An Analysis Of Sedimentation Rates And Cyclicity In The Laminated Sediments Of Santa Monica Basin California Continental Borderland PDF Download

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Palaeoclimatology and Palaeoceanography from Laminated Sediments

Palaeoclimatology and Palaeoceanography from Laminated Sediments
Author: Alan E. S. Kemp
Publisher: Geological Society of London
Total Pages: 278
Release: 1996
Genre: Nature
ISBN: 9781897799673

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The magnitude and causes of decadal to century-scale changes in climate are major issues of global concern. The separation of anthropogenically driven change from natural 'baseline' variability within the atmosphere/ocean system is a prerequisite to identifying human impact on global climate. An understanding of past climate variability is therefore a key to predicting future climate change. The sedimentary record of the oceans, seas and lakes is produced by a series of depositional events that occur on seasonal timescales but can rarely be resolved due to mixing of the sediment by bottomdwelling organisms. Where they are preserved, laminated sediments act like tree rings to record these seasonal-scale processes, such as plankton blooms and floods, and provide a uniquely high-resolution record of environmental change. In addition, annually laminated or 'varved' sediment sequences act as geochronometers against which other timescales can be tested. Laminated sediments may therefore be used to develop records of interannual and decadal-scale variability which serve to test models of climate change. The authors cover a range of topics that include strategies for study and techniques of analysis. A series of case studies, dealing with a variety of lacustrine and marine records, illustrates the wide potential of laminated sediments as palaeoclimatic and palaeoceanographic indicators.


High Resolution Studies of Basin Sedimentation Related to Climatic-Oceanographic Changes Over the Past 50,000 Years in the California Continental Borderland

High Resolution Studies of Basin Sedimentation Related to Climatic-Oceanographic Changes Over the Past 50,000 Years in the California Continental Borderland
Author: Donn S. Gorsline
Publisher:
Total Pages: 32
Release: 1975
Genre: California
ISBN:

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Analysis of cores collected from representative California Borderland basins shows that the factors influenced by climatic factors (water temperature, biological activity) show fluctuations that match those noted in deep ocean sediments. Times of cold climate and lowered sealevel also coincide with times of markedly higher sediment contribution. The peaks of this detrital contribution are sharply defined and occur at times of coldest temperature. They rapidly decline with the warming portion of the cycle. The effect of this input dilutes the more regular cycle of biological productivity to produce the apparent carbonate and carbon content of the basin cores. Thus, when the carbonate content is low, the calcium carbonate rate of sedimentation was actually faster than present but was overwhelmed by the associated pulse of terrigenous sedimentation. Similarly, the slight lag between carbon input carbonate input and sediment contribution exaggerates the difference in time of maxima in organic carbon versus carbonate carbon contents of the basin sediments. A need for a higher resolution time scale for refining the cyclicity of the sedimentation rates of individual components and the resulting combined effects is evident. (Author).


SIO Reference

SIO Reference
Author:
Publisher:
Total Pages: 342
Release: 1996
Genre: Oceanography
ISBN:

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Late Pleistocene Sedimentary History of Continental Borderland Basins Off Baja California and Southern California: Changes in Terrigenous and Biogenic Sedimentation Rates

Late Pleistocene Sedimentary History of Continental Borderland Basins Off Baja California and Southern California: Changes in Terrigenous and Biogenic Sedimentation Rates
Author: Donn S. Gorsline
Publisher:
Total Pages: 12
Release: 1976
Genre:
ISBN:

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Analysis of sediment cores yields a record of sedimentary history for the past 35,000 years and includes a complete cold to warm climate cycle. Sedimentation rates have been calculated using open ocean records as a dating tool plus some radiocarbon dates and data from micropaleontologic and oxygen isotopic data. These show that sedimentation rates have varied several fold and that the main effect is exerted by the terrigenous continental input. Pelagic biogenic input has also varied in parallel with the terrigenous contribution but at much lower rates. Organic carbon content parallels carbonate and shows a slight offset in terms of percent of total sediment due to terrigenous dilution and also to rapidity of burial. Slower rates over the past 6000 years have produced lower buried carbon values. Variations appear to be synchronous with the deep ocean record. (Author).