COOLING OF THE EARTH IN THE ARCHEAN - CONSEQUENCES OF PRESSURE-RELEASE MELTING IN A HOTTER MANTLE

被引:101
作者
VLAAR, NJ
VANKEKEN, PE
VANDENBERG, AP
机构
[1] Department of Theoretical Geophysics, Institute of Earth Sciences, 3508 TA Utrecht
关键词
D O I
10.1016/0012-821X(94)90028-0
中图分类号
P3 [地球物理学]; P59 [地球化学];
学科分类号
0708 ; 070902 ;
摘要
A model is presented to describe the cooling of the Earth in the Archaean. At the higher Archaean mantle temperatures pressure-release melting starts deeper and generates a thicker basaltic or komatiitic crust and depleted harzburgite layer compared with the present-day situation. Intrinsic compositional stability and lack of mechanical coherency renders the mechanism of plate tectonics ineffective. It is proposed that the Archaean continents stabilised early on top of a compositionally stratified root. In the Archaean oceanic lithosphere, hydrated upper crust can founder and recycle through its high-pressure phase eclogite. Eclogite remelting and new pressure-release melting generates new crustal material. Migration of magma and latent heat release by solidification at the surface provides an efficient mechanism to cool the mantle by several hundreds of degrees during the Archaean. This can satisfactorily explain the occurrence of high extrusion temperature komatiites and lower extrusion temperature basalts in greenstone belts as being derived from the same source by different mechanisms.
引用
收藏
页码:1 / 18
页数:18
相关论文
共 62 条
[1]  
ABBOTT D, 1993, UNPUB J GEOPHYS RES
[2]   GABBRO-ECLOGITE REACTION-RATE AND ITS GEOPHYSICAL SIGNIFICANCE [J].
AHRENS, TJ ;
SCHUBERT, G .
REVIEWS OF GEOPHYSICS, 1975, 13 (02) :383-400
[3]  
Arndt N. T., 1982, KOMATIITES
[4]   ECLOGITE FORMATION AND DYNAMICS OF CRUSTAL ROOTS UNDER CONTINENTAL COLLISION ZONES [J].
AUSTRHEIM, H .
TERRA NOVA, 1991, 3 (05) :492-499
[5]   HEAT LOSS FROM EARTH - CONSTRAINT ON ARCHAEAN TECTONICS FROM RELATION BETWEEN GEOTHERMAL GRADIENTS AND RATE OF PLATE PRODUCTION [J].
BICKLE, MJ .
EARTH AND PLANETARY SCIENCE LETTERS, 1978, 40 (03) :301-315
[6]  
CAMPBELL I.H., 1992, J GEOL, V92, P497
[7]   THERMAL-EXPANSION MEASUREMENTS AT VERY HIGH-PRESSURE, SYSTEMATICS, AND A CASE FOR A CHEMICALLY HOMOGENEOUS MANTLE [J].
CHOPELAS, A ;
BOEHLER, R .
GEOPHYSICAL RESEARCH LETTERS, 1989, 16 (11) :1347-1350
[8]   HEAT-TRANSPORT BY VARIABLE VISCOSITY CONVECTION AND IMPLICATIONS FOR THE EARTHS THERMAL EVOLUTION [J].
CHRISTENSEN, UR .
PHYSICS OF THE EARTH AND PLANETARY INTERIORS, 1984, 35 (04) :264-282
[9]   THERMAL EVOLUTION MODELS FOR THE EARTH [J].
CHRISTENSEN, UR .
JOURNAL OF GEOPHYSICAL RESEARCH-SOLID EARTH AND PLANETS, 1985, 90 (NB4) :2995-3007
[10]   THE INTERACTION OF A SUBDUCTING LITHOSPHERIC SLAB WITH A CHEMICAL OR PHASE-BOUNDARY [J].
CHRISTENSEN, UR ;
YUEN, DA .
JOURNAL OF GEOPHYSICAL RESEARCH, 1984, 89 (NB6) :4389-4402