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  • 2005-2009  (2,103,024)
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  • 1
    Publication Date: 2024-05-27
    Description: Numerous newly-identified traces of active faults in the Himalayan foothill zone along the HFF around Chandigarh, in Pinjore Dun, along the piedmont zone of the Lower Siwalik hill front and within the Lower Tertiary hill range reveal the pattern of thrust and strike-slip faulting, striking parallel to the principal structural trend (NNW-SSE) of the orogenic belt. The active Chandigarh Fault, Pinjore Garden Fault and Barsar thrust have vertically dislocated, warped and backtilted fluvial and alluvial-fan surfaces made up of Late Pleistocene-Holocene sediments. West- and southwest-facing fault scarplets with heights ranging from 12 to 50 m along these faults suggest continued tectonic movement through Late Pleistocene to recent times. Gentle warping and backtilting of the terraces on the hanging wall sides of the faults indicate fault-bend folding. These active faults are the manifestation of north-dipping imbricated thrust faults branching out from the major fault systems like the Main Boundary Fault (MBF) and Himalayan Frontal Fault (HFF), probably merging down northward into a décollement. The Taksal Fault, striking NNW-SSE, shows prominent right-lateral movement marked by lateral offset of streams and younger Quaternary terraces and occupies a narrow deep linear valley along the fault trace. Right stepping along this fault has resulted in formation of a small pull-apart basin. Fault scarplets facing ENE and WSW are the manifestation of dip-slip movement. This fault is an example of slip-partitioning between the strike-slip and thrust faults, suggesting ongoing oblique convergence of the Indian plate and northward migration of a tectonic sliver. Slip rate along the Taksal Fault has been calculated as 2.8 mm/yr. Preliminary trench investigation at the base of the Chandigarh Fault Scarp has revealed total displacement of 3.5 m along a low angle thrust fault with variable dip of 20° to 46° due northeast, possibly the result of one large magnitude (Mw 7) prehistoric earthquake. Taking into consideration the height of the Pinjore surface (20 to 25 m), tentative age (8.9 ± 1.9 ka), displacement during one event and average angle of fault dip (25°) gives slip rate of about 6.3 ± 2 mm/yr, a rate of horizontal shortening of 5.8 ± 1.8 mm/yr and recurrence of faulting of 555 ± 118 years along the Himalayan Frontal Fault.
    Description: Published
    Description: JCR Journal
    Description: open
    Keywords: active faults ; Northwestern Himalayan Front ; paleoearthquake ; thrust and right lateralstrike-slip faults ; slip-partitioning ; 04. Solid Earth::04.04. Geology::04.04.01. Earthquake geology and paleoseismology ; 04. Solid Earth::04.07. Tectonophysics::04.07.04. Plate boundaries, motion, and tectonics
    Repository Name: Istituto Nazionale di Geofisica e Vulcanologia (INGV)
    Type: article
    Format: 959249 bytes
    Format: application/pdf
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  • 2
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    PANGAEA
    In:  Supplement to: Bouimetarhan, Ilham; Marret, Fabienne; Dupont, Lydie M; Zonneveld, Karin A F (2009): Dinoflagellate cyst distribution in marine surface sediments off West Africa (6-17°N) in relation to sea-surface conditions, freshwater input and seasonal coastal upwelling. Marine Micropaleontology, 71(3-4), 113-130, https://doi.org/10.1016/j.marmicro.2009.02.001
    Publication Date: 2024-05-27
    Description: An organic-walled dinoflagellate cyst analysis was carried out on 53 surface sediment samples from West Africa (17-6°N) to obtain insight in the relationship between their spatial distribution and hydrological conditions in the upper water column as well as marine productivity in the study area. Multivariate analysis of the dinoflagellate cyst relative abundances and environmental parameters of the water column shows that sea-surface temperature, salinity, marine productivity and bottom water oxygen are the factors that relate significantly to the distribution patterns of individual species in the region. The composition of cyst assemblages and dinoflagellate cyst concentrations allows the identification of four hydrographic regimes; 1) the northern regime between 17 and 14°N characterized by high productivity associated with seasonal coastal upwelling, 2) the southern regime between 12 and 6°N associated with high-nutrient waters influenced by river discharge 3) the intermediate regime between 14 and 12°N influenced mainly by seasonal coastal upwelling additionally associated with fluvial input of terrestrial nutrients and 4) the offshore regime characterized by low chlorophyll-a concentrations in upper waters and high bottom water oxygen concentrations. Our data show that cysts of Polykrikos kofoidii, Selenopemphix quanta, Dubridinium spp., Echinidinium species, cysts of Protoperidinium monospinum and Spiniferites pachydermus are the best proxies to reconstruct the boundary between the NE trade winds and the monsoon winds in the subtropical eastern Atlantic Ocean. The association of Bitectatodinium spongium, Lejeunecysta oliva, Quinquecuspis concreta, Selenopemphix nephroides, Trinovantedinium applanatum can be used to reconstruct past river outflow variations within this region.
