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1The Interpretation Of Crustal Dynamics Data In Terms Of Plate Interactions And Active Tectonics Of The Anatolian Plate And Surrounding Regions In The Middle East

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During the past 6 months, efforts were concentrated on the following areas: (1) Continued development of realistic, finite element modeling of plate interactions and associated deformation in the Eastern Mediterranean; (2) Neotectonic field investigations of seismic faulting along the active fault systems in Turkey with emphasis on identifying seismic gaps along the North Anatolian fault; and (3) Establishment of a GPS regional monitoring network in the zone of ongoing continental collision in eastern Turkey (supported in part by NSF).

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2Active Tectonics : Earthquakes, Uplift, And Landscape

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During the past 6 months, efforts were concentrated on the following areas: (1) Continued development of realistic, finite element modeling of plate interactions and associated deformation in the Eastern Mediterranean; (2) Neotectonic field investigations of seismic faulting along the active fault systems in Turkey with emphasis on identifying seismic gaps along the North Anatolian fault; and (3) Establishment of a GPS regional monitoring network in the zone of ongoing continental collision in eastern Turkey (supported in part by NSF).

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3NASA Technical Reports Server (NTRS) 19830005413: Seismicity And Active Tectonics Of The Andes And The Origin Of The Altiplano

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Large earthquakes and active deformation on the Andes were studied. Earthquakes on the east side of the Andes were generally found to reflect east-west crustal shortening. These earthquakes seem to occur throughout the crust and do not reflect a detachment and low angle thrusting of the sedimentary cover onto the Brazilian shield. Instead they imply deformation of the basement. The rate of shortening is compatible with construction of the Andes by crustal shortening since the late Cretaceous, and the surface geology, at least qualitatively, is considered to reflect this process. Andean margins are considered to be a result of crustal shortening. The crustal shortening in the sub-Andes occurs concurrently with normal faulting at high elevations in parts of the Andes. The normal faulting is associated with the buoyancy of the thick crust. Crustal shortening thickens the crust and work is done against gravity. When the crustal thickness and elevation reach limiting values, the range grows laterally by further thrusting on the margins.

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4Active Tectonics And Seismic Hazards Of Puerto Rico, The Virgin Islands, And Offshore Areas

Large earthquakes and active deformation on the Andes were studied. Earthquakes on the east side of the Andes were generally found to reflect east-west crustal shortening. These earthquakes seem to occur throughout the crust and do not reflect a detachment and low angle thrusting of the sedimentary cover onto the Brazilian shield. Instead they imply deformation of the basement. The rate of shortening is compatible with construction of the Andes by crustal shortening since the late Cretaceous, and the surface geology, at least qualitatively, is considered to reflect this process. Andean margins are considered to be a result of crustal shortening. The crustal shortening in the sub-Andes occurs concurrently with normal faulting at high elevations in parts of the Andes. The normal faulting is associated with the buoyancy of the thick crust. Crustal shortening thickens the crust and work is done against gravity. When the crustal thickness and elevation reach limiting values, the range grows laterally by further thrusting on the margins.

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5NASA Technical Reports Server (NTRS) 19880015708: The Interpretation Of Crustal Dynamics Data In Terms Of Plate Interactions And Active Tectonics Of The Anatolian Plate And Surrounding Regions In The Middle East

By

The long-term objective of this project is to interpret NASA's Crustal Dynamics measurements (SLR) in the Eastern Mediterranean region in terms of relative plate movements and intraplate deformation. The approach is to combine realistic modeling studies with analysis of available geophysical and geological observations to provide a framework for interpreting NASA's measurements. This semi-annual report concentrates on recent results regarding the tectonics of Anatolia and surrounding regions from ground based observations. Also reported on briefly is progress in the use of the Global Positioning System to densify SLR observations in the Eastern Mediterranean. Reference is made to the previous annual report for a discussion of modeling results.

