FLEXURAL RIGIDITY OF THE BASIN AND RANGE-COLORADO PLATEAU-ROCKY MOUNTAIN TRANSITION FROM COHERENCE ANALYSIS OF GRAVITY AND TOPOGRAPHY

被引:119
作者
LOWRY, AR
SMITH, RB
机构
关键词
D O I
10.1029/94JB00960
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
Stochastic inversion for flexural loads and flexural rigidity of the continental elastic layer can be accomplished most effectively by using the coherence of gravity and topography. However, the spatial resolution of coherence analysis has been limited by use of two-dimensional periodogram spectra from very large (> 10(5) km(2)) windows that generally include multiple tectonic features. Using a two-dimensional spectral estimator based on the maximum entropy method, the spatial resolution of flexural properties can be enhanced by a factor of 4 or more, enabling more detailed analysis at the scale of individual tectonic features. This new approach is used to map the spatial variation of flexural rigidity along the Basin and Range transition to the Colorado Plateau and Middle Rocky Mountains physiographic provinces. Large variations in flexural isostatic response are found, with rigidities ranging from as low as 8.7x10(20) N m (elastic thickness T-e= 4.6 km) in the Basin and Range to as high as 4.1x10(24) N m (T-e= 77 km) in the Middle Rocky Mountains. These results compare favorably with independent determinations of flexural rigidity in the region. Areas of low flexural rigidity correlate strongly with areas of high surface heat flow, as is expected from the contingence of flexural rigidity on a temperature-dependent flow law. Also, late Cenozoic normal faults with large displacements are found primarily in areas of low flexural rigidity, while deformation fronts of Mesozoic/Tertiary overthrusts occur 0 to 100 km east of the low-rigidity region. The highest flexural rigidity is found within the Archean Wyoming craton, where evidence suggests that deeply rooted cratonic lithosphere may play a role in determining the distribution of tectonism at the surface.
引用
收藏
页码:20123 / 20140
页数:18
相关论文
共 87 条
[21]  
BURCHFIEL BC, 1975, AM J SCI, VA275, P363
[22]  
BURG JP, 1975, THESIS STANFORD U ST
[23]   APPLICABILITY OF A UNIVERSAL ELASTIC TRENCH PROFILE [J].
CALDWELL, JG ;
HAXBY, WF ;
KARIG, DE ;
TURCOTTE, DL .
EARTH AND PLANETARY SCIENCE LETTERS, 1976, 31 (02) :239-246
[24]   LARGE UPLIFT OF RIFT FLANKS - A GENETIC LINK WITH LITHOSPHERIC RIGIDITY [J].
CHERY, J ;
LUCAZEAU, F ;
DAIGNIERES, M ;
VILOTTE, JP .
EARTH AND PLANETARY SCIENCE LETTERS, 1992, 112 (1-4) :195-211
[25]  
Condie KC, 1981, ARCHEAN GREENSTONE B
[26]   THERMALLY-ACTIVATED CREEP AND FLEXURE OF THE OCEANIC LITHOSPHERE [J].
COURTNEY, RC ;
BEAUMONT, C .
NATURE, 1983, 305 (5931) :201-204
[27]   EXPERIMENTAL ISOSTASY .1. THEORY OF DETERMINATION OF EARTHS ISOSTATIC RESPONSE TO A CONCENTRATED LOAD [J].
DORMAN, LM ;
LEWIS, BTR .
JOURNAL OF GEOPHYSICAL RESEARCH, 1970, 75 (17) :3357-+
[28]   EXPERIMENTAL ISOSTASY .3. INVERSION OF ISOSTATIC GREEN-FUNCTION AND LATERAL DENSITY CHANGES [J].
DORMAN, LM ;
LEWIS, BTR .
JOURNAL OF GEOPHYSICAL RESEARCH, 1972, 77 (17) :3068-+
[29]  
EATON GP, 1978, MEM GEOL SOC AM, V152, P51
[30]   SUBSURFACE LOADING AND ESTIMATES OF THE FLEXURAL RIGIDITY OF CONTINENTAL LITHOSPHERE [J].
FORSYTH, DW .
JOURNAL OF GEOPHYSICAL RESEARCH-SOLID EARTH AND PLANETS, 1985, 90 (B14) :2623-2632