Thermal Structure of the Lithosphere: A Petrologic Model
- 20 September 1974
- journal article
- research article
- Published by American Association for the Advancement of Science (AAAS) in Science
- Vol. 185 (4156) , 1007-1011
- https://doi.org/10.1126/science.185.4156.1007
Abstract
A preliminary evaluation of the thermal history of the upper mantle as determined by petrologic techniques indicates a general correspondence with theoretically derived models. The petrologic data supply direct information which may be used as an independent calibration of calculated models, serve as a base for evaluating the assumptions of the theoretical approach, and allow more careful selection of the variables describing mantle thermal properties and processes. Like the theoretical counterpart, the petrological approach indicates that the lithosphere is dominated by two thermal regimes: first, there is a continental regime which cools at rates of the order of 10 9 years and represents the long-term cooling of the earth. Secondly, superimposed on the continental evolution is the thermal event associated with the formation of an oceanic basin, and which may be thought of as a 10 8 -year convective perturbation on the continental cycle. Of special interest is petrologic evidence for a sudden steepening of the thermal gradients across the lithosphere-asthenosphere boundary not seen in the theoretical models. The unexpected change of slope points to the need for a critical reevaluation of the thermal processes and properties extant in the asthenosphere. The potential of the petrologic contribution has yet to be fully realized. For a start, this article points to an important body of independent evidence critical to our understanding of the earth's thermal history.Keywords
This publication has 38 references indexed in Scilit:
- Origin of kimberlite pipes by diapiric upwelling in the upper mantleNature, 1974
- Thermal aspects of sea-floor spreading and the nature of the oceanic crustTectonophysics, 1973
- Possible Temperatures in the Oceanic Upper Mantle and the Formation of MagmaGSA Bulletin, 1973
- Tectonic Elements of the Northern Part of the Gulf of CaliforniaGSA Bulletin, 1973
- Petrology of the Vulcan Peak Alpine-Type Peridotite, Southwestern OregonGSA Bulletin, 1973
- High-Pressure Peridotites in Southwestern OregonGSA Bulletin, 1972
- Partial melting in the upper mantlePhysics of the Earth and Planetary Interiors, 1970
- The early thermal history of the earthPhysics of the Earth and Planetary Interiors, 1969
- Speculations on the Earth's Thermal HistoryGSA Bulletin, 1965
- Density distribution and constitution of the mantleReviews of Geophysics, 1964