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  • Gesteinsdeformation {Strukturgeologie}  (33)
  • Universitätsverlag Göttingen  (33)
  • Duncker & Humblot
  • German  (33)
  • Miscellaneous languages
  • Portuguese
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  • German  (33)
  • Miscellaneous languages
  • Portuguese
Years
  • 11
    Publication Date: 2021-03-29
    Description: Archaische Granitoide und paläoproterozoische Metasedimente der Huronian Supergroup werden von dem schüsselförmigen und partiell erodierten 1.85 Ga alten Impaktschmelzkomplex der Sudbury-Impaktstruktur überlagert. Huronische Metasedimente und deren basaler Kontakt zum granitoiden Grundgebirge stehen in einer Entfernung bis zu 15km von dem lagigen Komplex und um diesen herum steil. Obwohl diese Steilstellung durch die Bildung eines impakt-induzierten Zentralberges erklärt werden kann, ist unklar, ob orogene Verformung vor dem Impakt an der Steilstellung beteiligt war. Um hierüber Aufschluss zu gewinnen, wurden die basalen Huronischen Einheiten, insbesondere die karbonatische Espanola Formation und deren benachbarte Metakonglomerate und Metasandsteine, nordöstlich des Impaktschmelzkomplexes strukturell untersucht. Aufgrund er Nähe der metasedimentären Einheiten zu dem 2,5km mächtigen Schmelzkomplex wurde daher auch dessen möglicher thermischer Einfluss auf die Metasedimente untersucht...
    Description: conference
    Keywords: 551 ; VKB 280 ; VKB 295 ; VAE 140 ; VEV 127 ; VKA 200 ; Impaktgesteine {Petrologie} ; Metamorphe Komplexe, Nordamerika {Petrologie} ; Gesteinsdeformation {Strukturgeologie} ; Ontario {Geologie} ; Gefügekunde der Gesteine ; Sudbury 〈Ontario. Region〉 ; Mehrfachringbassin ; Proterozoikum ; mpaktmetamorphes Gestein ; Karbonatgestein ; Deformation 〈Geologie〉
    Language: German
    Type: anthologyArticle , publishedVersion
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  • 12
    facet.materialart.
    Unknown
    Universitätsverlag Göttingen
    Publication Date: 2021-03-29
    Description: When viewed as ideal elastic cracks, seismogenic faults are often modeled as decreases from the host rock to the boundary between the core and the damage zone. mode II or mode III cracks in semiinfinite elastic bodies or half spaces. These models normally assume the rock to be homogeneous and isotropic. Such assumptions may be justified and necessary when using closed-form analytical solutions for fault displacement. They are not justified, however, when we attempt to understand fault-displacement profiles along earthquake rupture sites or in paleofault studies. This follows because crustal segments hosting faults are, as a rule, not homogeneous and isotropic, but rather heterogeneous and anisotropic. In particular, the fault rocks commonly form layers or units parallel with the fault plane. Also, the mechanical properties of the rocks next to the fault change as the fault develops (Gudmundsson 2004). During repeated earthquakes in a seismogenic fault zone, two main rock units develop around the fault plane. One unit is the core, located next to the fault plane and normally composed of soft (low Young’s modulus) breccia, gouge, and other cataclastic rocks. The other unit is the damage zone, containing some cataclastic rocks but characterized by fractures of various types...
    Description: conference
    Keywords: 551 ; VAE 140 ; VAE 150 ; Gesteinsdeformation {Strukturgeologie} ; Strukturelle Erscheinungen {Strukturgeologie} ; Bruchzone ; Deformation 〈Geologie〉 ; Verwerfung ; Modellierung
    Language: German
    Type: anthologyArticle , publishedVersion
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  • 13
    Publication Date: 2021-03-29
    Description: Electromagnetic radiation (EMR) as measured at the surface of the lithosphere or underground shows preferred orientations, which can be related to microcracks and other brittle structures at micro and nano scales (see Bahat et al. 2005 and references therein). During the last years, numerous studies showed the applicability of EMR measurements for the determination of active fractures and stress orientations. EMR is determined with a ‘Cerescope’, which picks up EMR signals at frequencies from 5– 50 kHz (Obermeyer, 2005) with a ferrite aerial and processes them electronically so that the results can be displayed on a screen or copied to a computer. With the help of oriented EMR measurements, intensity variations are determined, which can be related to preferred crack fracture orientations. From this information, orientations of the principal stresses can be calculated. In addition, the intensity of the EMR is related to stress magnitudes...
