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- W2016076834 abstract "In the complex structural framework of the Western Mediterranean. Hercynian areas are expected to be thermally preserved from the recent tectonic evolution. The thermal regime of these areas is studied using heat flow, heat production and fission track data. The surface heat flow is significantly higher in Corsica (76 ± 10 mW m−2) than in the Maures and Estérel (58 ± 2 mW m−2). Neither heat production nor erosion subsequent to the Alpine orogeny in Corsica can explain such a difference. It is suggested that a deep thermal source related to the asymmetric evolution of the Provençal basin could explain the higher heat flow in Corsica. A model of thermal structure based on the present day thermal regime of the Maures and Estérei is proposed for the stable Hercynian crust in this area. The mantle heat flow is 20–25 mW m−2 and the temperature at Moho level is 375–500°C, depending on the thermal parameter distribution with depth." @default.
- W2016076834 created "2016-06-24" @default.
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- W2016076834 date "1986-09-01" @default.
- W2016076834 modified "2023-10-17" @default.
- W2016076834 title "Heat flow, heat production and fission track data from the Hercynian basement around the Provençal Basin (Western Mediterranean)" @default.
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- W2016076834 doi "https://doi.org/10.1016/0040-1951(86)90300-8" @default.
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