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

Establishing the structure of the Cretaceous Neotethyan Orhaneli ophiolite, NW Turkey

View through CrossRef
Orhaneli ophiolite is a Late Cretaceous ophiolitic suite, obducted over the Late Cretaceous high-pressure rocks of the Tavşanlı Zone that represents the subducted part of the southern passive continental margin. It is part of the Neotethyan ophiolites related to the Izmir-Ankara-Erzincan Suture. The present work aims to decipher the inner structure of the Orhaneli ophiolite. This implies constructing the geometrical relationships between structural elements and to evaluate their original positions relative to the paleo-horizontal and paleo-ridge axis.The Orhaneli ophiolite comprises three tectonic domains separated from each other by N-S trending east-vergent thrusts. The middle domain comprises mantle harzburgite, dunite, pyroxenite, and crustal layered gabbro and cumulate peridotite. The Moho transition zone is represented by a 1 km thick, highly sheared zone that consists of serpentinite and mylonitic gabbro. Mylonitic gabbro has a layered-laminated structure and is very well lineated. Mantle structures (compositional layerings and foliations) are dominantly sub-vertically dipping with the N-S trend. While the layered gabbros are dipping to the east with 65° near the Moho, the dip direction progressively changes to the west stratigraphically upward. The eastern domain is the tectonic repetition of the mantle section of the middle domain. Foliations and compositional layerings strike N-S and sub-vertical dips. The western domain corresponds to relatively lower parts of the mantle which consists of harzburgite and dunite. The absence of pyroxenites distinguishes the mantle rocks of this domain from the others.It is observed that (1) there is a low-angle relationship between the mantle structures and the lower parts of the layered gabbro, (2) layered gabbros are progressively steepening stratigraphically upward, (3) the boundary between the lithospheric mantle and the crust is strongly sheared.
Title: Establishing the structure of the Cretaceous Neotethyan Orhaneli ophiolite, NW Turkey
Description:
Orhaneli ophiolite is a Late Cretaceous ophiolitic suite, obducted over the Late Cretaceous high-pressure rocks of the Tavşanlı Zone that represents the subducted part of the southern passive continental margin.
It is part of the Neotethyan ophiolites related to the Izmir-Ankara-Erzincan Suture.
The present work aims to decipher the inner structure of the Orhaneli ophiolite.
This implies constructing the geometrical relationships between structural elements and to evaluate their original positions relative to the paleo-horizontal and paleo-ridge axis.
The Orhaneli ophiolite comprises three tectonic domains separated from each other by N-S trending east-vergent thrusts.
The middle domain comprises mantle harzburgite, dunite, pyroxenite, and crustal layered gabbro and cumulate peridotite.
The Moho transition zone is represented by a 1 km thick, highly sheared zone that consists of serpentinite and mylonitic gabbro.
Mylonitic gabbro has a layered-laminated structure and is very well lineated.
Mantle structures (compositional layerings and foliations) are dominantly sub-vertically dipping with the N-S trend.
While the layered gabbros are dipping to the east with 65° near the Moho, the dip direction progressively changes to the west stratigraphically upward.
The eastern domain is the tectonic repetition of the mantle section of the middle domain.
Foliations and compositional layerings strike N-S and sub-vertical dips.
The western domain corresponds to relatively lower parts of the mantle which consists of harzburgite and dunite.
The absence of pyroxenites distinguishes the mantle rocks of this domain from the others.
It is observed that (1) there is a low-angle relationship between the mantle structures and the lower parts of the layered gabbro, (2) layered gabbros are progressively steepening stratigraphically upward, (3) the boundary between the lithospheric mantle and the crust is strongly sheared.

Related Results

The deformation mechanisms of Upper Cretaceous Neotethyan Orhaneli ophiolite, NW Turkey
The deformation mechanisms of Upper Cretaceous Neotethyan Orhaneli ophiolite, NW Turkey
Orhaneli ophiolite is an Upper Cretaceous ophiolitic suite obducted over the Late Cretaceous high-pressure rocks. It covers approximately 43 km in length and 14 km in width. It is ...
Current Perspectives on Cystic Echinococcosis: A Systematic Review
Current Perspectives on Cystic Echinococcosis: A Systematic Review
Abstract Introduction: Hydatidosis, a zoonotic disease caused by the larval stage of Echinococcus granulosus, is a significant public health concern with notable economic impact. I...
Study on the Tectonic Setting for the Ophiolites in Xigaze, Tibet
Study on the Tectonic Setting for the Ophiolites in Xigaze, Tibet
Abstract:The Xigaze ophiolite is located in the middle section of the Yarlung Zangbo River ophiolite belt and includes a well‐preserved sequence section of seven ophiolite blocks. ...
Hydatid Disease of The Brain Parenchyma: A Systematic Review
Hydatid Disease of The Brain Parenchyma: A Systematic Review
Abstarct Introduction Isolated brain hydatid disease (BHD) is an extremely rare form of echinococcosis. A prompt and timely diagnosis is a crucial step in disease management. This ...
Unravelling the Remagnetization of the Oman Ophiolite
Unravelling the Remagnetization of the Oman Ophiolite
<p>The Oman ophiolite is a natural laboratory for the study of processes operating above a nascent subduction zone. It formed in the Late Cretaceous by supra-subducti...
The Josephine ophiolite: an ancient analogue for slow- to intermediate-spreading oceanic ridges
The Josephine ophiolite: an ancient analogue for slow- to intermediate-spreading oceanic ridges
AbstractThe 162 Ma Josephine ophiolite, NW California and SW Oregon, consists of harzburgite tectonite (>800 km2), cumulates, high-level gabbro, a sheeted dyke complex having a ...
Geochemical Characteristics of Mafic Rocks from the Xinlin Ophiolite, NE China
Geochemical Characteristics of Mafic Rocks from the Xinlin Ophiolite, NE China
Located in the northern part of the Xinlin–Xiguitu suture zone, geochemistry and geochronology of the Xinlin ophiolite provide a unique opportunity to determine the the evolution o...
Chest Wall Hydatid Cysts: A Systematic Review
Chest Wall Hydatid Cysts: A Systematic Review
Abstract Introduction Given the rarity of chest wall hydatid disease, information on this condition is primarily drawn from case reports. Hence, this study systematically reviews t...

Back to Top