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Fluid chemistry of veining associated with an ancient microearthquake swarm, Benmore Dam, New Zealand

2001· article· en· W2121628908 on OpenAlexaffabout
Cornel E.J. de Ronde, Richard H. Sibson, Christopher Bray, Kevin Faure

Bibliographic record

VenueGeological Society of America Bulletin · 2001
Typearticle
Languageen
FieldEarth and Planetary Sciences
Topicearthquake and tectonic studies
Canadian institutionsUniversity of Toronto
Fundersnot available
KeywordsMicroearthquakeGeologyInclusion (mineral)Library scienceArchaeologyGeographySeismologyComputer scienceMineralogy

Abstract

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Research Article| August 01, 2001 Fluid chemistry of veining associated with an ancient microearthquake swarm, Benmore Dam, New Zealand C.E.J. de Ronde; C.E.J. de Ronde 1Institute of Geological and Nuclear Sciences, P.O. Box 31-312, Lower Hutt, New Zealand Search for other works by this author on: GSW Google Scholar R.H. Sibson; R.H. Sibson 2Department of Geology, University of Otago, P.O. Box 56, Dunedin, New Zealand Search for other works by this author on: GSW Google Scholar C.J. Bray; C.J. Bray 3F. Gordon Smith Fluid Inclusion Laboratory, Department of Geology, University of Toronto, Toronto, Ontario M5S 3B1, Canada Search for other works by this author on: GSW Google Scholar K. Faure K. Faure 4Institute of Geological and Nuclear Sciences, P.O. Box 31-312, Lower Hutt, New Zealand Search for other works by this author on: GSW Google Scholar Author and Article Information C.E.J. de Ronde 1Institute of Geological and Nuclear Sciences, P.O. Box 31-312, Lower Hutt, New Zealand R.H. Sibson 2Department of Geology, University of Otago, P.O. Box 56, Dunedin, New Zealand C.J. Bray 3F. Gordon Smith Fluid Inclusion Laboratory, Department of Geology, University of Toronto, Toronto, Ontario M5S 3B1, Canada K. Faure 4Institute of Geological and Nuclear Sciences, P.O. Box 31-312, Lower Hutt, New Zealand Publisher: Geological Society of America Received: 21 Dec 1998 Revision Received: 12 Jun 2000 Accepted: 14 Aug 2000 First Online: 01 Jun 2017 Online ISSN: 1943-2674 Print ISSN: 0016-7606 Geological Society of America GSA Bulletin (2001) 113 (8): 1010–1024. https://doi.org/10.1130/0016-7606(2001)113<1010:FCOVAW>2.0.CO;2 Article history Received: 21 Dec 1998 Revision Received: 12 Jun 2000 Accepted: 14 Aug 2000 First Online: 01 Jun 2017 Cite View This Citation Add to Citation Manager Share Icon Share Facebook Twitter LinkedIn Email Permissions Search Site Citation C.E.J. de Ronde, R.H. Sibson, C.J. Bray, K. Faure; Fluid chemistry of veining associated with an ancient microearthquake swarm, Benmore Dam, New Zealand. GSA Bulletin 2001;; 113 (8): 1010–1024. doi: https://doi.org/10.1130/0016-7606(2001)113<1010:FCOVAW>2.0.CO;2 Download citation file: Ris (Zotero) Refmanager EasyBib Bookends Mendeley Papers EndNote RefWorks BibTex toolbar search Search Dropdown Menu toolbar search search input Search input auto suggest filter your search All ContentBy SocietyGSA Bulletin Search Advanced Search Abstract Steeply dipping strata in the vicinity of Benmore Dam, Otago, New Zealand, are complexly deformed metasedimentary rocks of the Torlesse Supergroup (Middle Triassic age). Over an exposed area ∼100 m wide × 25 m high, these strata are disrupted by a fault-fracture mesh comprising conjugate Coulomb shears interlinked by extensional and extensional-shear fractures, all formed in a common stress field and hosting quartz + prehnite ± epidote ± calcite veining. The combined effect of these structures is shortening perpendicular to beddings and subvertical extension so that in their present attitude, they correspond to a set of conjugate thrust faults with associated extension fractures. On the evidence of incremental vein textures, the development of this distributed fault-fracture mesh is interpreted as resulting from a fluid-driven microearthquake swarm, which postdated regional low-grade metamorphism. Mechanical considerations suggest that the migrating hydrothermal fluids were significantly overpressured, possibly to approximately lithostatic values, if the mesh structure developed in its present attitude.Fluid-inclusion microthermometric studies show that Benmore vein quartz contains two-phase aqueous inclusions with salinities between 1.4 and 2.9 wt% NaCl equivalent and homogenization temperatures (Th) between 189 and 217 °C. The assemblage quartz + prehnite + epidote suggests trapping temperatures (Tt) of ∼280 °C, requiring the addition of an ∼70 °C correction to Th values. Late calcite contains inclusions with noticeably lower salinity (0.0–0.9 wt% NaCl) and Th values (129–175 °C). Studies on quartz + pumpellyite ± calcite veins from nearby Lake Aviemore show similar fluid-inclusion salinity and Th values.Fluid-inclusion gas analyses show all the vein samples to be dominated by H2O (99.3–99.9 mol%) with few other gases apparent, including CH4 (≤0.5%), N2 (≤0.1%), CO2 (≤0.1%), and C2-C4 hydrocarbons. Cation and anion analyses, when combined with the gas data, show that NaCl dominates the fluid-inclusion salinities. Oxygen isotope results, when combined with calculated Tt values, indicate that the water responsible for the deposition of Benmore and Aviemore quartz had δ18O compositions of 9.4‰ and 4.8‰, respectively. Calcite δ13C values between−25.3‰ and−38.0‰ are indicative of oxidation of CH4 to CO2 as a result of hydrothermal fluids interacting with organic- rich sediments. Fluid-inclusion \({\delta}D_{H_{2}O}\) values for Benmore range between −73‰ and −89‰ compared to−109‰ for the one Aviemore sample.This research has demonstrated that (1) water of meteoric origin, probably from subantarctic latitudes, penetrated to ≥6 km depth and underwent an oxygen isotope shift before depositing the Benmore-Aviemore veins; (2) the migrating hydrothermal fluids were likely overpressured well above hydrostatic to near lithostatic values if the mesh structure was active in its present orientation; and, (3) fluid migration was coupled to distributed brittle failure in the prevailing stress field, "self-generating" a permeable fault-fracture mesh. You do not have access to this content, please speak to your institutional administrator if you feel you should have access.

