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Dive into the research topics where Kyoko S. Kataoka is active.

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Featured researches published by Kyoko S. Kataoka.


Geochemistry Geophysics Geosystems | 2012

Heat flow in the Lesser Antilles island arc and adjacent back arc Grenada basin

Michael Manga; Matthew J. Hornbach; Anne Le Friant; Osamu Ishizuka; Nicole A. Stroncik; Tatsuya Adachi; Mohammed Aljahdali; Georges Boudon; Christoph Breitkreuz; Andrew Fraass; Akihiko Fujinawa; Robert G. Hatfield; Martin Jutzeler; Kyoko S. Kataoka; Sara Lafuerza; Fukashi Maeno; Michael Martinez-Colon; Molly McCanta; Sally Morgan; Martin R. Palmer; Takeshi Saito; Angela L. Slagle; Adam J. Stinton; K. S. V. Subramanyam; Yoshihiko Tamura; Peter J. Talling; Benoît Villemant; Deborah Wall-Palmer; Fei Wang

Using temperature gradients measured in 10 holes at 6 sites, we generate the first high fidelity heat flow measurements from Integrated Ocean Drilling Program drill holes across the northern and central Lesser Antilles arc and back arc Grenada basin. The implied heat flow, after correcting for bathymetry and sedimentation effects, ranges from about 0.1 W/m2 on the crest of the arc, midway between the volcanic islands of Montserrat and Guadeloupe, to 15 km from the crest in the back arc direction. Combined with previous measurements, we find that the magnitude and spatial pattern of heat flow are similar to those at continental arcs. The heat flow in the Grenada basin to the west of the active arc is 0.06 W/m2, a factor of 2 lower than that found in the previous and most recent study. There is no thermal evidence for significant shallow fluid advection at any of these sites. Present-day volcanism is confined to the region with the highest heat flow.


Geological Society of America Bulletin | 2008

Breakout flood from an ignimbrite-dammed valley after the 5 ka Numazawako eruption, northeast Japan

Kyoko S. Kataoka; Atsushi Urabe; Vern Manville; Atsushi Kajiyama

Numazawa volcano in northeast Japan erupted most recently at ca. 5 ka, forming a 2-km-diameter caldera and emplacing at least 4 km 3 of valley-confined ignimbrite. The ignimbrite dammed the Tadami River to a depth of >100 m, temporarily impounding >1.6 km 3 of water. Overtopping of the barrier triggered breaching and catastrophic release of the dam lake. Pyroclastic material redeposited by the ensuing flood is widely distributed along the Tadami and Agano Rivers in deposits tens of meters thick as far as the coastal Niigata Plain >150 km downstream of the volcano. Evidence for damming and flooding found along the rivers includes (1) fine-grained, thinly laminated lacustrine deposits upstream of the pyroclastic blockage; (2) 30-m-thick, pumiceous debris-flow and hyperconcentrated-flow deposits that show continuous sedimentation with no major hiatus downstream of the volcano; (3) fine-grained slackwater deposits at tributary river mouths; and (4) large flood boulders that form lags on stripped ignimbrite surfaces and younger terrace surfaces, or cropping out within hyperconcentrated-flow deposits. Paleohydraulic estimation techniques indicate a peak discharge of 30,000–50,000 m 3 /s at the breach point. Burial of Neolithic Jomon settlements by flood and volcaniclastic aggradational deposits at distal locations indicates that such indirect volcanogenic hazards are significant, even where direct primary consequences of volcanic eruptions are minor or absent.