    Keywords: 286; 287; 288; 289; 290; 291; 293; 295; 297; 298; 300; 301; 302; 303; 304; 305; 306; 307; 310; 311; 312; 313; 314; 316; 317; 318; 319; 320; 321; 322; 323; 324; 326; 327; 329; 330; 331; 371; 376; 388; Atlantic Ocean; Center for Marine Environmental Sciences; Eckernfoerder Bay; GeoB9501-4; GeoB9502-5; GeoB9503-3; GeoB9503-5; GeoB9504-4; GeoB9505-3; GeoB9506-3; GeoB9508-4; GeoB9510-3; GeoB9512-4; GeoB9513-5; GeoB9515-2; GeoB9516-4; GeoB9517-5; GeoB9518-4; GeoB9519-6; GeoB9520-4; GeoB9521-3; GeoB9522-2; GeoB9525-5; GeoB9526-4; GeoB9527-6; GeoB9528-1; GeoB9529-1; GeoB9531-2; GeoB9532-1; GeoB9533-3; GeoB9534-4; GeoB9535-5; GeoB9536-4; GeoB9537-4; GeoB9538-5; GeoB9539-1; GeoB9541-1; GeoB9542-1; GeoB9544-1; GeoB9545-1; GeoB9546-1; GEOTROPEX 83, NOAMP I; Giant box corer; GIK16402-1; GIK16404-1; GIK16405-1; GIK16407-1; GIK16414-1; GIK16421-1; GIK16425-1; GIK16437-3; GIK16558-1; GIK16755-1; GIK16764-1; GIK16765-1; GIK16766-1; GIK16767-1; GIK16768-1; GIK16769-1; GKG; Gravity corer (Kiel type); LI198x; Littorina; M6/5; M65; M65/1; MARUM; Mauritania Canyon; Meteor (1964); Meteor (1986); MUC; MultiCorer; off Guinea; SL; van Veen Grab; VGRAB
    Type: Dataset
    Format: application/zip, 2 datasets
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  • 3
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    PANGAEA
    In:  Supplement to: Bouimetarhan, Ilham; Dupont, Lydie M; Schefuß, Enno; Mollenhauer, Gesine; Mulitza, Stefan; Zonneveld, Karin A F (2009): Palynological evidence for climatic and oceanic variability off NW Africa during the late Holocene. Quaternary Research, 72(2), 188-197, https://doi.org/10.1016/j.yqres.2009.05.003
    Publication Date: 2024-05-27
    Description: Pollen and organic-walled dinoflagellate cyst assemblages from core GeoB 9503-5 retrieved from the mud-belt ( 50 m water depth) off the Senegal River mouth have been analyzed to reconstruct short-term palaeoceanographic and palaeoenvironmental changes in subtropical NW Africa during the time interval from ca. 4200 to 1200 cal yr BP. Our study emphasizes significant coeval changes in continental and oceanic environments in and off Senegal and shows that initial dry conditions were followed by a strong and rapid increase in humidity between ca. 2900 and 2500 cal yr BP. After ca. 2500 cal yr BP, the environment slowly became drier again as indicated by slight increases in Sahelian savannah and desert elements in the pollen record. Around ca. 2200 cal yr BP, this relatively dry period ended with periodic pulses of high terrigenous contributions and strong fluctuations in fern spore and river plume dinoflagellate cyst percentages as well as in the fluxes of pollen, dinoflagellate cysts, fresh-water algae and plant cuticles, suggesting "episodic flash flood" events of the Senegal River. The driest phase developed after about 2100 cal yr BP.
