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Peridotite Nappe

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Journal Article
Journal: Economic Geology
Published: 01 March 2018
Economic Geology (2018) 113 (2): 531–544.
... in elevated parts of the Peridotite Nappe, forming the so-called plateau and slope deposits. Understanding the controls of these nickel ore deposits is important in order to optimize the resource exploitation; however, to date there are only a few models to refer to, and structural aspects are rarely...
FIGURES | View All (9)
Journal Article
Journal: Geology
Published: 01 October 2013
Geology (2013) 41 (10): 1063–1066.
... carbon isotope composition varies widely ( − 16.7‰ < δ 13 C < − 8.5‰). These new data document an origin of magnesite from meteoric fluids. Laterization on top of the peridotite nappe and carbonation along the sole appear to represent complementary records of meteoric water infiltration. Based...
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Journal Article
Published: 01 November 2013
Bulletin de la Société Géologique de France (2013) 184 (6): 545–556.
..., refered to as the Peridotite nappe, is thrusted over the basaltic formations of the Poya terrane which are classicaly thought to originate from a different oceanic environment; 3) The basal contact of the ultramafic sheet is remarkably flat all along New-Caledonia and the Peridotite nappe has not been...
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Series: Geological Society, London, Memoirs
Published: 16 June 2020
DOI: 10.1144/M51-2018-74
EISBN: 9781786204820
... Abstract The post-obduction formations of Grande Terre, New Caledonia, comprise igneous intrusions, regolith cover, and marine and terrestrial sedimentary rocks. Two restricted Late Oligocene granitoid bodies are intruded into the Peridotite Nappe and its substrate in the south of the island...
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Journal Article
Published: 01 May 2008
Bulletin de la Société Géologique de France (2008) 179 (3): 315–329.
... limits that accommodated extension and significant tectonic thinning of both the peridotite nappe and its basement. Remnants of a complex extensional fault zone, 200 m wide, are still preserved along the western scarp of the Mont Dore mountain, close to Nouméa city. The deformed zone is composed...
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Image
Simplified geological map of the Ortaca area (modified from Şenel 1997) showing locations of the peridotite samples and chromian spinel deposits. MPN: Marmaris peridotite nappe, GN: Gülbahar nappe, BN: Bodrum nappe, TN: Tavas nappe, YN: Yeşilbarak nappe, BO: Beydağlarý autochthon. Symbols used in all figures are as follows: square for clinopyroxene-bearing harzburgite, triangle for harzburgite, and circle for dunite.
Published: 01 December 2007
F ig . 1b. Simplified geological map of the Ortaca area (modified from Şenel 1997 ) showing locations of the peridotite samples and chromian spinel deposits. MPN: Marmaris peridotite nappe, GN: Gülbahar nappe, BN: Bodrum nappe, TN: Tavas nappe, YN: Yeşilbarak nappe, BO: Beydağlarý
Series: Geological Society, London, Memoirs
Published: 16 June 2020
DOI: 10.1144/M51-2018-70
EISBN: 9781786204820
... by the stacking from NE to SW of several allochthonous units over autochthonous Zealandia, including the Montagnes Blanches Nappe (Norfolk Ridge crust), the Poya Terrane (the crust of the South Loyalty Basin) and the Peridotite Nappe (the mantle lithosphere of the Loyalty Basin). A model of continental subduction...
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Series: Geological Society, London, Memoirs
Published: 16 June 2020
DOI: 10.1144/M51-2018-5
EISBN: 9781786204820
... and nature of the plate boundary between the Pacific and Australian plates. Eocene regional tectonic contraction included the obduction of a mantle-derived Peridotite Nappe in New Caledonia. In one class of model, this contractional phase was controlled by an east-dipping subduction zone into which...
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Series: Geological Society, London, Memoirs
Published: 16 June 2020
DOI: 10.1144/M51-2019-31
EISBN: 9781786204820
.... There is a 9 myr interval without any geological record between 34 and 25 Ma, immediately after the obduction of the Peridotite Nappe. Grande Terre may or may not have been submerged during this 9 myr interval. The ages given by molecular biology, independent of any geological calibration points, form...
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Series: Geological Society, London, Memoirs
Published: 16 June 2020
DOI: 10.1144/M51-2016-9
EISBN: 9781786204820
... is associated with the post-obduction Late Oligocene granitoids and co-genetic hydrothermal silica–carbonate (listwanite) zones in the Peridotite Nappe; Au is disseminated in the granites and Sb occurs as lodes in the silica–carbonate. Among the non-metallic mineral resources, barite, gypsum, magnesite...
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Series: Geological Society, London, Memoirs
Published: 16 June 2020
DOI: 10.1144/M51-2016-17
EISBN: 9781786204820
... Abstract The main metallic mineral resources of New Caledonia are hosted by the obducted Peridotite Nappe. Ni, Co, Cr and the Pt group elements (PGEs) are specific to this ultramafic terrane. Cr, as podiform chromitite in the uppermost mantle, is the only hypogene metal mined economically...
