TY - JOUR
T1 - Quantitative compaction trends of Miocene to Holocene carbonates off the west coast of Australia
AU - Lee, E. Y.
AU - Kominz, M.
AU - Reuning, L.
AU - Gallagher, S. J.
AU - Takayanagi, H.
AU - Ishiwa, T.
AU - Knierzinger, W.
AU - Wagreich, M.
N1 - Funding Information:
This work was supported by K-IODP by the Ministry of Oceans and Fisheries, Korea [E.Y.L., W.K., M.W.]; Brain Pool program funded by the Ministry of Science and ICT through the NRF of Korea [2017H1D3A1A01054745; E.Y.L.], the German Science Foundation [D.F.G., 320220579; L.R.], the Australian IODP office and the ARC Basins Genesis Hub [IH130200012; S.J.G.]. This research used data and samples provided by the IODP Expedition 356. We thank the shipboard scientists, officers, technicians, engineers and crew members of JOIDES Resolution for their invaluable assistance and critical contributions. We would like to thank the Editor and two reviewers for their valuable comments, which significantly improved this manuscript.
Publisher Copyright:
© 2021 Geological Society of Australia.
PY - 2021
Y1 - 2021
N2 - In this paper, we describe porosity variations in Miocene to Holocene carbonates off the west coast of Australia and assess their compaction trends. The porosity values were measured using discrete samples of Sites U1459–U1464 obtained by the International Ocean Discovery Program Expedition 356. The carbonate deposits have been influenced by a range of textures and diagenetic conditions throughout a nearly continuous sequence of geological ages from the Miocene to Holocene and at core depths from 0 to 1100 m below the seafloor. The collected samples were mostly grainstone, packstone, wackestone and mudstone textures. Dolostones and dolomitic carbonates were described at the Miocene intervals. Compaction trends were estimated exponentially and linearly based on cored sites, carbonate textures and dominant mineralogies (dolomite, calcite/aragonite). At all six sites, porosity distribution and reduction were generally depth-dependent. The porosity converged to about 30% between 750 and 1100 m, which suggests that the carbonates were close to the densest packing by mechanical compaction at a burial depth of ∼750 m. The porosity deviations are associated with textures and dominant mineralogies. Increasing mud content from grainstone to mudstone is a controlling factor for initial porosity and porosity reduction rate. Dolomitisation, dolomitic cementation, aragonite needle-rich mud and non-skeletal grains cause deviations from the depth-dependent compaction trends. Reflux-related cementation generally decreases porosity in Miocene dolomitic intervals. Higher porosity values of the Quaternary wackestone and mudstone at Site U1461 resulted from the presence of aragonite needle-rich mud hosting abundant micropores and from a high sedimentation rate. The occurrence of non-skeletal grains, such as ooids and peloids, as well as occasional meteoric exposure led to porosity inversion, occluding interparticle permeability and the creation of moldic pores.KEY POINTS Porosity variations of Miocene–Holocene carbonates off the west Australian coast are primarily depth-dependent. Mechanical compaction affected porosity reduction down to a value of ∼30% at a burial depth of ∼750 m. Differences in texture-based compaction trends were affected by increasing mud content. Major porosity deviations are associated with dolomitisation, dolomitic cementation, aragonite needle-rich mud and non-skeletal grains.
AB - In this paper, we describe porosity variations in Miocene to Holocene carbonates off the west coast of Australia and assess their compaction trends. The porosity values were measured using discrete samples of Sites U1459–U1464 obtained by the International Ocean Discovery Program Expedition 356. The carbonate deposits have been influenced by a range of textures and diagenetic conditions throughout a nearly continuous sequence of geological ages from the Miocene to Holocene and at core depths from 0 to 1100 m below the seafloor. The collected samples were mostly grainstone, packstone, wackestone and mudstone textures. Dolostones and dolomitic carbonates were described at the Miocene intervals. Compaction trends were estimated exponentially and linearly based on cored sites, carbonate textures and dominant mineralogies (dolomite, calcite/aragonite). At all six sites, porosity distribution and reduction were generally depth-dependent. The porosity converged to about 30% between 750 and 1100 m, which suggests that the carbonates were close to the densest packing by mechanical compaction at a burial depth of ∼750 m. The porosity deviations are associated with textures and dominant mineralogies. Increasing mud content from grainstone to mudstone is a controlling factor for initial porosity and porosity reduction rate. Dolomitisation, dolomitic cementation, aragonite needle-rich mud and non-skeletal grains cause deviations from the depth-dependent compaction trends. Reflux-related cementation generally decreases porosity in Miocene dolomitic intervals. Higher porosity values of the Quaternary wackestone and mudstone at Site U1461 resulted from the presence of aragonite needle-rich mud hosting abundant micropores and from a high sedimentation rate. The occurrence of non-skeletal grains, such as ooids and peloids, as well as occasional meteoric exposure led to porosity inversion, occluding interparticle permeability and the creation of moldic pores.KEY POINTS Porosity variations of Miocene–Holocene carbonates off the west Australian coast are primarily depth-dependent. Mechanical compaction affected porosity reduction down to a value of ∼30% at a burial depth of ∼750 m. Differences in texture-based compaction trends were affected by increasing mud content. Major porosity deviations are associated with dolomitisation, dolomitic cementation, aragonite needle-rich mud and non-skeletal grains.
KW - aragonite
KW - carbonates
KW - compaction trend
KW - dolomite
KW - IODP Sites U1459–U1464
KW - Northern Carnarvon Basin
KW - offshore Western Australia
KW - Perth Basin
KW - porosity
KW - Roebuck Basin
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U2 - 10.1080/08120099.2021.1915867
DO - 10.1080/08120099.2021.1915867
M3 - Article
AN - SCOPUS:85106334015
SN - 0812-0099
VL - 68
SP - 1149
EP - 1161
JO - Australian Journal of Earth Sciences
JF - Australian Journal of Earth Sciences
IS - 8
ER -