    Description: conference
    Keywords: 551 ; TQD 000 ; VAE 120 ; VAE 150 ; VAE 140 ; Elektrische Verfahren {Geophysik} ; Methodik {Strukturgeologie} ; Strukturelle Erscheinungen {Strukturgeologie} ; Gesteinsdeformation {Strukturgeologie} ; Lithosphäre ; Fraktographie ; Spannungstensor ; Elektromagnetisches Verfahren
    Language: German
    Type: anthologyArticle , publishedVersion
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  • 14
    Publication Date: 2021-03-29
    Description: The island of Serifos is situated about 100km SSE of Athens in the Aegean Sea and belongs to the Attic-Cycladic massif. The geology of Serifos is largely characterized by a shallow hornblendebiotite granodiorite pluton that intruded in the late Miocene into a previously deformed (under blueschist conditions) sequence mainly consisting of ortho- and paragneisses, calc-silicate marbles, amphibolites and schists. The pluton has a dome-shaped body occupying the central and southern parts of the island (Salemink 1985). The Serifos MCC is the very western continuation of a zone of syn- to post tectonic intrusions younging from the East (Naxos, Paros ?12Ma) to the West (Serifos 9– 8Ma). Whereas the older intrusions in the East show a top to the North geometry, the Serifos MCC has developed a South-directed low-angle detachment fault...
    Description: conference
    Keywords: 551 ; VEF 300 ; VKB 292 ; VKB 270 ; VAE 140 ; Griechenland und griechische Inseln {Geologie} ; Metamorphe Komplexe, übriges Europa {Petrologie} ; Produkte mechanischer Deformation {Petrologie} ; Gesteinsdeformation {Strukturgeologie} ; Serifos ; Scherzone ; Mylonit ; Krustenbewegung
    Language: German
    Type: anthologyArticle , publishedVersion
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  • 15
    Publication Date: 2021-03-29
    Description: Die Beziehungen zwischen der Mikrostruktur und der kristallografischen Vorzugsorientierung (Textur) von Hämatiterzen der gebänderten Eisenerzformation (BIF) in Brasilien wurden in vielen Veröffentlichungen behandelt, z.B. Quade et. al. 2000, Rosière et al. 2001, Bascou et al. 2002. Polfiguren dieser Hämatiterze zeigen kreisförmige bis elliptische c-Achsen-Maxima, die um den Pol der Foliation liegen. Die Pole der Prismenflächen liegen auf Großkreisen in der Foliationsebene und die Maxima auf diesen fallen mit der Lineation zusammen. Die Entstehung dieser Regelung wird auf Scherverformungprozesse zurückgeführt. Bei experimentellen Stauchversuchen an polykristallinem Hämatit gab es Anzeichen der Bildung eines c-Achsenmaximums senkrecht zur Kompressionsrichtung (Siemes et al. 2003). Da zu vermuten war, dass Gleiten parallel zur Basis des Hämatits Ursache der Regelung ist, wurden die Gleitmechanismen an experimentell verformten Hämatiteinkristallen bestimmt (Siemes et al. 2006). In diesem Beitrag werden neue Scherexperimente an polykristallinen Hämatitaggregaten vorgestellt...