Science & Engineering Faculty | 2015

Submarine record of volcanic island construction and collapse in the Lesser Antilles arc: First scientific drilling of submarine volcanic island landslides by IODP Expedition 340

A. Le Friant; Osamu Ishizuka; Georges Boudon; Martin R. Palmer; Peter J. Talling; B. Villemant; Tatsuya Adachi; Mohammed Aljahdali; Christoph Breitkreuz; Morgane Brunet; Benoit Caron; Maya Coussens; Christine Deplus; Daisuke Endo; Nathalie Feuillet; A.J. Fraas; Akihiko Fujinawa; Malcolm B. Hart; Robert G. Hatfield; Matt Hornbach; Martin Jutzeler; Kyoko S. Kataoka; J-C. Komorowski; Elodie Lebas; Sara Lafuerza; Fukashi Maeno; Michael Manga; Michael Martinez-Colon; Molly McCanta; Sally Morgan

IODP Expedition 340 successfully drilled a series of sites offshore Montserrat, Martinique and Dominica in the Lesser Antilles from March to April 2012. These are among the few drill sites gathered around volcanic islands, and the first scientific drilling of large and likely tsunamigenic volcanic island-arc landslide deposits. These cores provide evidence and tests of previous hypotheses for the composition and origin of those deposits. Sites U1394, U1399, and U1400 that penetrated landslide deposits recovered exclusively seafloor sediment, comprising mainly turbidites and hemipelagic deposits, and lacked debris avalanche deposits. This supports the concepts that i/ volcanic debris avalanches tend to stop at the slope break, and ii/ widespread and voluminous failures of preexisting low-gradient seafloor sediment can be triggered by initial emplacement of material from the volcano. Offshore Martinique (U1399 and 1400), the landslide deposits comprised blocks of parallel strata that were tilted or microfaulted, sometimes separated by intervals of homogenized sediment (intense shearing), while Site U1394 offshore Montserrat penetrated a flat-lying block of intact strata. The most likely mechanism for generating these large-scale seafloor sediment failures appears to be propagation of a decollement from proximal areas loaded and incised by a volcanic debris avalanche. These results have implications for the magnitude of tsunami generation. Under some conditions, volcanic island landslide deposits composed of mainly seafloor sediment will tend to form smaller magnitude tsunamis than equivalent volumes of subaerial block-rich mass flows rapidly entering water. Expedition 340 also successfully drilled sites to access the undisturbed record of eruption fallout layers intercalated with marine sediment which provide an outstanding high-resolution data set to analyze eruption and landslides cycles, improve understanding of magmatic evolution as well as offshore sedimentation processes.


Geochemistry Geophysics Geosystems | 2014

Late Pleistocene stratigraphy of IODP Site U1396 and compiled chronology offshore of south and south west Montserrat, Lesser Antilles

Deborah Wall-Palmer; Maya Coussens; Peter J. Talling; Martin Jutzeler; Michael Cassidy; Isabelle Marchant; Martin R. Palmer; S.F.L. Watt; Christopher W. Smart; Jodie K. Fisher; Malcolm B. Hart; Andrew Fraass; J. Trofimovs; Anne Le Friant; Osamu Ishizuka; Tatsuya Adachi; Mohammed Aljahdali; Georges Boudon; Christoph Breitkreuz; Daisuke Endo; Akihiko Fujinawa; Robert G. Hatfield; Matthew J. Hornbach; Kyoko S. Kataoka; Sara Lafuerza; Fukashi Maeno; Michael Manga; Michael Martinez-Colon; Molly McCanta; Sally Morgan

Marine sediments around volcanic islands contain an archive of volcaniclastic deposits, which can be used to reconstruct the volcanic history of an area. Such records hold many advantages over often incomplete terrestrial data sets. This includes the potential for precise and continuous dating of intervening sediment packages, which allow a correlatable and temporally constrained stratigraphic framework to be constructed across multiple marine sediment cores. Here we discuss a marine record of eruptive and mass-wasting events spanning ∼250 ka offshore of Montserrat, using new data from IODP Expedition 340, as well as previously collected cores. By using a combination of high-resolution oxygen isotope stratigraphy, AMS radiocarbon dating, biostratigraphy of foraminifera and calcareous nannofossils, and clast componentry, we identify five major events at Soufriere Hills volcano since 250 ka. Lateral correlations of these events across sediment cores collected offshore of the south and south west of Montserrat have improved our understanding of the timing, extent and associations between events in this area. Correlations reveal that powerful and potentially erosive density-currents traveled at least 33 km offshore and demonstrate that marine deposits, produced by eruption-fed and mass-wasting events on volcanic islands, are heterogeneous in their spatial distribution. Thus, multiple drilling/coring sites are needed to reconstruct the full chronostratigraphy of volcanic islands. This multidisciplinary study will be vital to interpreting the chaotic records of submarine landslides at other sites drilled during Expedition 340 and provides a framework that can be applied to the stratigraphic analysis of sediments surrounding other volcanic islands.


