Title of article :
Shallow-seated controls on styles of explosive basaltic volcanism: a case study from New Zealand
Author/Authors :
Houghton، نويسنده , , B.F. and Wilson، نويسنده , , C.J.N and Smith، نويسنده , , I.E.M، نويسنده ,
Issue Information :
روزنامه با شماره پیاپی سال 1999
Pages :
24
From page :
97
To page :
120
Abstract :
The pyroclastic deposits of many basaltic volcanic centres show abrupt transitions between contrasting eruptive styles, e.g., Hawaiian versus Strombolian, or `dryʹ magmatic versus `wetʹ phreatomagmatic. These transitions are controlled dominantly by variations in degassing patterns, magma ascent rates and degrees of interaction with external water. We use Crater Hill, a 29 ka explosive/effusive monogenetic centre in the Auckland volcanic field, New Zealand, as a case study of the transitions between these end-member eruptive styles. The Crater Hill eruption took place from at least 4 vents spaced along a NNE-trending, 600-m-long fissure that is contained entirely within a tuff ring generated during the earliest eruption phases. Early explosive phases at Crater Hill were characterised by eruption from multiple unstable and short-lived vents; later, dominantly extrusive, volcanism took place from a more stable point source. Most of the Crater Hill pyroclastic deposits were formed in 3 phreatomagmatic (P) and 4 `dryʹ magmatic (M) episodes, forming in turn the outer tuff ring and maar crater (P1, M1, P2) and scoria cone 1 (M2–M4). This activity was followed by formation of a lava shield and scoria cone 2. Purely `wetʹ activity is represented by the bulk of P1 and P2, and purely `dryʹ activity by much of M2–M4. However, M1 and parts of M2 and M4 show evidence for simultaneous eruptions of differing style from adjacent vents and rapid variations in the extent and timing of magma:water interaction at each vent. The nature of the wall-rock lithics, and these rapid variations in inferred water/magma ratios imply interaction was occurring mostly at depths of ≤80 m, and the vesicularity patterns in juvenile clasts from these and the P beds imply that rapid degassing occurred at these shallow levels. We suggest that abrupt transitions between eruptive styles, in time and space, at Crater Hill were linked to changes in the local magma supply rate and patterns and vigour of degassing during the final metres of ascent.
Keywords :
Crater Hill centre , basaltic explosive volcanism , Vesiculation , Strombolian , Phreatomagmatic , Auckland Volcanic Field , Hawaiian
Journal title :
Journal of Volcanology and Geothermal Research
Serial Year :
1999
Journal title :
Journal of Volcanology and Geothermal Research
Record number :
2247111
Link To Document :
بازگشت