    Description: conference
    Keywords: 551 ; VAE 120 ; VAE 140 ; VBB 000 ; VKB 270 ; VKB 120 ; Methodik {Strukturgeologie} ; Gesteinsdeformation {Strukturgeologie} ; Experimentelle Geologie ; Produkte mechanischer Deformation {Petrologie} ; Petrologie der Vulkanite ; Eisenerz ; Hämatit ; Torsionsversuch ; Scherung 〈Geologie〉 ; Experiment ; Texturanalyse ; Mikrostruktur
    Language: German
    Type: anthologyArticle , publishedVersion
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  • 16
    Publication Date: 2021-03-29
    Description: The anisotropy of magnetic susceptibility (AMS) is a time-efficient method to describe crystallographic preferred orientations of rocks and has been applied in a wide field of sedimentary, metamorphic and magmatic geology. The method, however, suffers from limitations which mainly result from the interference of diamagnetic, paramagnetic and ferromagnetic fabrics (de Wall 2005) — the term ferromagnetism is used in a wider sense here, including e.g. ferrimagnetism. The AMS is an integral parameter which describes a crystallographic preferred orientation as an ellipsoid. The quantitative correlation of the AMS with the crystallographic preferred orientations should help to allow a closer view at the applicability and the limitations of the AMS analysis (see also Schmidt et al. 2006 a, b)... The results of this study are based on a large variety of fabric types of carbonate-mica marbles and mylonites, i.e. varying mica content, grain sizes, grain shapes, types and intensities of the crystallographic preferred orientation. The presented first correlations of the AMS and CPO for the single mineral phases in general demonstrate a good matching. Regarding the comparison of texture types and the AMS, limitations are possible. While single c-axis maxima and girdle-like c-axis distributions can be also distinguished by the AMS, it is obvious that distinguishing between these types and the double c-axis type is not possible at the present stage.
    Description: conference
    Keywords: 551 ; TOT 310 ; VKA 200 ; VAE 140 ; VEF 200 ; VER 200 ; VKB 270 ; VAE 120 ; Gesteinsmagnetismus {Geophysik} ; Gefügekunde der Gesteine ; Gesteinsdeformation {Strukturgeologie} ; Italien {Geologie} ; Namibia {Geologie} ; Produkte mechanischer Deformation {Petrologie} ; Methodik {Strukturgeologie} ; Apuaner Alpen ; Damara Orogen ; Karbonatgestein ; Deformation 〈Geologie〉 ; Magnetische Suszeptibilität ; Kristallorientierung ; Korrelationsanalyse
    Language: German
    Type: anthologyArticle , publishedVersion
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  • 17
    Publication Date: 2021-03-29
    Description: Das Holozäne Hengill-Vulkansystem liegt in der aktiven Westvulkanischen Zone in Südwestisland. Es beinhaltet den Hengill-Zentralvulkan, der sich südlich des Sees Thingvallavatn befindet, und ist eines der aktivsten geothermischen Systeme Islands (Abb. 1). Die aktuelle Spreizungsrate in der Westvulkanischen Zone liegt zwischen 3 und 7mma−1 bei einer Subsidenzrate von 1mma−1 (Tryggvason 1982; La Femina et al. 2005). Das Hengill-Vulkansystem ist 60–70km lang und zwischen 5 und 10km breit. Strukturgeologisch wird das Gebiet von großen NNE-streichenden Abschiebungen dominiert. Das Hauptziel dieser Untersuchung ist, das Verständnis für die Bruchentwicklung und die Fluidtransportmechanismen im Hengill-Gebiet zu verbessern. Dieses Verständnis ist notwendig, um realistischere Modelle über den Fluidtransport in den geothermischen Feldern erstellen zu können und um bessere Prognosen über ihre Lebensdauer zu ermöglichen. Weiterhin soll der Kenntnisstand über den Einfluss von Wässern auf Erdbebenentstehung untersucht werden, da in diesem Gebiet die meisten Erdbeben durch Fluidüberdruck ausgelöst werden.
    Description: conference
    Keywords: 551 ; VED 500 ; VAD 700 ; VAE 150 ; VAE 140 ; TOO 000 ; Island {Geologie} ; Regionaler Vulkanismus {Geologie} ; Strukturelle Erscheinungen {Strukturgeologie} ; Gesteinsdeformation {Strukturgeologie} ; Geothermik {Geophysik} ; Island 〈Südwest〉 ; Vulkan ; Klüftung ; Störung 〈Geologie〉 ; Wasserdurchlässigkeit ; Geothermische Energie
    Language: German
    Type: anthologyArticle , publishedVersion
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  • 18
    Publication Date: 2021-03-29
    Description: The island of Serifos is located in the Western Cyclades within the Attic- Cycladic metamorphic belt. It represents the westward continuation of an arcuate belt of Metamorphic Core Complexes with intrusions of late syn-post tectonic intrusions younging from East (e.g. Naxos main activity ca. 12Ma) to West (e.g. Serifos with 9–8Ma). In scientific discussions the dominance of probably continuous extension since ca. 30Ma (e.g. Jolivet & Faccenna, 2000) and the presence of Metamorphic Core Complexes (Lister et al. 1984) is accepted. The speculated roll-back of the subducting plate possibly started due to the slowing down of absolute plate convergence rate between Africa and Eurasia. This model is attractive, because it would also explain the shift from a compressional Andean-type regime to an extensional Mariana-type regime (Jolivet & Faccenna 2000). Contrary to the kinematic directions reported from the Central and Eastern Cyclades, the movement of the hanging wall of the Serifos Metamorphic Core Complex is south directed. The island’s main part is occupied by an undeformed granodiorite. Early granitic intrusions intruded into low-grade M2-crystalline rocks that have been overprinted to as high as amphibolite facies conditions due to contact metamorphism. Parts of these rocks (gneisses and amphibolites) as well as the early intrusions are deformed to mylonites (Grasemann et al. 2004).
