Academic literature on the topic 'Izu-Bonin Trench'

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Journal articles on the topic "Izu-Bonin Trench"

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Jaxybulatov, K., I. Koulakov, and N. L. Dobretsov. "Segmentation of the Izu-Bonin and Mariana plates based on the analysis of the Benioff seismicity distribution and regional tomography results." Solid Earth Discussions 4, no. 2 (2012): 823–50. http://dx.doi.org/10.5194/sed-4-823-2012.

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Abstract. We present a new model of P- and S-velocity anomalies in the mantle down to 1300 km depth beneath the Izu-Bonin and Mariana (IBM) arcs. This model is derived based on tomographic inversion of global travel time data from the revised ISC catalogue. The results of inversion are thoroughly verified using a series of different tests. The obtained model is generally consistent with previous studies of different authors. We also present the distribution of relocated deep events projected to the vertical surface along the IBM arc. Unexpectedly, the seismicity form elongated vertical cluster
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MIRONOV, ALEXANDR N. "See lilies of the genus Bathycrinus (Echinodermata, Crinoidea: Bathycrinidae) from the North-West Pacific hadal trenches." Zootaxa 4604, no. 3 (2019): 401. http://dx.doi.org/10.11646/zootaxa.4604.3.1.

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In the North-West Pacific hadal trenches, four species belonging to the stalked crinoid genus Bathycrinus were found, three of them are new for science: Bathycrinus kirilli n. sp., B. longipinnus n. sp. and B. rozhnovi n. sp. B. kirilli n. sp. from the Izu-Bonin Trench (9715–9735 m) is the deepest-dwelling crinoid species. Similar characters shared by B. kirilli n. sp. to B. volubilis Mironov, 2000 from the Kuril-Kamchatka Trench (8175–9584 m) related to trench topography with isolated small basins, as previously suggested by Belyaev (1989). Hypotheses explaining why deepest hadal Bathycrinus
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Jaxybulatov, K., I. Koulakov, and N. L. Dobretsov. "Segmentation of the Izu-Bonin and Mariana slabs based on the analysis of the Benioff seismicity distribution and regional tomography results." Solid Earth 4, no. 1 (2013): 59–73. http://dx.doi.org/10.5194/se-4-59-2013.

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Abstract. We present a new model of P and S velocity anomalies in the mantle down to a depth of 1300 km beneath the Izu-Bonin and Mariana (IBM) arcs. This model is derived based on tomographic inversion of global travel time data from the revised ISC catalogue. The results of inversion are thoroughly verified using a series of different tests. The obtained model is generally consistent with previous studies by different authors. We also present the distribution of relocated deep events projected to the vertical surface along the IBM arc system. Unexpectedly, the seismicity forms elongated vert
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Plank, Terry, Katherine A. Kelley, Richard W. Murray, and Lacie Quintin Stern. "Chemical composition of sediments subducting at the Izu-Bonin trench." Geochemistry, Geophysics, Geosystems 8, no. 4 (2007): n/a. http://dx.doi.org/10.1029/2006gc001444.

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Lemenkova, Polina. "Variations in the bathymetry and bottom morphology of the Izu-Bonin Trench modelled by GMT." Bulletin of Geography. Physical Geography Series 18, no. 1 (2020): 41–60. http://dx.doi.org/10.2478/bgeo-2020-0004.

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AbstractCartographic visualisation is a central concept in geoinformatics, and Generic Mapping Tools (GMT) functionality provides a variety of modules for effective mapping. However, due to its specific scripting approach, there is not enough reported experience of GMT mapping, comparing to traditional GIS. This contribution introduces steps that can be taken to perform cartographic mapping and modelling using GMT. Geographically, this paper investigates the Izu-Bonin Trench in the Pacific Ocean. The aim was to compare its geomorphology in two segments, and each was modelled by a series of pro
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Lemenkova, Polina. "Variations in the bathymetry and bottom morphology of the Izu-Bonin Trench modelled by GMT." Bulletin of Geography. Physical Geography Series, 18, no. 1 (2020): 41–60. https://doi.org/10.2478/bgeo-2020-0004.

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Cartographic visualisation is a central concept in geoinformatics, and Generic Mapping Tools (GMT) functionality provides a variety of modules for effective mapping. However, due to its specific scripting approach, there is not enough reported experience of GMT mapping, comparing to traditional GIS. This contribution introduces steps that can be taken to perform cartographic mapping and modelling using GMT. Geographically, this paper investigates the Izu-Bonin Trench in the Pacific Ocean. The aim was to compare its geomorphology in two segments, and each was modelled by a series of profiles. T
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KAMIMURA, Aya, Junzo KASAHARA, Ryota HINO, Masanao SHINOHARA, Hajime SHIOBARA, and Toshihiko KANAZAWA. "Seismic Velocity Structure Investigation Across the Serpentine Diapir at the Izu-Bonin Trench." Journal of Geography (Chigaku Zasshi) 109, no. 4 (2000): plate4—plate5. http://dx.doi.org/10.5026/jgeography.109.4_plate4.