    Keywords: 288; Center for Marine Environmental Sciences; GeoB9503-5; Gravity corer (Kiel type); M65/1; MARUM; Meteor (1986); SL
    Type: Dataset
    Format: application/zip, 3 datasets
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  • 4
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    PANGAEA
    Publication Date: 2024-05-27
    Keywords: 316; Center for Marine Environmental Sciences; GeoB9531-1; Gravity corer (Kiel type); M65/1; MARUM; Meteor (1986); SL
    Type: Dataset
    Format: unknown
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  • 5
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    PANGAEA
    Publication Date: 2024-05-27
    Keywords: 317; Center for Marine Environmental Sciences; GeoB9532-2; Gravity corer (Kiel type); M65/1; MARUM; Meteor (1986); SL
    Type: Dataset
    Format: unknown
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  • 6
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    PANGAEA
    Publication Date: 2024-05-27
    Keywords: 318; Center for Marine Environmental Sciences; GeoB9533-2; Gravity corer (Kiel type); M65/1; MARUM; Meteor (1986); SL
    Type: Dataset
    Format: unknown
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  • 7
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    PANGAEA
    Publication Date: 2024-05-27
    Keywords: 319; Center for Marine Environmental Sciences; GeoB9534-5; Gravity corer (Kiel type); M65/1; MARUM; Meteor (1986); SL
    Type: Dataset
    Format: unknown
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  • 8
    Publication Date: 2024-05-27
    Keywords: 175-1078C; Afrormosia; Age model; Age model calibration; Anemia-type; Anthoceros; Anthospermum; Benguela Current, South Atlantic Ocean; Blechnum; Borreria; Buxus-type madagascaria; Counting, palynology; Cyathea; DEPTH, sediment/rock; DRILL; Drilling/drill rig; DSDP/ODP/IODP sample designation; Joides Resolution; Lannea; Leea; Leg175; Leonotis; Liliaceae; Lophira; Ludwigia; Luffa; Lycopodium (Africa); Macaranga; Maerua-type; Maesa; Mallotus; Malvaceae (Africa); Manilkara; Marker, added; Marker, found; Martretia; Maytenus; Meliaceae; Melochia; Merremia; Mezoneuron-type; Mimosa pigra; Monopetalanthus; Moraceae; Morinda; Mussaenda; Myrica; Myriophyllum; Myrsine africana; Nauclea/Mitragyna; Neurada/Grielum; Nitraria; Nyctaginaceae; Nymphaea; Ocean Drilling Program; Ochnaceae undifferentiated; Ocimum; ODP; Olax; Olea; Olea capensis; Ophioglossum; Ormocarpum; Osmunda; Oxygonum; Pandanus; Papilionoideae; Paramacrolobium; Parinari; Parkinsonia; Pavonia-type; Pelargonium; Pentaclethra; Pentas; Pentzia-type; Petalidium; Phaeoceros; Phoenix; Phyla-type nodiflora; Phyllanthus; Piliostigma; Plantago; Plicosepalus; Podocarpus; Pollen, total; Polygala-type; Polygonum senegalense-type; Polypodiaceae; Potamogeton (Africa); Protea; Pseudocedrela; Pseudoprosopis; Psychotria; Psydrax-type subcordata; Pteridium; Pteris; Pterocarpus; Pycnanthus; Raphia; Restionaceae; Rhamnaceae undifferentiated; Rhizophora; Rhus-type; Rhynchosia-type; Rothmannia; Rubiaceae monade; Rubiaceae tetrade; Rytigynia; Sabicea; Salix; Salvadora persica; Salvinia; Sample code/label; Sauvagesia; Schefflera; Sclerocarya-type