    Description: conference
    Keywords: 551 ; VEF 300 ; VKB 292 ; VKB 270 ; VAE 140 ; Griechenland und griechische Inseln {Geologie} ; Metamorphe Komplexe, übriges Europa {Petrologie} ; Produkte mechanischer Deformation {Petrologie} ; Gesteinsdeformation {Strukturgeologie} ; Serifos ; Scherzone ; Mylonit ; Deformation 〈Geologie〉
    Language: German
    Type: anthologyArticle , publishedVersion
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  • 19
    Publication Date: 2021-03-29
    Description: Das Untersuchungsgebiet liegt im Übergangsbereich zwischen den Svekofenniden und der Transskandinavischen Magmatischen Zone, welcher als Teil einer Paläoproterozoischen E- bis NE-abtauchenden Subduktionszone interpretiert wird (z.B. Beunk & Page 2001). Im heutigen tiefkrustalen Erosionsniveau sind im Wesentlichen mehrere Generationen von Granitioden aufgeschlossen, die etwa im Zeitraum 1850–1650Ma (z.B. Åhäll & Larson 2000) in die zuvor gefalteten Metasedimente und Metavulkanite der paläo-Proterozoischen Västervik- Formation intrudierten. Dabei kam es, in Abhängigkeit von der primären Lithologie der Schichtenfolge, zu unterschiedlichen Formen kontaktmetamorpher und migmatischer Überprägungen bis hin zur Bildung anatektischer Granite. Innerhalb dieser migmatisch/ anatektischen Bereiche stellen Metabasite und Metaquarzite schmelzresistente Horizonte der ursprünglichen Abfolge dar. Nordwestlich von Västervik zeigen entsprechende Metaquarzite lokal komplexe, z.T. nicht-zylindrische Falten im m- bis 10er m-Maßstab, die sich deutlich von der einfacheren, großmaßdimesionierten Faltung in dieser Region abheben. Aufgrund von ersten Ergebnissen einer Vorstudie und einer Diplomkartierung wird angenommen, dass diese Strukturen durch Intrusionen von Mini-Lakkolithen in tiefere Niveaus der Västervik-Formation erzeugt wurden...
    Description: conference
    Keywords: 551 ; VAE 150 ; VAE 400 ; VAE 140 ; VKB 292 ; VKB 250 ; VKB 220 ; Strukturelle Erscheinungen {Strukturgeologie} ; Tektogenese {Geologie} ; Gesteinsdeformation {Strukturgeologie} ; Metamorphe Komplexe, übriges Europa {Petrologie} ; Metasedimente {Petrologie} ; Kontaktmetamorphe und metasomatische Gesteine {Petrologie} ; Svekofenniden ; Västervik 〈Region〉 ; Proterozoikum ; Aureole 〈Geologie〉 ; Metasediment ; Quarzit ; Faltung 〈Geologie〉 ; Deformation 〈Geologie〉
    Language: German
    Type: anthologyArticle , publishedVersion
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  • 20
    facet.materialart.