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Faccenna, Claudio, Erika Di Giuseppe, Francesca Funiciello, Serge Lallemand, and Jeroen van Hunen. "Control of seafloor aging on the migration of the Izu–Bonin–Mariana trench." Earth and Planetary Science Letters 288, no. 3-4 (2009): 386–98. http://dx.doi.org/10.1016/j.epsl.2009.09.042.

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Shinjoe, Hironao, Yuji Orihashi, and Ryo Anma. "U–Pb ages of Miocene near-trench granitic rocks of the Southwest Japan arc: implications for magmatism related to hot subduction." Geological Magazine 158, no. 1 (2019): 47–71. http://dx.doi.org/10.1017/s0016756819000785.

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AbstractWe present a new dataset of zircon U–Pb ages that document igneous activity in the SW Japan arc during middle Miocene time and discuss its relationship with the opening of the Japan Sea, Philippine Sea plate migration, and subduction of the young hot lithosphere of the Shikoku Basin. Precursory magmatism, characterized by dike and stock intrusions, started c. 15.6 Ma in both Kyushu and the Kii Peninsula. Most plutonism occurred between 15.5 and 13.5 Ma in an area 600 km long and 150 km wide. No along-arc trend was recognized in the U–Pb ages of igneous activity near the trench. Our dat
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Machida, Yoshihiko. "A new deep-sea ophidiid fish,Bassozetus levistomatus, from the Izu-Bonin Trench, Japan." Japanese Journal of Ichthyology 36, no. 2 (1989): 187–89. http://dx.doi.org/10.1007/bf02914320.

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Dissertations / Theses on the topic "Izu-Bonin Trench"

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Johnson, Julie A. "A Geochemical Study of Crustal Plutonic Rocks from the Southern Mariana Trench Forearc: Relationship to Volcanic Rocks Erupted during Subduction Initiation." FIU Digital Commons, 2014. http://digitalcommons.fiu.edu/etd/1249.

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Two suites of intermediate-felsic plutonic rocks were recovered by dredges RD63 and RD64 (R/V KK81-06-26) from the northern wall of the Mariana trench near Guam, which is located in the southern part of the Izu-Bonin-Mariana (IBM) island arc system. The locations of the dredges are significant as the area contains volcanic rocks (forearc basalts and boninites) that have been pivotal in explaining processes that occur when one lithospheric plate initially begins to subduct beneath another. The plutonic rocks have been classified based on petrologic and geochemical analyses, which provides insig
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Book chapters on the topic "Izu-Bonin Trench"

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Tararin, I. A. "Blueschist facies metamorphic rocks from the basement of the Izu-Bonin inner trench wall." In Water-Rock Interaction. Routledge, 2021. http://dx.doi.org/10.1201/9780203734049-150.

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Pratson, E. L., R. Reynolds, M. A. Lovell, P. A. Pezard, and C. Broglia. "Geochemical Well Logs in the Izu-Bonin Arc-Trench System, Sites 791, 792, and 793." In Proceedings of the Ocean Drilling Program, 126 Scientific Results. Ocean Drilling Program, 1992. http://dx.doi.org/10.2973/odp.proc.sr.126.167.1992.

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Cragg, B. A., P. Wellsbury, R. W. Murray, and R. J. Parkes. "Bacterial Populations in Deepwater Low-Sedimentation-Rate Marine Sediments and Evidence for Subsurface Bacterial Manganese Reduction (ODP Site 1149, Izu-Bonin Trench)." In Proceedings of the Ocean Drilling Program, 185 Scientific Results. Ocean Drilling Program, 2003. http://dx.doi.org/10.2973/odp.proc.sr.185.008.2003.

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Shiba, Masahiro. "Middle Cretaceous Carbonate Bank on the Daiichi-Kashima Seamount at the Junction of the Japan and Izu-Bonin Trenches." In Cretaceous Carbonate Platforms. American Association of Petroleum Geologists, 1993. http://dx.doi.org/10.1306/m56578c34.

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Conference papers on the topic "Izu-Bonin Trench"

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Kawamura, Kiichiro, Mebae Kuranaga, and Kenta Mochizuki. "EARLY DIAGENESIS OF DEEP-SEA SEDIMENTS ON INCOMING PLATES: EXAMPLES FROM THE IZU-BONIN TRENCH AND THE SUNDA TRENCH." In GSA Annual Meeting in Seattle, Washington, USA - 2017. Geological Society of America, 2017. http://dx.doi.org/10.1130/abs/2017am-296938.

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