Mantle convection with a brittle lithosphere: thoughts on the global tectonic styles of the Earth and Venus

被引:472
作者
Moresi, L [1 ]
Solomatov, V
机构
[1] Australian Natl Univ, Res Sch Earth Sci, Canberra, ACT 0200, Australia
[2] CSIRO, Explorat & Min, Australian Geodynam Cooperat Res Ctr, Nedlands, WA 6009, Australia
[3] New Mexico State Univ, Dept Phys, Las Cruces, NM 88003 USA
关键词
brittle failure; lithosphere; mantle convection; non-linear rheology; temperature-dependent viscosity; viscoplastic rheology;
D O I
10.1046/j.1365-246X.1998.00521.x
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
Plates are an integral part of the convection system in the fluid mantle, but plate boundaries are the product of brittle faulting and plate motions are strongly influenced by the existence of such faults. The conditions for plate tectonics are studied by considering brittle behaviour, using Byerlee's law to limit the maximum stress in the lithosphere, in a mantle convection model with temperature-dependent viscosity. When the yield stress is high, convection is confined below a thick, stagnant lithosphere sphere. At low yield stress, brittle deformation mobilizes the lithosphere which becomes a part of the overall circulation; surface deformation occurs in localized regions close to upwellings and downwellings in the system. At intermediate levels of the yield stress, there is a cycling between these two states: thick lithosphere episodically mobilizes and collapses into the interior before reforming. The mobile-lid regime resembles convection of a fluid with temperature-dependent viscosity and the boundary-layer scalings are found to be analogous. This regime has a well defined Nusselt number-Rayleigh number relationship which is in good agreement with scaling theory. The surface velocity is nearly independent of the yield stress, indicating that the 'plate' motion is resisted by viscous stresses in the mantle. Analysis suggests that mobilization of the Earth's lithosphere can occur if the friction coefficient in the lithosphere is less than 0.03-0.13-lower than laboratory values but consistent with seismic held studies. On Venus, the friction coefficient may be high as a result of the dry conditions, and brittle mobilization of the lithosphere would then be episodic and catastrophic.
引用
收藏
页码:669 / 682
页数:14
相关论文
共 94 条
[11]   THERMAL-CONVECTION WITH STRONGLY TEMPERATURE-DEPENDENT VISCOSITY [J].
BOOKER, JR .
JOURNAL OF FLUID MECHANICS, 1976, 76 (AUG25) :741-754
[12]   STICK-SLIP AS A MECHANISM FOR EARTHQUAKES [J].
BRACE, WF ;
BYERLEE, JD .
SCIENCE, 1966, 153 (3739) :990-&
[13]  
Braun J., 1987, Sedimentary Basins and Basin-Forming Mechanisms, P241
[14]   STREAMLINE UPWIND PETROV-GALERKIN FORMULATIONS FOR CONVECTION DOMINATED FLOWS WITH PARTICULAR EMPHASIS ON THE INCOMPRESSIBLE NAVIER-STOKES EQUATIONS [J].
BROOKS, AN ;
HUGHES, TJR .
COMPUTER METHODS IN APPLIED MECHANICS AND ENGINEERING, 1982, 32 (1-3) :199-259
[15]   HEAT FLOW, STRESS, AND RATE OF SLIP ALONG SAN ANDREAS FAULT, CALIFORNIA [J].
BRUNE, JN ;
HENYEY, TL ;
ROY, RF .
JOURNAL OF GEOPHYSICAL RESEARCH, 1969, 74 (15) :3821-+
[16]   STATIC AND KINETIC FRICTION OF GRANITE AT HIGH NORMAL STRESS [J].
BYERLEE, JD .
INTERNATIONAL JOURNAL OF ROCK MECHANICS AND MINING SCIENCES, 1970, 7 (06) :577-&
[17]   BRITTLE-DUCTILE TRANSITION IN ROCKS [J].
BYERLEE, JD .
JOURNAL OF GEOPHYSICAL RESEARCH, 1968, 73 (14) :4741-+
[18]   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
[19]   CONVECTION WITH PRESSURE-DEPENDENT AND TEMPERATURE-DEPENDENT NON-NEWTONIAN RHEOLOGY [J].
CHRISTENSEN, U .
GEOPHYSICAL JOURNAL OF THE ROYAL ASTRONOMICAL SOCIETY, 1984, 77 (02) :343-384
[20]  
CHRISTENSEN UR, 1983, EARTH PLANET SCI LET, V64