Geochemistry Geophysics Geosystems | 2016

The relationship between eruptive activity, flank collapse, and sea level at volcanic islands: a long-term (>1 Ma) record offshore Montserrat, Lesser Antilles

Maya Coussens; Deborah Wall-Palmer; Peter J. Talling; S.F.L. Watt; Michael Cassidy; Martin Jutzeler; Michael A. Clare; James E. Hunt; Michael Manga; Thomas M. Gernon; Martin R. Palmer; Stuart J. Hatter; Georges Boudon; Daisuke Endo; Akihiko Fujinawa; Robert G. Hatfield; Matthew J. Hornbach; Osamu Ishizuka; Kyoko S. Kataoka; Anne Le Friant; Fukashi Maeno; Molly McCanta; Adam J. Stinton

Hole U1395B, drilled southeast of Montserrat during Integrated Ocean Drilling Program Expedition 340, provides a long (>1 Ma) and detailed record of eruptive and mass-wasting events (>130 discrete events). This record can be used to explore the temporal evolution in volcanic activity and landslides at an arc volcano. Analysis of tephra fall and volcaniclastic turbidite deposits in the drill cores reveals three heightened periods of volcanic activity on the island of Montserrat (?930 ka to ?900 ka, ?810 ka to ?760 ka, and ?190 ka to ?120 ka) that coincide with periods of increased volcano instability and mass-wasting. The youngest of these periods marks the peak in activity at the Soufriere Hills volcano. The largest flank collapse of this volcano (?130 ka) occurred towards the end of this period, and two younger landslides also occurred during a period of relatively elevated volcanism. These three landslides represent the only large (>0.3 km3) flank collapses of the Soufriere Hills edifice, and their timing also coincides with periods of rapid sea-level rise (>5 m/ka). Available age data from other island arc volcanoes suggests a general correlation between the timing of large landslides and periods of rapid sea-level rise, but this is not observed for volcanoes in intra-plate ocean settings. We thus infer that rapid sea-level rise may modulate the timing of collapse at island arc volcanoes, but not in larger ocean-island settings.


Geochronometria | 2013

Luminescence dating of volcanogenic outburst flood sediments from Aso volcano and tephric loess deposits, southwest Japan

Sumiko Tsukamoto; Kyoko S. Kataoka; Yasuo Miyabuchi

Luminescence dating has been applied to volcanogenic outburst flood sediments (Takuma gravel bed) from Aso volcano, Japan, and tephric loess deposits overlying the gravel bed. The poly-mineral fine grains (4–11 μm) from loess deposits were measured with pulsed optically stimulated luminescence (pulsed OSL) and post-IR infrared stimulated luminescence (pIRIR) methods, whereas the Takuma gravel bed containing no quartz, was measured with IRSL and pIRIR methods using sand sized (150–200 μm) plagioclase. The loess deposits date back at least to ∼50 ka by consistent IRSL, pIRIR and pulsed OSL ages from the lowermost part of the loess deposits from one section. The ages obtained from the bottom part of the other loess section are not consistent each other. However, we consider that the pIRIR age (72±6 ka) which showed negligible anomalous fading is most reliable, and regard as a preliminary minimum age of the Takuma gravel bed. The equivalent doses (De) for the plagioclase from the Takuma gravel bed have a narrow distribution and the weighted mean of the three samples yield an age of 89±3 ka. This age is in agreement with the last caldera-forming eruption of Aso volcano (∼87 ka) and it is likely that the pIRIR signal has not been bleached before the deposition. IRSL dating without applying pIRIR using small aliquots was also conducted, however, the IRSL signal shows no clear evidence of an additional bleaching during the event of outburst flood from the caldera lake.


