AbstractsEarth & Environmental Science

Abstract

In March 2010, the project CoCoCo (incipient COntinent-COntinent COllision) recorded a 650 km long amphibian N-S wide-angle seismic profile, extending from the Eratosthenes Seamount (ESM) across Cyprus and southern Turkey to the Anatolian plateau. The aim of the project is to reveal the impact of the transition from subduction to continent-continent collision of the African plate with the Cyprus-Anatolian plate. A visual quality check, frequency analysis and filtering were applied to the seismic data and reveal a good data quality. Subsequent first break picking, finite-differences ray tracing and inversion of the offshore wide-angle data leads to a first-arrival tomographic model. This model reveals (1) P-wave velocities lower than 6.5 km/s in the crust, (2) a variable crustal thickness of about 28 - 37 km and (3) an upper crustal reflection at 5 km depth beneath the ESM. Two land shots on Turkey, also recorded on Cyprus, airgun shots south of Cyprus and geological and previous seismic investigations provide the information to derive a layered velocity model beneath the Anatolian plateau and for the ophiolite complex on Cyprus. The analysis of the reflections provides evidence for a north-dipping plate subducting beneath Cyprus. The main features of this layered velocity model are (1) an upper and lower crust with large lateral changes of the velocity structure and thickness, (2) a Moho depth of about 38 - 45 km beneath the Anatolian plateau, (3) a shallow north-dipping subducting plate below Cyprus with an increasing dip and (4) a typical ophiolite sequence on Cyprus with a total thickness of about 12 km. The offshore-onshore seismic data complete and improve the information about the velocity structure beneath Cyprus and the deeper part of the offshore tomographic model. Thus, the wide-angle seismic data provide detailed insights into the 2-D geometry and velocity structures of the uplifted and overriding Cyprus-Anatolian plate. Subsequent gravity modelling confirms and extends the crustal P-wave velocity model. The deeper part of the subducting plate is constrained by the gravity data and has a dip angle of ~ 28°. Finally, an integrated analysis of the geophysical and geological information allows a comprehensive interpretation of the crustal structure related to the collision process. Im März 2010 wurden im Rahmen des "CoCoCo"-Projektes ein 650km langes amphibisches, seismisches Weitwinkel Profil aufgenommen. Dieses erstreckte sich von dem Eratosthenes Seeberg (ESM) über Zypern und der Süd-Türkei bis zum anatolischen Plateau. Das Hauptziel des Projektes ist es, den Einfluss zu untersuchen, der von dem Übergang eines Subduktion Prozesses hin zu einer Kontinent-Kontinent Kollision der afrikanischen Platte mit der zyprisch-anatolischen Platte hervorgerufen wird. Die seismischen Daten wurden einer visuelle Qualitätsüberprüfung, Frequenz-Analyse und Filterung unterzogen und zeigten eine gute Qualität. Das darauf folgende Picken der Ersteinstätze, eine Finite-Differenzen Raytracing und eine Inversion der offshore…