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  • Title: ➤  NASA Technical Reports Server (NTRS) 19880015708: The Interpretation Of Crustal Dynamics Data In Terms Of Plate Interactions And Active Tectonics Of The Anatolian Plate And Surrounding Regions In The Middle East
  • Author: ➤  
  • Language: English

“NASA Technical Reports Server (NTRS) 19880015708: The Interpretation Of Crustal Dynamics Data In Terms Of Plate Interactions And Active Tectonics Of The Anatolian Plate And Surrounding Regions In The Middle East” Subjects and Themes:

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6NASA Technical Reports Server (NTRS) 19830002405: Seismicity And Active Tectonics Of The Andes And The Origin Of The Altiplano

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Shallow and intermediate depth earthquakes and crustal movements in the Andes Mountains of Peru are discussed. Epicenters of major seismic events are shown on charts. Microearthquakes are mapped on a chart.

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7Sedimentation, Tectonics, And Eustasy : Sea-level Changes At Active Margins

Shallow and intermediate depth earthquakes and crustal movements in the Andes Mountains of Peru are discussed. Epicenters of major seismic events are shown on charts. Microearthquakes are mapped on a chart.

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8NASA Technical Reports Server (NTRS) 20120010526: Plate Margin Deformation And Active Tectonics Along The Northern Edge Of The Yakutat Terrane In The Saint Elias Orogen, Alaska And Yukon, Canada

By

The northwest directed motion of the Pacific plate is accompanied by migration and collision of the Yakutat terrane into the cusp of southern Alaska. The nature and magnitude of accretion and translation on upper crustal faults and folds is poorly constrained, however, due to pervasive glaciation. In this study we used high-resolution topography, geodetic imaging, seismic, and geologic data to advance understanding of the transition from strike-slip motion on the Fairweather fault to plate margin deformation on the Bagley fault, which cuts through the upper plate of the collisional suture above the subduction megathrust. The Fairweather fault terminates by oblique-extensional splay faulting within a structural syntaxis, allowing rapid tectonic upwelling of rocks driven by thrust faulting and crustal contraction. Plate motion is partly transferred from the Fairweather to the Bagley fault, which extends 125 km farther west as a dextral shear zone that is partly reactivated by reverse faulting. The Bagley fault dips steeply through the upper plate to intersect the subduction megathrust at depth, forming a narrow fault-bounded crustal sliver in the obliquely convergent plate margin. Since . 20 Ma the Bagley fault has accommodated more than 50 km of dextral shearing and several kilometers of reverse motion along its southern flank during terrane accretion. The fault is considered capable of generating earthquakes because it is linked to faults that generated large historic earthquakes, suitably oriented for reactivation in the contemporary stress field, and locally marked by seismicity. The fault may generate earthquakes of Mw <= 7.5.

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9Active Tectonics : Earthquakes, Uplift, And Landscape

By

The northwest directed motion of the Pacific plate is accompanied by migration and collision of the Yakutat terrane into the cusp of southern Alaska. The nature and magnitude of accretion and translation on upper crustal faults and folds is poorly constrained, however, due to pervasive glaciation. In this study we used high-resolution topography, geodetic imaging, seismic, and geologic data to advance understanding of the transition from strike-slip motion on the Fairweather fault to plate margin deformation on the Bagley fault, which cuts through the upper plate of the collisional suture above the subduction megathrust. The Fairweather fault terminates by oblique-extensional splay faulting within a structural syntaxis, allowing rapid tectonic upwelling of rocks driven by thrust faulting and crustal contraction. Plate motion is partly transferred from the Fairweather to the Bagley fault, which extends 125 km farther west as a dextral shear zone that is partly reactivated by reverse faulting. The Bagley fault dips steeply through the upper plate to intersect the subduction megathrust at depth, forming a narrow fault-bounded crustal sliver in the obliquely convergent plate margin. Since . 20 Ma the Bagley fault has accommodated more than 50 km of dextral shearing and several kilometers of reverse motion along its southern flank during terrane accretion. The fault is considered capable of generating earthquakes because it is linked to faults that generated large historic earthquakes, suitably oriented for reactivation in the contemporary stress field, and locally marked by seismicity. The fault may generate earthquakes of Mw <= 7.5.