Journal of Geophysical Research | 2015

Permeability and pressure measurements in Lesser Antilles submarine slides: Evidence for pressure-driven slow-slip failure

Matthew J. Hornbach; Michael Manga; Michael Genecov; Robert Valdez; Peter Miller; Demian M. Saffer; Esther Adelstein; Sara Lafuerza; Tatsuya Adachi; Christoph Breitkreuz; Martin Jutzeler; Anne Le Friant; Osamu Ishizuka; Sally Morgan; Angela L. Slagle; Peter J. Talling; Andrew Fraass; S.F.L. Watt; Nicole A. Stroncik; Mohammed Aljahdali; Georges Boudon; Akihiko Fujinawa; Robert G. Hatfield; Kyoko S. Kataoka; Fukashi Maeno; Michael Martinez-Colon; Molly McCanta; Martin R. Palmer; Adam J. Stinton; K. S. V. Subramanyam

Recent studies hypothesize that some submarine slides fail via pressure-driven slow-slip deformation. To test this hypothesis, this study derives pore pressures in failed and adjacent unfailed deep marine sediments by integrating rock physics models, physical property measurements on recovered sediment core, and wireline logs. Two drill sites (U1394 and U1399) drilled through interpreted slide debris; a third (U1395) drilled into normal marine sediment. Near-hydrostatic fluid pressure exists in sediments at site U1395. In contrast, results at both sites U1394 and U1399 indicate elevated pore fluid pressures in some sediment. We suggest that high pore pressure at the base of a submarine slide deposit at site U1394 results from slide shearing. High pore pressure exists throughout much of site U1399, and Mohr circle analysis suggests that only slight changes in the stress regime will trigger motion. Consolidation tests and permeability measurements indicate moderately low (~10−16–10−17 m2) permeability and overconsolidation in fine-grained slide debris, implying that these sediments act as seals. Three mechanisms, in isolation or in combination, may produce the observed elevated pore fluid pressures at site U1399: (1) rapid sedimentation, (2) lateral fluid flow, and (3) shearing that causes sediments to contract, increasing pore pressure. Our preferred hypothesis is this third mechanism because it explains both elevated fluid pressure and sediment overconsolidation without requiring high sedimentation rates. Our combined analysis of subsurface pore pressures, drilling data, and regional seismic images indicates that slope failure offshore Martinique is perhaps an ongoing, creep-like process where small stress changes trigger motion.


Journal of Cultural Heritage Management and Sustainable Development | 2016

Concurrent and sustainable development of a local-scale digital heritage inventory through action research at Bat, Oman

Yasuhisa Kondo; Takehiro Miki; Taichi Kuronuma; Yuichi S. Hayakawa; Kyoko S. Kataoka; Takashi Oguchi

Purpose – The purpose of this paper is to present a concurrent implementation of sustainable inventory for the UNESCO World Heritage sites of Bat, Al-Khutm and Al-Ayn in the interior of Oman. Design/methodology/approach – A digital heritage inventory (DHI) was developed through an action research to realize demands of the local agent and to co-design the solution. The Ministry of Heritage and Culture of Oman, the local agent, demanded to have archaeological information of the sites shared with foreign expeditions, which had worked at the sites for decades, for efficient heritage management, scientific research, outreach, and education. To this end, the Bat Digital Heritage Inventory (BatDHI) was implemented by a combination of network-access-ready database application, open source geographical information systems, and a web-based map service to incorporate and visualize previous works, which were concurrently cross-checked and updated by ground-truth surveys. Findings – The online inventory made it possib...


Sedimentary Geology | 2009

Impacts of explosive volcanism on distal alluvial sedimentation: Examples from the Pliocene–Holocene volcaniclastic successions of Japan

Kyoko S. Kataoka; Vern Manville; Takeshi Nakajo; Atsushi Urabe


Geomorphology | 2011

Geomorphic and sedimentary evidence of a gigantic outburst flood from Towada caldera after the 15 ka Towada–Hachinohe ignimbrite eruption, northeast Japan

Kyoko S. Kataoka

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Osamu Ishizuka

National Institute of Advanced Industrial Science and Technology

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Michael Manga

University of California

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Martin R. Palmer

National Oceanography Centre

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