birrea; Scrophulariaceae (Africa); Securinega; Sesbania-type; Sherbournea; Solanum-type; Sorindeia-type; Spathodea; Spores; Spores, monolete; Spores, trilete; Spores, trilete echinate; Spores, trilete reticulate; Spores, trilete verrucate; Sterculia-type; Stereospermum; Stipularia africana; Stoebe-type; Strychnos; Swertia; Symphonia globulifera; Syzygium-type; Tamarindus/Cryptosepalum; Tapinanthus; Tarenna; Teclea-type; Tephrosia; Tessmannia; Tetrorchidium; Thymelaeaceae; Triaspis-type; Tribulus; Trichilia; Typha angustifolia-type; Typha latifolia; Uapaca; Urticaceae; Utricularia (Africa); Varia; Vigna; Virectaria; Volume; Walafrida; Welwitschia; Xyridaceae; Zanthoxylum; Zygophyllum
    Type: Dataset
    Format: text/tab-separated-values, 26400 data points
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  • 9
    Publication Date: 2024-05-27
    Keywords: 286; 287; 288; 289; 290; 291; 293; 295; 297; 298; 300; 301; 302; 303; 304; 305; 306; 307; 310; 311; 312; 313; 314; 316; 317; 318; 319; 320; 321; 322; 323; 324; 326; 327; 329; 330; 331; Bitectatodinium spongium; Brigantedinium spp.; Center for Marine Environmental Sciences; Counting, palynology; DEPTH, sediment/rock; Dinoflagellate cyst; Dinoflagellate cyst indeterminata; Dubridinium spp.; Echinidinium aculeatum; Echinidinium delicatum; Echinidinium granulatum; Echinidinium spp.; Echinidinium transparantum; Elevation of event; Event label; GeoB9501-4; GeoB9502-5; GeoB9503-3; GeoB9504-4; GeoB9505-3; GeoB9506-3; GeoB9508-4; GeoB9510-3; GeoB9512-4; GeoB9513-5; GeoB9515-2; GeoB9516-4; GeoB9517-5; GeoB9518-4; GeoB9519-6; GeoB9520-4; GeoB9521-3; GeoB9522-2; GeoB9525-5; GeoB9526-4; GeoB9527-6; GeoB9528-1; GeoB9529-1; GeoB9531-2; GeoB9532-1; GeoB9533-3; GeoB9534-4; GeoB9535-5; GeoB9536-4; GeoB9537-4; GeoB9538-5; GeoB9539-1; GeoB9541-1; GeoB9542-1; GeoB9544-1; GeoB9545-1; GeoB9546-1; Impagidinium aculeatum; Impagidinium paradoxum; Impagidinium patulum; Impagidinium spp.; Latitude of event; Leujeunocysta oliva; Lingulodinium machaerophorum; Longitude of event; M65/1; MARUM; Mauritania Canyon; Meteor (1986); MUC; MultiCorer; Nematosphaeropsis labyrinthus; Operculodinium centrocarpum; Operculodinium israelianum; Pentapharsodinium dalei; Polykrikos kofoidii; Polysphaeridium zoharyi; Protoperidinium americanum; Protoperidinium monospinum; Protoperidinium spp.; Protoperidinium stellatum; Quinquecuspis concreta; Selenopemphix nephroides; Selenopemphix quanta; Spiniferites bentori; Spiniferites bulloides; Spiniferites hyperacanthus; Spiniferites mirabilis; Spiniferites pachydermus; Spiniferites ramosus; Spiniferites spp.; Stelladinium spp.; Trinovantedinium applanatum; Tuberculodinium vancampoae; Votadinium calvum; Votadinium spinosum; Xandarodinium xanthum
    Type: Dataset
    Format: text/tab-separated-values, 1591 data points
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  • 10
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    PANGAEA
    Publication Date: 2024-05-27
    Keywords: 286; Center for Marine Environmental Sciences; GeoB9501-5; Gravity corer (Kiel type); M65/1; MARUM; Mauritania Canyon; Meteor (1986); SL
    Type: Dataset
    Format: unknown
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