The thermal structure of the Dvurechenskii mud volcano and its implications for gas hydrate stability and eruption dynamics.

dc.contributor.authorFeseker, Tomas
dc.contributor.authorPape, Thomas
dc.contributor.authorWallmann, Klaus
dc.contributor.authorKlapp, Stephan A
dc.contributor.authorSchmidt-Schierhorn, Friederike
dc.contributor.authorBohrmann, Gerhard
dc.coverage.spatialMEDIAN LATITUDE: 44.282472 * MEDIAN LONGITUDE: 34.982091 * SOUTH-BOUND LATITUDE: 44.276300 * WEST-BOUND LONGITUDE: 34.974517 * NORTH-BOUND LATITUDE: 44.287717 * EAST-BOUND LONGITUDE: 34.986917 * DATE/TIME START: 2007-02-27T10:24:00 * DATE/TIME END: 2007-03-28T10:17:00
dc.date.accessioned2019-11-24T12:20:04Z
dc.date.available2019-11-24T12:20:04Z
dc.date.issued2009-09-27
dc.description.abstractThe sediment temperature distribution at mud volcanoes provides insights into their activity and into the occurrence of gas hydrates. If ambient pressure and temperature conditions are close to the limits of the gas hydrate stability field, the sediment temperature distribution not only limits the occurrence of gas hydrates, but is itself influenced by heat production and consumption related to the formation and dissociation of gas hydrates. Located in the Sorokin Trough in the northern Black Sea, the Dvurechenskii mud volcano (DMV) was in the focus of detailed investigations during the M72/2 and M73/3a cruises of the German R/V Meteor and the ROV Quest 4000 m in February and March 2007. A large number of in-situ sediment temperature measurements were conducted from the ROV and with a sensor-equipped gravity corer. Gas hydrates were sampled in pressurized cores using a dynamic autoclave piston corer (DAPC). The thermal structure of the DMV suggests a regime of fluid flow at rates decreasing from the summit towards the edges of the mud volcano, accompanied by intermittent mud expulsion at the summit. Modeled gas hydrate dissociation temperatures reveal that the gas hydrates at the DMV are very close to the stability limits. Changes in heat flow due to variable seepage rates probably do not result in changes in sediment temperature but are compensated by gas hydrate dissociation and formation.
dc.formatapplication/zip, 3 datasets
dc.identifierhttps://doi.pangaea.de/10.1594/PANGAEA.745565
dc.identifierhttps://doi.org/10.1594/PANGAEA.745565
dc.identifier.citationFeseker, Tomas; Pape, Thomas; Wallmann, Klaus; Klapp, Stephan A; Schmidt-Schierhorn, Friederike; Bohrmann, Gerhard (2009): The thermal structure of the Dvurechenskii mud volcano and its implications for gas hydrate stability and eruption dynamics. Marine and Petroleum Geology, 26(9), 1812-1823, https://doi.org/10.1016/j.marpetgeo.2009.01.021
dc.identifier.urihttps://repository.geologyscience.ru/handle/123456789/7863
dc.language.isoen
dc.publisherPANGAEA
dc.rightsCC-BY-3.0: Creative Commons Attribution 3.0 Unported
dc.rightsAccess constraints: unrestricted
dc.sourceSupplement to: Feseker, Tomas; Pape, Thomas; Wallmann, Klaus; Klapp, Stephan A; Schmidt-Schierhorn, Friederike; Bohrmann, Gerhard (2009): The thermal structure of the Dvurechenskii mud volcano and its implications for gas hydrate stability and eruption dynamics. Marine and Petroleum Geology, 26(9), 1812-1823, https://doi.org/10.1016/j.marpetgeo.2009.01.021
dc.subject1
dc.subject10
dc.subject11
dc.subject12
dc.subject13
dc.subject14
dc.subject15
dc.subject16
dc.subject17
dc.subject18
dc.subject19
dc.subject2
dc.subject20
dc.subject3
dc.subject4
dc.subject5
dc.subject6
dc.subject7
dc.subject8
dc.subject9
dc.subjectCenter for Marine Environmental Sciences
dc.subjectDAPC
dc.subjectDAPC-5
dc.subjectDAPC-6
dc.subjectDAPC-7
dc.subjectDvurechenskii
dc.subjectDvurechenskii mud volcano
dc.subjectDynamic autoclave piston corer
dc.subjectGC_T
dc.subjectGeoB11911
dc.subjectGeoB11914
dc.subjectGeoB11916
dc.subjectGravity Corer/temperature probe
dc.subjectM72/2
dc.subjectM72/2_273
dc.subjectM72/2_274
dc.subjectM72/2_275
dc.subjectM72/2_276
dc.subjectM72/2_277
dc.subjectM72/2_297
dc.subjectM72/2_298
dc.subjectM72/2_299
dc.subjectM72/2_300
dc.subjectM72/2_302
dc.subjectM72/2_303
dc.subjectM72/2_304
dc.subjectM72/2_305
dc.subjectM72/2_306
dc.subjectM72/2_307
dc.subjectM72/2_310
dc.subjectM72/2_311
dc.subjectM72/2_313
dc.subjectM72/2_314
dc.subjectM72/2_316
dc.subjectM72/3a
dc.subjectMARUM
dc.subjectMeteor (1986)
dc.titleThe thermal structure of the Dvurechenskii mud volcano and its implications for gas hydrate stability and eruption dynamics.
dc.title.alternativeTemperature measurements, gas chemistry, and gas hydrates of the Dvurechenskii mud volcano
dc.typeDataset

Файлы

Коллекции