure Hallam (1997) quotes for the average thickness of a bituminous shale/clay coupleted is 50µm. In a thickness of the 7 m he calculated that there would be 3 500 000 such couplets (p. 776), which led him to dismiss the idea that the couplets could be annual as their.number exceeded the time calculated by a factor of five However |
Author | HALLAM, A COPE, J. C. W |
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Keywords | Upper Triassic Mesozoic changes of level middle Liassic ammonoids biozones laminations Triassic Pliensbachian Hettangian clastic rocks shale eustacy Rhaetian Lias Lower Jurassic Toarcian Cephalopoda Jurassic sedimentary rocks upper Liassic marine environment cephalopods lower Liassic Invertebrata Mollusca Phanerozoic biostratigraphy |
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References | (b3-1550421); 99, B12 Snelling N. J. The chronology of the geological record 1985 10 Memoir Geological Society of London Cope J.C.W. , Hailwood E. A. , Kidd R. B. High resolution biostratigraphy High Resolution Stratigraphy 1993 70 London Geological Society 257 265 Special Publications Howarth M. K. The ammonite family Hildoceratidae in the Lower Jurassic of Great Britain 1992 London Monograph of the Palaeontographical Society Brinkmann, R. 1929. Statistisch-biostratigraphische Untersuchungen an mitteljurassischen Ammoniten über ArtebegriVund Stammesentwicklung. Abhandlungen der Gesellschaft der Wissenschaft, Göttingen, mathematische und physische Klasse. N. F. 13 Harland W. B. , Armstrong R. L. , Cox A. V. , Craig L. E. , Smith A. G. , Smith D. G. A geologic time scale 1989 1990 Cambridge University Press (b4-1550421) 1967; B252 (b5-1550421) 1997; 154 Gradstein F. M. (e_1_2_1_4_1); 99 e_1_2_1_6_1 Cope J.C.W. (e_1_2_1_3_1) 1993 Hallam A. (e_1_2_1_5_1) 1967; 252 Harland W. B. (e_1_2_1_7_1) 1990 Snelling N. J. (e_1_2_1_9_1) 1985 e_1_2_1_2_1 Howarth M. K. (e_1_2_1_8_1) 1992 |
References_xml | – volume: B252 start-page: 393 year: 1967 end-page: 445 ident: b4-1550421 article-title: An environmental study of the Upper Domerian and Lower Toarcian in Great Britain publication-title: Philosophical Transactions of the Royal Society, London – reference: Brinkmann, R. 1929. Statistisch-biostratigraphische Untersuchungen an mitteljurassischen Ammoniten über ArtebegriVund Stammesentwicklung. Abhandlungen der Gesellschaft der Wissenschaft, Göttingen, mathematische und physische Klasse. N. F. 13 – reference: Howarth M. K. The ammonite family Hildoceratidae in the Lower Jurassic of Great Britain 1992 London Monograph of the Palaeontographical Society – reference: Snelling N. J. The chronology of the geological record 1985 10 Memoir Geological Society of London – reference: Harland W. B. , Armstrong R. L. , Cox A. V. , Craig L. E. , Smith A. G. , Smith D. G. A geologic time scale 1989 1990 Cambridge University Press – reference: Cope J.C.W. , Hailwood E. A. , Kidd R. B. High resolution biostratigraphy High Resolution Stratigraphy 1993 70 London Geological Society 257 265 Special Publications – volume: 99, B12 start-page: 24 051 end-page: 24 074 ident: b3-1550421 article-title: A Mesozoic time scale publication-title: Journal of Geophysical Research – volume: 154 start-page: 773 year: 1997 end-page: 779 ident: b5-1550421 article-title: Estimates of the amount and rate of sea-level change across the Rhaetian–Hettangian and Pliensbachian–Toarcian boundaries (latest Triassic to early Jurassic) publication-title: Journal of the Geological Society, London – ident: e_1_2_1_2_1 – start-page: 257 volume-title: High Resolution Stratigraphy year: 1993 ident: e_1_2_1_3_1 – volume: 252 start-page: 393 year: 1967 ident: e_1_2_1_5_1 article-title: An environmental study of the Upper Domerian and Lower Toarcian in Great Britain publication-title: Philosophical Transactions of the Royal Society, London – volume-title: A geologic time scale 1989 year: 1990 ident: e_1_2_1_7_1 – volume-title: The ammonite family Hildoceratidae in the Lower Jurassic of Great Britain year: 1992 ident: e_1_2_1_8_1 – ident: e_1_2_1_6_1 doi: 10.1144/gsjgs.154.5.0773 – volume-title: The chronology of the geological record year: 1985 ident: e_1_2_1_9_1 – volume: 99 start-page: 24 051 ident: e_1_2_1_4_1 article-title: A Mesozoic time scale publication-title: Journal of Geophysical Research doi: 10.1029/94JB01889 |
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Snippet | J. C. W. Cope writes: Hallam’s (1997) paper provides some interesting ideas about sea-level change in the Early Jurassic.His accordance of equal durations to... J. C. W. Cope writes: Hallam’s (1997) paper provides some interesting ideas about sea-level change in the Early Jurassic.His accordance of equal durations to... Cope discusses an article by Hallam (1997) on sea-level change in the Early Jurassic, arguing that his accordance of equal durations to ammonite zones and... |
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SubjectTerms | Earth sciences Earth, ocean, space Exact sciences and technology Geological time Geology Jurassic Marine Oceans Sea level Stratigraphy Triassic |
Title | Discussion on estimates of the amount and rate of sea-level change across the Rhaetian–Hettangian and Pliensbachian–Toarcian boundaries (latest Triassic to Early Jurassic) |
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