4.5 Article

Meandering flow of a pyroclastic density current documented by the anisotropy of magnetic susceptibility (AMS) in the quartz latite ignimbrite of the Pleistocene Monte Cimino volcanic centre (central Italy)

Journal

TECTONOPHYSICS
Volume 466, Issue 1-2, Pages 64-78

Publisher

ELSEVIER
DOI: 10.1016/j.tecto.2008.09.009

Keywords

AMS; Ignimbrite; Pyroclastic flow direction; Cimini; High-field AMS

Funding

  1. Monash University research funds
  2. Australian International Postgraduate Research Scholarship
  3. Monash Graduate Scholarship
  4. Australian National University (AMU)

Ask authors/readers for more resources

A pattern of shifting current direction is revealed by the anisotropy of magnetic susceptibility (AMS) in the quartz latite ignimbrite associated with the Pleistocene Cimini dome complex in central Italy. High-field AMS documents that both. paramagnetic and ferrimagnetic minerals contribute to the magnetic fabric of the ignimbrite. The results of low field AMS studies suggest that the pyroclastic density current changed both direction and character during deposition of each flow unit that makes up the ignimbrite. The meandering behaviour of the currents can be observed on the scale of 15-cm increments in the fine-grained basal 'layer 2a' of one flow unit in an area lacking significant palaeotopography. AMS data from 1-, 2-, and 4-metre increments through the flow units also show complex changes in flow direction throughout the deposition of each unit studied. The most closely aligned AMS fabrics occur near the bases of flow units, and dispersion increases upward. This trend may represent decreased shear between the flow and the substrate or increased turbulence in the upper depositional zone of the pyroclastic density current, or both, suggesting a progressively waning current (in terms of capacity or particle concentration). The phenomena observed in this study have broad implications for the general methodology of ANIS studies. Detailed vertical profiles made up of several individual sample sites within 1-metre thickness intervals can reveal small-scale current flow variations that may not be evident if sampling is done more sparsely. (C) 2008 Elsevier B.V. All rights reserved.

Authors

I am an author on this paper
Click your name to claim this paper and add it to your profile.

Reviews

Primary Rating

4.5
Not enough ratings

Secondary Ratings

Novelty
-
Significance
-
Scientific rigor
-
Rate this paper

Recommended

No Data Available
No Data Available