Gravity driven and in situ fractional crystallization processes in the Centre Hill complex, Abitibi Subprovince, Canada: Evidence from bilaterally-paired cyclic units
The formation of layers in mafic intrusions has been explained by various processes, making it the subject of much controversy. The concept that layering originates from gravitational settling of crystals has been superseded in recent years by models involving in situ fractional crystallization. Her...
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Published in: | Lithos Vol. 39; no. 1; pp. 41 - 55 |
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Elsevier B.V
01-12-1996
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Abstract | The formation of layers in mafic intrusions has been explained by various processes, making it the subject of much controversy. The concept that layering originates from gravitational settling of crystals has been superseded in recent years by models involving in situ fractional crystallization. Here we present evidence from the Centre Hill complex that both processes may be operative simultaneously within the same intrusion. The Centre Hill complex is part of the Munro Lake sill, an Archean layered mafic intrusion emplaced in volcanic rocks of the Abitibi Subprovince. The Centre Hill complex comprises the following lithostratigraphic units: six lower cyclic units of peridotite and clinopyroxenite; a middle unit of leucogabbro; six upper cyclic units of branching-textured gabbro (BTG) and clotted-textured gabbro (CTG), the uppermost of these units being overlain by a marginal zone of fine-grained gabbro. The cyclic units of peridotite/clinopyroxenite and BTG/CTG are interpreted to have formed concurrently through fractional crystallization, associated with periodic replenishment of magma to the chamber. The units of peridotite and clinopyroxenite formed by gravitational accumulation of crystals that grew under the roof. The cyclic units of BTG and CTG formed along the upper margin of the sill by two different mechanisms: (1) layers of BTG crystallized in situ along an inward-growing roof and (2) layers of CTG formed by accumulation of buoyant plagioclase crystals. The layers of BTG are characterized by branching pseudomorphs after fayalite up to 50 cm in length that extend away from the upper margin. The original branching crystals are interpreted to have grown from stagnant intercumulus melt in a high thermal gradient resulting from the injection of new magma to the chamber. |
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AbstractList | The formation of layers in mafic intrusions has been explained by various processes, making it the subject of much controversy. The concept that layering originates from gravitational settling of crystals has been superseded in recent years by models involving in situ fractional crystallization. Here we present evidence from the Centre Hill complex that both processes may be operative simultaneously within the same intrusion. The Centre Hill complex is part of the Munro Lake sill, an Archean layered mafic intrusion emplaced in volcanic rocks of the Abitibi Subprovince. The Centre Hill complex comprises the following lithostratigraphic units: six lower cyclic units of peridotite and clinopyroxenite; a middle unit of leucogabbro; six upper cyclic units of branching-textured gabbro (BTG) and clotted-textured gabbro (CTG), the uppermost of these units being overlain by a marginal zone of fine-grained gabbro. The cyclic units of peridotite/clinopyroxenite and BTG/CTG are interpreted to have formed concurrently through fractional crystallization, associated with periodic replenishment of magma to the chamber. The units of peridotite and clinopyroxenite formed by gravitational accumulation of crystals that grew under the roof. The cyclic units of BTG and CTG formed along the upper margin of the sill by two different mechanisms: (1) layers of BTG crystallized in situ along an inward-growing roof and (2) layers of CTG formed by accumulation of buoyant plagioclase crystals. The layers of BTG are characterized by branching pseudomorphs after fayalite up to 50 cm in length that extend away from the upper margin. The original branching crystals are interpreted to have grown from stagnant intercumulus melt in a high thermal gradient resulting from the injection of new magma to the chamber. |
Author | Fowler, A.D. Thériault, R.D. |
Author_xml | – sequence: 1 givenname: R.D. surname: Thériault fullname: Thériault, R.D. organization: Department of Geology, University of Ottawa, Ottawa, Ontario, K1N 6N5, Canada – sequence: 2 givenname: A.D. surname: Fowler fullname: Fowler, A.D. organization: Department of Geology, University of Ottawa, Ottawa, Ontario, K1N 6N5, Canada |
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Cites_doi | 10.1130/0016-7606(1960)71[1295:GOTEMN]2.0.CO;2 10.1007/BF00383297 10.1038/341134a0 10.1093/petrology/20.3.487 10.2475/ajs.s4-39.230.175 10.1093/petrology/28.1.211 10.1180/minmag.1978.042.323.03 10.2475/ajs.269.2.169 10.1093/petrology/25.2.395 10.1093/petrology/28.5.835 10.1139/e69-025 10.1130/0016-7606(1988)100<1720:CCSARI>2.3.CO;2 10.1038/361246a0 10.1016/0012-821X(86)90145-7 10.2475/ajs.274.3.243 10.1063/1.1702757 10.1038/321663a0 10.1130/0016-7606(1974)85<1721:OCTIHR>2.0.CO;2 10.1007/BF00383356 10.1007/BF01162681 10.1007/BF01162756 10.1093/petrology/18.2.319 10.1180/minmag.1996.060.401.05 10.1139/e85-005 10.1016/0024-4937(78)90038-5 |
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Title | Gravity driven and in situ fractional crystallization processes in the Centre Hill complex, Abitibi Subprovince, Canada: Evidence from bilaterally-paired cyclic units |
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