A MODEL FOR THE THERMAL AND CHEMICAL EVOLUTION OF THE MOONS INTERIOR - IMPLICATIONS FOR THE ONSET OF MARE VOLCANISM

被引:334
作者
HESS, PC [1 ]
PARMENTIER, EM [1 ]
机构
[1] BROWN UNIV, DEPT GEOL SCI, PROVIDENCE, RI 02912 USA
关键词
D O I
10.1016/0012-821X(95)00138-3
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
Crystallization of the lunar magma ocean creates a chemically stratified Moon consisting of an anorthositic crust and magma ocean cumulates overlying the primitive lunar interior. Within the magma ocean cumulates the last liquids to crystallize form dense, ilmenite-rich cumulates that contain high concentrations of incompatible radioactive elements. The underlying olivine-orthopyroxene cumulates are also stratified with later crystallized, denser, more Fe-rich compositions at the top. This paper explores the chemical and thermal consequences of an internal evolution model accounting for the possible role of these sources of chemical buoyancy. Rayleigh-Taylor instability causes the dense ilmenite-rich cumulate layer and underlying Fe-rich cumulates to sink toward the center of the Moon, forming a dense lunar core. After this overturn, radioactive heating within the ilmenite-rich cumulate core heats the overlying mantle, causing it to melt. In this model, the source region for high-TiO2 mare basalts is a convectively mixed layer above the core-mantle boundary which would contain small and variable amounts of admired ilmenite and KREEP. This deep high-pressure melting, as required for the generation of mare basalts, occurs after a reasonable time interval to explain the onset of mare basalt volcanism if the content of radioactive elements in the core and the chemical density gradients above the core are sufficiently high but within a range of values that might have been present in the Moon. Regardless of details implied by particular model parameters, gravitational overturn driven by the high density of magma ocean Fe-rich cumulates should concentrate high-TiO, mare basalt sources, and probably a significant fraction of radioactive heating, toward the center of the Moon. This will have important implications for both the thermal evolution of the Moon and for mare basalt genesis.
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页码:501 / 514
页数:14
相关论文
共 52 条
[1]  
AGEE CB, 1995, LUNAR PLANET SCI, V25, P5
[2]  
Batchelor C.K., 1967, INTRO FLUID DYNAMICS, V1st ed.
[3]   THE ORIGIN OF THE MOON AND THE SINGLE IMPACT HYPOTHESIS-IV [J].
CAMERON, AGW ;
BENZ, W .
ICARUS, 1991, 92 (02) :204-216
[4]   PRISTINE LUNAR GLASSES - CRITERIA, DATA, AND IMPLICATIONS [J].
DELANO, JW .
JOURNAL OF GEOPHYSICAL RESEARCH-SOLID EARTH AND PLANETS, 1986, 91 (B4) :D201-D213
[5]  
DELANO JW, 1990, P LUNAR PLANET SCI C, V20, P3
[6]   LUNAR LASER RANGING - A CONTINUING LEGACY OF THE APOLLO PROGRAM [J].
DICKEY, JO ;
BENDER, PL ;
FALLER, JE ;
NEWHALL, XX ;
RICKLEFS, RL ;
RIES, JG ;
SHELUS, PJ ;
VEILLET, C ;
WHIPPLE, AL ;
WIANT, JR ;
WILLIAMS, JG ;
YODER, CF .
SCIENCE, 1994, 265 (5171) :482-490
[7]   EFFECT OF WATER SATURATION ON THE DISTRIBUTION OF PARTIAL MELT IN THE OLIVINE-PYROXENE-PLAGIOCLASE SYSTEM [J].
FUJII, N ;
OSAMURA, K ;
TAKAHASHI, E .
JOURNAL OF GEOPHYSICAL RESEARCH-SOLID EARTH AND PLANETS, 1986, 91 (B9) :9253-9259
[8]   STIRRING AND STRUCTURE IN MANTLE STARTING PLUMES [J].
GRIFFITHS, RW ;
CAMPBELL, IH .
EARTH AND PLANETARY SCIENCE LETTERS, 1990, 99 (1-2) :66-78
[9]  
HERBERT F, 1980, P LUNAR PLANET SCI C, V11, P2015
[10]   DIAPIRISM AND THE ORIGIN OF HIGH TIO2 MARE GLASSES [J].
HESS, PC .
GEOPHYSICAL RESEARCH LETTERS, 1991, 18 (11) :2069-2072