Search engine for discovering works of Art, research articles, and books related to Art and Culture
ShareThis
Javascript must be enabled to continue!

Thermal and Rheological Structure of Lithosphere beneath Northeast China

View through CrossRef
We investigate the 3-D lithospheric thermal and rheological structures beneath Northeast China using detailed P- and S-wave velocity models following mineral physics as well as geothermal methods. Small-scale temperature changes and thermal lithosphere thickness variations between different tectonic blocks are revealed. Our results show that strong lateral heterogeneities exist in the lithospheric thermal structure and rheological structure on both sides of the North-South Gravity Lineament (NSGL). The Changbai volcanic area and the central part of the Songliao Basin in the eastern side of the NSGL exhibit higher temperatures, thinner thermal lithosphere and lower rheological strength, which are closely associated with the western Pacific plate subduction under the Eurasian continent, resulting in upwelling of wet and hot asthenospheric material above the stagnant Pacific slab in the mantle transition zone. The thermo-chemical erosion of the upwelling asthenospheric material may induce delamination of partial lithosphere under the Songliao Basin. In addition, the Songliao Basin edge is characterized by lower temperature, thicker thermal lithosphere and higher rheological strength, which may indicate a relatively stable lithosphere. The Halaha and Abaga volcanic areas in the western side of the NSGL exhibit higher temperature, thinner thermal lithosphere and lower rheological strength, which could be caused by small-scale upwelling of hot asthenospheric material associated with delamination of partial lithosphere beneath the Songliao Basin.
Title: Thermal and Rheological Structure of Lithosphere beneath Northeast China
Description:
We investigate the 3-D lithospheric thermal and rheological structures beneath Northeast China using detailed P- and S-wave velocity models following mineral physics as well as geothermal methods.
Small-scale temperature changes and thermal lithosphere thickness variations between different tectonic blocks are revealed.
Our results show that strong lateral heterogeneities exist in the lithospheric thermal structure and rheological structure on both sides of the North-South Gravity Lineament (NSGL).
The Changbai volcanic area and the central part of the Songliao Basin in the eastern side of the NSGL exhibit higher temperatures, thinner thermal lithosphere and lower rheological strength, which are closely associated with the western Pacific plate subduction under the Eurasian continent, resulting in upwelling of wet and hot asthenospheric material above the stagnant Pacific slab in the mantle transition zone.
The thermo-chemical erosion of the upwelling asthenospheric material may induce delamination of partial lithosphere under the Songliao Basin.
In addition, the Songliao Basin edge is characterized by lower temperature, thicker thermal lithosphere and higher rheological strength, which may indicate a relatively stable lithosphere.
The Halaha and Abaga volcanic areas in the western side of the NSGL exhibit higher temperature, thinner thermal lithosphere and lower rheological strength, which could be caused by small-scale upwelling of hot asthenospheric material associated with delamination of partial lithosphere beneath the Songliao Basin.

Related Results

Lithosphere thickness and thermal state in Asia
Lithosphere thickness and thermal state in Asia
Thermal structure of the lithosphere reflects its long-term evolution and controls its rheology, expressed in crustal and mantle anisotropic layering as observed in many seismic to...
jabbrv-ltwa-all.ldf jabbrv-ltwa-en.ldf Lithospheric Structure Beneath the Cameroon Volcanic Line: Implications for the Melt Source
jabbrv-ltwa-all.ldf jabbrv-ltwa-en.ldf Lithospheric Structure Beneath the Cameroon Volcanic Line: Implications for the Melt Source
To understand the melt source of hotlines with asynchronous volcanoes, we investigate the lithospheric structure of the Cameroon Volcanic Line (CVL), a chain of volcanoes without a...
Heterogeneous lithospheric mantle
Heterogeneous lithospheric mantle
<p>The lithosphere is a thermal boundary layer atop mantle convection and a chemical boundary layer formed by mantle differentiation and melt extraction. The two boun...
Plume-induced heat flux anomalies and the associated thinning of the continental lithosphere
Plume-induced heat flux anomalies and the associated thinning of the continental lithosphere
While the passage of a plume beneath a thin oceanic lithosphere is usually connected to a hot spot track, and thus can easily be traced back in time, the interaction between a plum...
Thermal Effects in High Compactness CEA Stack
Thermal Effects in High Compactness CEA Stack
Thermal management is a pivotal aspect of stack durability and system operability. Consequently, understanding the thermal mapping within a stack based on its operating conditions ...
The lithosphere of Mars
The lithosphere of Mars
La lithosphère de Mars La partie externe, rigide, et froide d'une planète est conventionnellement appelée lithosphère. Lorsque la lithosphère est soumise à des char...
Broad variability in craton reworking
Broad variability in craton reworking
Cratons are commonly considered as stable parts of continents that can survive a long-term interaction with mantle convective instabilities, basal drag and plate tectonic processes...
Lithospheric Structure of the Hikurangi Subduction Margin
Lithospheric Structure of the Hikurangi Subduction Margin
<p><b>In this thesis, controlled-source seismic data acquired during two regional-scale experiments are analysed to determine the offshore lithospheric structure at the...

Back to Top