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10NASA Technical Reports Server (NTRS) 19870019620: The Interpretation Of Crustal Dynamics Data In Terms Of Plate Interactions And Active Tectonics Of The Anatolian Plate And Surrounding Regions In The Middle East

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The long term objective of this project is to interpret NASA's Crustal Dynamics measurements (SLR) in the Eastern Mediterranean region in terms of relative plate motions and intraplate deformation. The approach is to combine realistic modeling studies with an analysis of available geophysical and geological observations to provide a framework for interpreting NASA's measurements. This semi-annual report concentrates on recent results regarding the tectonics of Anatolia and surrounding regions from ground based observations. Also briefly reported on is progress made in using GPS measurements to densify SLR observations in the Eastern Mediterranean.

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  • Title: ➤  NASA Technical Reports Server (NTRS) 19870019620: The Interpretation Of Crustal Dynamics Data In Terms Of Plate Interactions And Active Tectonics Of The Anatolian Plate And Surrounding Regions In The Middle East
  • Author: ➤  
  • Language: English

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11Exploring The Active Tectonics Of Kalardasht And Abbasabad Basin Based On Morphometric Indices

By

Morphometric indices are widely used as a tool for identifying and characterizing the deformed sections by active faults. So far, the relationship between active tectonics and morphotectonics has not been studied in the studied area. By determining active processes in the Klardasht and Abbasabad basin and taking the necessary measures, it is possible to avoid damages caused by natural hazards such as floods and earthquakes in this area. In this study, using morphometric indices, the basins of a part of Central Alborz were investigated in terms of the influence of active tectonics. So, the Klardasht and Abbasabad basin was analyzed using Hierarchical Anomaly Index (∆a), Longitudinal River Gradient index (SL), Form Factor Index (Ff), Drainage Density Index (Dd) and Relative Prominence Index (Bh) in 18 drainage basins of the specific area. Along the North Alborz, Khazar and Azarak faults, the amount of these indicators increased. So, it can be concluded that the tectonics of the studied area is active due to the activity of these faults. Finally, by determining the Relative Active Tectonic index (Iat), the region was zoned into four categories (very high, high, medium and low) in terms of the level of tectonic activity. In about 66.5% of the region, which is dominated by the activity of the main faults in the region. Other sub-faults formed by recent tectonic movements show moderate to high tectonic activity.

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12The Impact Of Active Tectonics On The Geomorphological Evidence Of Alluvial Fans (Case Study: Alluvial Fans Between Bardaskan And Kashmar)

This study investigated the impact of active tectonics, specifically the Dorubeh fault and an oblique-slip reverse fault, on the morphology of alluvial fans situated between Kashmar City and Ali Abad Keshmar Village in Bardaskan. The research employed a cartographic-analytical approach, utilizing 1:25,000 topographical maps, 1:100,000 and 1:250,000 geological maps, Landsat satellite images, and Google Earth. Mapping and image processing were conducted using such software as ArcMap, ArcView, Google Earth, and QGIS. The results demonstrated that fault activity plays a crucial role in shaping the predominant geomorphic features within this region, specifically the formation of alluvial fans known as bajada. The oblique-slip reverse fault, specifically, has induced significant modifications in the alluvial fans. It has repositioned the primary channels from central to peripheral and lateral positions, leading to alterations in sediment deposition patterns. Consequently, certain alluvial fans now intersect at three transverse surfaces and two longitudinal and transverse surfaces. The Doruneh fault’s activity is characterized by the manifestation of uplifts, pressure ridges, and pressure anticlines occurring at various sections within the alluvial fans, including the upper, lower, and basal regions. This fault caused left-lateral offsets in certain sub-channels on the fan's surface, resulting in the development of single-surface and nested two-surface transverse and longitudinal alluvial fans at the base of the fan and the base of the pressure ridges. Furthermore, it modified the point of intersection of the primary alluvial channels, leading to the formation of segmented fans downstream of Doruneh fault.