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Image
A simple model for the obduction of the New Caledonia ophiolite.
Published: 01 November 2013
flysch with an important mafic contribution). Serpentinization of the future sole of the Peridotite nappe assisted by fluids extracted from the exhumed continental units. Uprising of the Pouébo terrane following a path allowing its future structural position beneath the less metamorphosed Diahot terrane
Image
Binary plots (wt%) between the metals in Abu Dahr pentlandites compared with pentlandites from different localities worldwide (see text). (a) Co vs. Ni, (b) Co vs. Fe, (c) Co vs. Fe+Ni, and (d) Fe vs. Co+Ni. Additional data are from Vourinos, Greece (Tzamos et al. 2016); Massif du Sud Peridotite Nappe, New Caledonia (Augé et al. 1999); Cemetery Ridge, Arizona (Haxel et al. 2018); Santa Elena Nappe, Costa Rica (Schwarzenbach et al. 2014); and Latao, SE Sulawesi (Rafianto et al. 2012).
Published: 01 March 2023
); Massif du Sud Peridotite Nappe, New Caledonia ( Augé et al. 1999 ); Cemetery Ridge, Arizona ( Haxel et al. 2018 ); Santa Elena Nappe, Costa Rica ( Schwarzenbach et al. 2014 ); and Latao, SE Sulawesi ( Rafianto et al. 2012 ).
Image
Various examples of detachment faults observed in the southern portion of the mainland of New-Caledonia, located on a simplified map of the island. Large scale detachment faults appear to be common in the peridotite nappe, as shown on photographs A to D, but are also observed within the basement of the nappe in the Eocene sediments (photograph F). Small scale normal faults and shear bands, synthetic of the displacement along the main faults (photograph E), are observed throughout the entire island, both in the ophiolites and in their basement. White arrows point to the main low angle normal faults. Labels f in photograph B designate tension gashes filled with silica products.
Published: 01 May 2008
Fig. 8. – Various examples of detachment faults observed in the southern portion of the mainland of New-Caledonia, located on a simplified map of the island. Large scale detachment faults appear to be common in the peridotite nappe, as shown on photographs A to D, but are also observed within
Journal Article
Published: 01 September 1991
Journal of the Geological Society (1991) 148 (5): 801–804.
... °C, to amphibolite-facies conditions at 5-8 kbar or less and c. 650 °C. The Ronda peridotites belonging to the uppermost Alpujarride nappe (Los Reales nappe) structurally overlie the eclogite-bearing unit. It is suggested that eclogitic metamorphism and overthrusting of the peridotites reflect...
Journal Article
Published: 10 January 2024
Journal of the Geological Society (2024) 181 (1): jgs2023-145.
... geochronological and geochemical insights into forearc evolution and, more specifically, of a young subduction zone that likely originated at or near a spreading ridge (e.g. Ulrich et al. 2010 ; Cluzel et al. 2012 b ). This study is based on surveys of the Peridotite Nappe conducted from the early...
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Image
Geological map with cross-section of the Stølsheimen region. Noteworthy features are the abundance of solitary mantle peridotites in this area and that the mélange is sandwiched between the Lower and Upper Bergsdalen nappes. We suggest that the pre-Caledonian extensional exhumation of the mantle peridotites must have taken place along major extensional shear zone(s) positioned below the base of the Upper Bergsdalen and Jotun Nappe Complexes, here shown as the red line.
Published: 01 September 2012
Fig. 3. Geological map with cross-section of the Stølsheimen region. Noteworthy features are the abundance of solitary mantle peridotites in this area and that the mélange is sandwiched between the Lower and Upper Bergsdalen nappes. We suggest that the pre-Caledonian extensional exhumation
Series: Geological Society, London, Memoirs
Published: 16 June 2020
DOI: 10.1144/M51-2019-33
EISBN: 9781786204820
... of Phanerozoic geology, including ophiolitic units, monotonous volcaniclastic sedimentary rocks, and volcanic and metamorphic terranes. The oldest rocks are Carboniferous. The most distinctive and emblematic geological unit of Grande Terre is the 5400 km 2 Peridotite Nappe, which is one of the largest...
FIGURES
Series: Geological Society, London, Special Publications
Published: 01 January 2008
DOI: 10.1144/SP298.17
EISBN: 9781862395466
... Abstract The Adula nappe in the Central Alps represents a lithospheric mélange assembled in a south-dipping subduction zone during the Tertiary orogenic cycle. It consists of several heterogeneous lobes which are stacked in a forward-dipping duplex geometry. Eclogites, garnet peridotites...
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Journal Article
Journal: GSA Bulletin
Published: 01 January 1973
GSA Bulletin (1973) 84 (1): 21–38.
... the lithologies are complex; there is an older complex of serpentinized peridotite and metatholeiite 110 m.y. old or older, an intermediate pillow lava and felsite association, and a younger radiolarian chert formation of middle Cretaceous (Albian) or older age. A gravitational nappe structure, showing northward...