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- W3041334390 abstract "Hyaloclastites commonly form high-quality reservoir rocks in volcanic geothermal provinces. Here, we investigated the effects of confinement due to burial following prolonged accumulation of eruptive products on the physical and mechanical evolution of surficial and subsurface (depths of 70 m, 556 m, and 732 m) hyaloclastites from Krafla volcano, Iceland. Upon loading in a hydrostatic cell, the porosity and permeability of the surficial hyaloclastite decreased linearly with mean effective stress, as pores and cracks closed due to elastic (recoverable) compaction up to 22-24 MPa (equivalent to ~1.3 km depth in the reservoir). Beyond this mean effective stress, denoted as <mml:math xmlns:mml=http://www.w3.org/1998/Math/MathML id=M1><mml:msup><mml:mrow><mml:mi>P</mml:mi></mml:mrow><mml:mrow><mml:mo>∗</mml:mo></mml:mrow></mml:msup></mml:math>, we observed accelerated porosity and permeability reduction with increasing confinement, as the rock underwent permanent inelastic compaction. In comparison, the porosity and permeability of the subsurface core samples were less sensitive to mean effective stress, decreasing linearly with increasing confinement as the samples compacted elastically within the conditions tested (to 40 MPa). Although the surficial material underwent permanent, destructive compaction, it maintained higher porosity and permeability than the subsurface hyaloclastites throughout the experiments. We constrained the evolution of yield curves of the hyaloclastites, subjected to different effective mean stresses in a triaxial press. Surficial hyaloclastites underwent a brittle-ductile transition at an effective mean stress of ~10.5 MPa, and peak strength (differential stress) reached 13 MPa. When loaded to effective mean stresses of 33 and 40 MPa, the rocks compacted, producing new yield curves with a brittle-ductile transition at ~12.5 and ~19 MPa, respectively, but showed limited strength increase. In comparison, the subsurface samples were found to be much stronger, displaying higher strengths and brittle-ductile transitions at higher effective mean stresses (i.e., 37.5 MPa for 70 m sample, >75 MPa for 556 m, and 68.5 MPa for 732 m) that correspond to their lower porosities and permeabilities. Thus, we conclude that compaction upon burial alone is insufficient to explain the physical and mechanical properties of the subsurface hyaloclastites present in the reservoir at Krafla volcano. Mineralogical alteration, quantified using SEM-EDS, is invoked to explain the further reduction of porosity and increase in strength of the hyaloclastite in the active geothermal system at Krafla." @default.
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- W3041334390 date "2020-07-11" @default.
- W3041334390 modified "2023-10-17" @default.
- W3041334390 title "Compaction of Hyaloclastite from the Active Geothermal System at Krafla Volcano, Iceland" @default.
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- W3041334390 cites W1950014770 @default.
- W3041334390 cites W1979023198 @default.
- W3041334390 cites W1979720859 @default.
- W3041334390 cites W1981002526 @default.
- W3041334390 cites W1984823209 @default.
- W3041334390 cites W1985748046 @default.
- W3041334390 cites W2000099665 @default.
- W3041334390 cites W2001680486 @default.
- W3041334390 cites W2006600404 @default.
- W3041334390 cites W2007988185 @default.
- W3041334390 cites W2012816916 @default.
- W3041334390 cites W2015458782 @default.
- W3041334390 cites W2016726988 @default.
- W3041334390 cites W2017071083 @default.
- W3041334390 cites W2019142132 @default.
- W3041334390 cites W2025058024 @default.
- W3041334390 cites W2026203425 @default.
- W3041334390 cites W2027065708 @default.
- W3041334390 cites W2029616746 @default.
- W3041334390 cites W2031937232 @default.
- W3041334390 cites W2032339448 @default.
- W3041334390 cites W2036767323 @default.
- W3041334390 cites W2037663517 @default.
- W3041334390 cites W2042630214 @default.
- W3041334390 cites W2053131135 @default.
- W3041334390 cites W2060393110 @default.
- W3041334390 cites W2060471784 @default.
- W3041334390 cites W2061560743 @default.
- W3041334390 cites W2061910299 @default.
- W3041334390 cites W2067854105 @default.
- W3041334390 cites W2068208294 @default.
- W3041334390 cites W2068328265 @default.
- W3041334390 cites W2072535043 @default.
- W3041334390 cites W2073231907 @default.
- W3041334390 cites W2085944831 @default.
- W3041334390 cites W2091953897 @default.
- W3041334390 cites W2097471771 @default.
- W3041334390 cites W2109030789 @default.
- W3041334390 cites W2111635269 @default.
- W3041334390 cites W2115730736 @default.
- W3041334390 cites W2125871441 @default.
- W3041334390 cites W2130409464 @default.
- W3041334390 cites W2147003881 @default.
- W3041334390 cites W2147209269 @default.
- W3041334390 cites W2176385875 @default.
- W3041334390 cites W2194324554 @default.
- W3041334390 cites W2293760007 @default.
- W3041334390 cites W2413830464 @default.
- W3041334390 cites W2502217431 @default.
- W3041334390 cites W2611449124 @default.
- W3041334390 cites W2734818192 @default.
- W3041334390 cites W2773217588 @default.
- W3041334390 cites W2791627239 @default.
- W3041334390 cites W2792017978 @default.
- W3041334390 cites W2796658613 @default.
- W3041334390 cites W2890520591 @default.
- W3041334390 cites W2891133980 @default.
- W3041334390 cites W2902151864 @default.
- W3041334390 cites W2921004701 @default.
- W3041334390 cites W2944873233 @default.
- W3041334390 cites W2974948760 @default.
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- W3041334390 doi "https://doi.org/10.1155/2020/3878503" @default.
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