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13Active Tectonics And Alluvial Rivers

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This study investigated the impact of active tectonics, specifically the Dorubeh fault and an oblique-slip reverse fault, on the morphology of alluvial fans situated between Kashmar City and Ali Abad Keshmar Village in Bardaskan. The research employed a cartographic-analytical approach, utilizing 1:25,000 topographical maps, 1:100,000 and 1:250,000 geological maps, Landsat satellite images, and Google Earth. Mapping and image processing were conducted using such software as ArcMap, ArcView, Google Earth, and QGIS. The results demonstrated that fault activity plays a crucial role in shaping the predominant geomorphic features within this region, specifically the formation of alluvial fans known as bajada. The oblique-slip reverse fault, specifically, has induced significant modifications in the alluvial fans. It has repositioned the primary channels from central to peripheral and lateral positions, leading to alterations in sediment deposition patterns. Consequently, certain alluvial fans now intersect at three transverse surfaces and two longitudinal and transverse surfaces. The Doruneh fault’s activity is characterized by the manifestation of uplifts, pressure ridges, and pressure anticlines occurring at various sections within the alluvial fans, including the upper, lower, and basal regions. This fault caused left-lateral offsets in certain sub-channels on the fan's surface, resulting in the development of single-surface and nested two-surface transverse and longitudinal alluvial fans at the base of the fan and the base of the pressure ridges. Furthermore, it modified the point of intersection of the primary alluvial channels, leading to the formation of segmented fans downstream of Doruneh fault.

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14Studies In Geophysics: Active Tectonics

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Active tectonics is defined within the study as tectonic movements that are expected to occur within a future time span of concern to society. Such movements and their associated hazards include earthquakes, volcanic eruptions, and land subsidence and emergence. The entire range of geology, geophysics, and geodesy is, to some extent, pertinent to this topic. The needs for useful forecasts of tectonic activity, so that actions may be taken to mitigate hazards, call for special attention to ongoing tectonic activity. Further progress in understanding active tectonics depends on continued research. Particularly important is improvement in the accuracy of dating techniques for recent geologic materials.

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15NASA Technical Reports Server (NTRS) 19900009508: The Interpretation Of Crustal Dynamics Data In Terms Of Plate Interactions And Active Tectonics Of The Anatolian Plate And Surrounding Regions In The Middle East

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During the past 6 months, efforts were concentrated on the following areas: (1) Continued development of realistic, finite element modeling of plate interactions and associated deformation in the Eastern Mediterranean; (2) Neotectonic field investigations of seismic faulting along the active fault systems in Turkey with emphasis on identifying seismic gaps along the North Anatolian fault; and (3) Establishment of a GPS regional monitoring network in the zone of ongoing continental collision in eastern Turkey (supported in part by NSF).

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  • Title: ➤  NASA Technical Reports Server (NTRS) 19900009508: The Interpretation Of Crustal Dynamics Data In Terms Of Plate Interactions And Active Tectonics Of The Anatolian Plate And Surrounding Regions In The Middle East
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16NASA Technical Reports Server (NTRS) 19920014315: The Interpretation Of Crustal Dynamics Data In Terms Of Plate Interactions And Active Tectonics Of The Anatolian Plate And Surrounding Regions In The Middle East

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A detailed study was made of the consequences of the Arabian plate convergence against Eurasia and its effects on the tectonics of Anatolia and surrounding regions of the eastern Mediterranean. A primary source of information is time rates of change of baseline lengths and relative heights determined by repeated SLR measurements. These SLR observations are augmented by a network of GPS stations in Anatolia, Aegea, and Greece, established and twice surveyed since 1988. The existing SLR and GPS networks provide the spatial resolution necessary to reveal the details of ongoing tectonic processes in this area of continental collision. The effort has involved examining the state of stress in the lithosphere and relative plate motions as revealed by these space based geodetic measurements, seismicity, and earthquake mechanisms as well as the aseismic deformations of the plates from conventional geodetic data and geological evidence. These observations are used to constrain theoretical calculations of the relative effects of: (1) the push of the Arabian plate; (2) high topography of Eastern Anatolia; (3) the geometry and properties of African-Eurasian plate boundary; (4) subduction under the Hellenic Arc and southwestern Turkey; and (5) internal deformation and rotation of the Anatolian plate.