    Unknown
    Universitätsverlag Göttingen
    Publication Date: 2021-03-29
    Description: The orogenic wedge model (Davis et al. 1983; Platt 1986) marks a conceptual breakthrough in understanding the growth and long-term evolution of accretionary wedges. The characteristic rheology of subduction-related accretionary wedges is thought to change from Coulomb to viscous when the wedge becomes thicker than ca. 15 km, a transition that may influence the stability and dynamics of these wedges. Platt (1986) proposed that viscous flow may trigger extensional faulting in the upper rear part of the wedge and Wallis et al. (1993) argued that viscous flow may cause vertical ductile thinning of the rear part of the wedge. Material fluxes control the geometric shape of an accretionary wedge (Brandon et al. 1998; Platt 1986). Frontal accretion and erosion both tend to drive the wedge into a subcritical condition as the taper angle of the wedge is progressively reduced. This leads to horizontal shortening across the wedge. If underplating is dominantly controlling the flow field in the wedge and frontal accretion or erosion at the rear of the wedge are small, the wedge is supercritically tapered and leading horizontal extension. Horizontal extension leads to a subhorizontal foliation and may eventually lead to normal faulting in the rear-part of the wedge. Despite the importance of these issues, there remains a paucity of detailed information about ductile deformation and how viscous flow influences the stability of subduction-related accretionary wedges. Strain measurements are an instrument to address whether viscous flow strongly influences the deformation in accretionary wedges. They provide direct information about the kinematics of ancient orogenic belts. Additionally, they allow understanding important tectonic processes in subduction wedges such as the pattern of flow within the wedge. We focus on deformation analysis on a suite of samples from the Otago wedge exposed in the South Island of New Zealand. The Otago accretionary wedge offers a unique opportunity to study the tectonic evolution of a typical subduction-related accretionary complex. Its across-strike length of ca. 600 km makes it one of the largest exposed ancient accretionary wedges on Earth. Pressure and temperature estimates indicate that our samples are representative of deformation conditions to depths as great as ca. 35 km. This is similar to maximum depths observed for subducting slabs beneath modern forearc highs. The deformation measurements show that the strain magnitude is generally small in the Otago wedge. The oct values, a measure of the distortion a sample experienced (independent from the strain geometry), range from 0.34– 3.87 for the Rf /? strains, 1.01–4.28 for XTG strains across the whole suite of the Otago rock pile, and 0.08–0.70 for the absolute strains obtained from low metamorphic grade rocks. The Otago samples are characterized by considerable volume strain that increases from the lower textural zones towards the high-grade interior of the wedge. Our strain results are inconsistent with the models which advocate supercritically tapering of accretionary wedges and that supercritical tapering eventually triggers normal faulting. Taking averages of our strain measurements, a residence time in the wedge of 35 Myr, burial depths of 30 km, coaxial deformation and a depth-dependent rate for ductile deformation, we calculate vertically-averaged strain rates. Because the principal strain axes of the tensor average are all inclined, the vertical averaging changes the principal stretches. The horizontal principal stretch parallel to the 160°-striking Otago wedge becomes 0.79, that for across strike 0.88 and for vertical strain 0.44. Averaged strain rates are −1.44−16 s−1 for parallel-strike horizontal strain, −6.2−17 s−1 for across-strike horizontal strain, and −8.02−16 s−1 for vertical strain. The strain rates are related to volume loss and to the efficiency with which dissolved chemicals are advected away. The rates are similar to the ones calculated by Bolhar & Ring (2001) and Ring & Richter (2004) for the Franciscan wedge. These strain rates are orders of magnitude smaller than the 1−14 s−1 strain rates assumed by Platt (1986). Thus, our data imply that the Otago wedge could not shorten horizontally fast, and hence could not have steepened up its surface slope. The fact that shortening was accompanied by volume loss has another important and interesting consequence. Even if a case was envisioned in which horizontal shortening was fast enough to steepen up the surface slope of the wedge, the volume loss would not necessarily change the wedge geometry into a supercritical configuration triggering normal faulting. As a consequence of the slow strain rates and the high volume loss, viscous flow probably was not fast enough to significantly influence the stability of the wedge and to form a supercritically tapered wedge.
    Description: conference
    Keywords: 551 ; VAE 400 ; VET 500 ; VAE 130 ; VAE 140 ; Tektogenese {Geologie} ; Neuseeland {Geologie} ; Geomechanik ; Gesteinsdeformation {Strukturgeologie} ; Orogenese ; Akkretionskeil ; Deformation 〈Geologie〉 ; Viskosität ; Südinsel 〈Neuseeland〉
    Language: German
    Type: anthologyArticle , publishedVersion
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