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How this classification was reachedexpand

Full frame distilled prediction

Teacher imitation

Not calibrated prevalence, not ground truth. Human validation pending. Learned from the 10,348 direct Codex labels and 10,348 direct Gemma labels. Candidate is the union of thresholded teacher heads; consensus is their intersection. These outputs are machine_predicted_unvalidated and are not human labels or direct frontier model labels.

metaresearch head score (Codex)0.000
metaresearch head score (Gemma)0.000
Version: codex-gemma-dda1882f352aValidation status: machine_predicted_unvalidated
Candidate categoriesInsufficient payload (model declined to judge)
Consensus categoriesnone
DomainCandidate signal: none · Consensus signal: none
Study designCandidate signal: Observational · Consensus signal: Observational
GenreCandidate signal: Empirical · Consensus signal: Empirical
Teacher disagreement score0.047
Threshold uncertainty score0.994

Codex and Gemma teacher scores by category

CategoryCodexGemma
Metaresearch0.0000.000
Meta-epidemiology (narrow)0.0000.000
Meta-epidemiology (broad)0.0000.000
Bibliometrics0.0000.000
Science and technology studies0.0000.001
Scholarly communication0.0000.000
Open science0.0000.000
Research integrity0.0000.000
Insufficient payload (model declined to judge)0.0070.000

Machine scores (provisional)

The two teacher heads of the student model, read on this work. A score orders the frame for review; it never asserts a category, and the validation status ships verbatim with every row.

Baseline scores from an immature model (maturity gate not passed, 7 training rounds). Scores rank; they never assert a category.

Opus teacher head0.014
GPT teacher head0.204
Teacher spread0.190 · how far apart the two teachers sit on this one work
Validation statusscore_only:v0-immature-baseline · verbatim from the scoring run: score_only means the number may rank works, and no category label ships from it

Classification

machine, unvalidated

Machine predicted; a candidate call from one teacher head, not a consensus.

Study designObservational
Domainnot available
GenreEmpirical

How this classification was reached, model by model and score by score, is at the end of the page under "How this classification was reached".

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Citations24
Published2001
Admission routes2
Has abstractyes

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