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  • Title: ➤  NASA Technical Reports Server (NTRS) 19920014315: The Interpretation Of Crustal Dynamics Data In Terms Of Plate Interactions And Active Tectonics Of The Anatolian Plate And Surrounding Regions In The Middle East
  • Author: ➤  
  • Language: English

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17Exercises In Active Tectonics: An Introduction To Earthquakes & Tectonics

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A detailed study was made of the consequences of the Arabian plate convergence against Eurasia and its effects on the tectonics of Anatolia and surrounding regions of the eastern Mediterranean. A primary source of information is time rates of change of baseline lengths and relative heights determined by repeated SLR measurements. These SLR observations are augmented by a network of GPS stations in Anatolia, Aegea, and Greece, established and twice surveyed since 1988. The existing SLR and GPS networks provide the spatial resolution necessary to reveal the details of ongoing tectonic processes in this area of continental collision. The effort has involved examining the state of stress in the lithosphere and relative plate motions as revealed by these space based geodetic measurements, seismicity, and earthquake mechanisms as well as the aseismic deformations of the plates from conventional geodetic data and geological evidence. These observations are used to constrain theoretical calculations of the relative effects of: (1) the push of the Arabian plate; (2) high topography of Eastern Anatolia; (3) the geometry and properties of African-Eurasian plate boundary; (4) subduction under the Hellenic Arc and southwestern Turkey; and (5) internal deformation and rotation of the Anatolian plate.

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18Trench-forearc Geology : Sedimentation And Tectonics On Modern And Ancient Active Plate Margins

A detailed study was made of the consequences of the Arabian plate convergence against Eurasia and its effects on the tectonics of Anatolia and surrounding regions of the eastern Mediterranean. A primary source of information is time rates of change of baseline lengths and relative heights determined by repeated SLR measurements. These SLR observations are augmented by a network of GPS stations in Anatolia, Aegea, and Greece, established and twice surveyed since 1988. The existing SLR and GPS networks provide the spatial resolution necessary to reveal the details of ongoing tectonic processes in this area of continental collision. The effort has involved examining the state of stress in the lithosphere and relative plate motions as revealed by these space based geodetic measurements, seismicity, and earthquake mechanisms as well as the aseismic deformations of the plates from conventional geodetic data and geological evidence. These observations are used to constrain theoretical calculations of the relative effects of: (1) the push of the Arabian plate; (2) high topography of Eastern Anatolia; (3) the geometry and properties of African-Eurasian plate boundary; (4) subduction under the Hellenic Arc and southwestern Turkey; and (5) internal deformation and rotation of the Anatolian plate.

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  • Title: ➤  Trench-forearc Geology : Sedimentation And Tectonics On Modern And Ancient Active Plate Margins
  • Language: English

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19NASA Technical Reports Server (NTRS) 19870008838: Studies In Geophysics: Active Tectonics

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Active tectonics is defined within the study as tectonic movements that are expected to occur within a future time span of concern to society. Such movements and their associated hazards include earthquakes, volcanic eruptions, and land subsidence and emergence. The entire range of geology, geophysics, and geodesy is, to some extent, pertinent to this topic. The needs for useful forecasts of tectonic activity, so that actions may be taken to mitigate hazards, call for special attention to ongoing tectonic activity. Further progress in understanding active tectonics depends on continued research. Particularly important is improvement in the accuracy of dating techniques for recent geologic materials.

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  • Title: ➤  NASA Technical Reports Server (NTRS) 19870008838: Studies In Geophysics: Active Tectonics
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