Mineralogical analysis of drill core Omok-1 at Omokoroa, Bay of Plenty

Altered pyroclastic (tephra) deposits are highly susceptible to landsliding, leading to fatalities and property damage every year. Halloysite, a low-activity clay mineral, is commonly associated with landslide-prone layers within altered tephra successions, especially in deposits with high sensitivity, which describes the post-failure strength loss. However, the precise role of halloysite in the development of sensitivity, and thus in sudden and unpredictable landsliding, is unknown. Here we show that an abundance of mushroom cap?shaped (MCS) spheroidal halloysite governs the development of sensitivity, and hence proneness to landsliding, in altered rhyolitic tephras, North Island, New Zealand. We found that a highly sensitive layer, which was involved in a flow slide, has a remarkably high content of aggregated MCS spheroids with substantial openings on one side. We suggest that short-range electrostatic and van der Waals interactions enabled the MCS spheroids to form interconnected aggregates by attraction between the edges of numerous paired silanol and aluminol sheets that are exposed in the openings and the convex silanol faces on the exterior surfaces of adjacent MCS spheroids. If these weak attractions are overcome during slope failure, multiple, weakly attracted MCS spheroids can be separated from one another, and the prevailing repulsion between exterior MCS surfaces results in a low remolded shear strength, a high sensitivity, and a high propensity for flow sliding. The evidence indicates that the attraction-detachment model explains the high sensitivity and contributes to an improved understanding of the mechanisms of flow sliding in sensitive, altered tephras rich in spheroidal halloysite.

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Cite this as

Kluger, Max Oke, Moon, Vicki G, Kreiter, Stefan, Lowe, David J, Churchman, G J, Hepp, Daniel A, Seibel, David, Jorat, Ehsan M, Mörz, Tobias (2017). Dataset: Mineralogical analysis of drill core Omok-1 at Omokoroa, Bay of Plenty. https://doi.org/10.1594/PANGAEA.871102

DOI retrieved: 2017

Additional Info

Field Value
Imported on November 30, 2024
Last update November 30, 2024
License CC-BY-3.0
Source https://doi.org/10.1594/PANGAEA.871102
Author Kluger, Max Oke
Given Name Max Oke
Family Name Kluger
More Authors
Moon, Vicki G
Kreiter, Stefan
Lowe, David J
Churchman, G J
Hepp, Daniel A
Seibel, David
Jorat, Ehsan M
Mörz, Tobias
Source Creation 2017
Publication Year 2017
Resource Type application/zip - filename: Kluger-etal_2017
Subject Areas
Name: Lithosphere

Related Identifiers
Title: A new attraction-detachment model for explaining flow sliding in clay-rich tephras
Identifier: https://doi.org/10.1130/G38560.1
Type: DOI
Relation: IsSupplementTo
Year: 2017
Source: Geology
Authors: Kluger Max Oke , Moon Vicki G , Kreiter Stefan , Lowe David J , Churchman G J , Hepp Daniel A , Seibel David , Jorat Ehsan M , Mörz Tobias .