IODP Expedition 361 Thermal conductivity

Thermal conductivity was measured using the heated needle method in either full-space needle configuration (soft/saturated sediments) or half-space needle configuration (harder materials) of a TeKa Berlin TK-04 thermal conductivity meter. Heat is applied to the sample and then thermal equilibrium is...

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Main Authors: Hall, I.R., Hemming, S.R., LeVay, L.J., Barker, S., Berke, M.A., Brentegani, L., Caley, T., Cartagena-Sierra, A., Charles, C.D., Coenen, J.J., Crespin, J.G., Franzese, A.M., Gruetzner, J., Han, X., Hines, S.K.V., Jimenez-Espejo, F.J., Just, J., Koutsodendris, A., Kubota, K., Lathika, N., Norris, R.D., Pereira dos Santos, T., Robinson, R., Rolinson, J.M., Simon, M.H., Tangunan, D., van der Lubbe, J.J.L., Yamane, M., Zhang, H.
Other Authors: International Ocean Discovery Program
Format: Other/Unknown Material
Language:unknown
Published: Zenodo 2020
Subjects:
Online Access:https://doi.org/10.5281/zenodo.3633175
id ftzenodo:oai:zenodo.org:3633175
record_format openpolar
spelling ftzenodo:oai:zenodo.org:3633175 2024-09-15T17:42:43+00:00 IODP Expedition 361 Thermal conductivity Hall, I.R. Hemming, S.R. LeVay, L.J. Barker, S. Berke, M.A. Brentegani, L. Caley, T. Cartagena-Sierra, A. Charles, C.D. Coenen, J.J. Crespin, J.G. Franzese, A.M. Gruetzner, J. Han, X. Hines, S.K.V. Jimenez-Espejo, F.J. Just, J. Koutsodendris, A. Kubota, K. Lathika, N. Norris, R.D. Pereira dos Santos, T. Robinson, R. Rolinson, J.M. Simon, M.H. Tangunan, D. van der Lubbe, J.J.L. Yamane, M. Zhang, H. International Ocean Discovery Program 2020-01-27 https://doi.org/10.5281/zenodo.3633175 unknown Zenodo https://doi.org/10.14379/iodp.proc.361.2017 https://zenodo.org/communities/iodp https://doi.org/10.5281/zenodo.3633174 https://doi.org/10.5281/zenodo.3633175 oai:zenodo.org:3633175 info:eu-repo/semantics/openAccess Creative Commons Zero v1.0 Universal https://creativecommons.org/publicdomain/zero/1.0/legalcode Expedition 361 JOIDES Resolution South African Climates Agulhas LGM Density Profile Site U1474 Site U1475 Site U1476 Site U1477 Site U1478 Ancillary Project Letter (APL-845) Climate and Ocean Change monsoons AABW (Antarctic Bottom Water) AAIW (Antarctic Intermediate Water) Agulhas Bank Agulhas Current Agulhas leakage Agulhas Plateau Agulhas Return Current Agulhas ring Agulhas Undercurrent ASHSW (Arabian Sea High Salinity Water) Cape Basin CDW (Circumpolar Deep Water) Davie Ridge Delagoa Bight DSTF (Dynamical Southern Ocean Subtropical Front) East Madagascar Current EIOW (Equatorial Indian Ocean Water) Indian-Atlantic Ocean gateway IOW (Indian Ocean Water) ITCZ (Intertropical Convergence Zone) Limpopo River Mozambique Channel Mozambique Undercurrent NADW (North Atlantic Deep Water) Natal Pulses Natal Valley RSIW (Red Sea Intermediate Water) SAF (Subantarctic Front) SICW (South Indian Central Water) South Atlantic Ocean Southeast African margin Southwest Indian Ocean STF (Subtropical Front) STSW (Subtropical Surface Water) TSW (Tropical Surface Water) Zambezi River info:eu-repo/semantics/other 2020 ftzenodo https://doi.org/10.5281/zenodo.363317510.14379/iodp.proc.361.201710.5281/zenodo.3633174 2024-07-25T14:47:20Z Thermal conductivity was measured using the heated needle method in either full-space needle configuration (soft/saturated sediments) or half-space needle configuration (harder materials) of a TeKa Berlin TK-04 thermal conductivity meter. Heat is applied to the sample and then thermal equilibrium is sought. The heating and equilibration curve is reduced to derive the thermal conductivity value. Raw data are stored if a user wishes to do off-line or postexpedition reduction. Other/Unknown Material Antarc* Antarctic NADW North Atlantic Deep Water North Atlantic South Atlantic Ocean Southern Ocean Zenodo
institution Open Polar
collection Zenodo
op_collection_id ftzenodo
language unknown
topic Expedition 361
JOIDES Resolution
South African Climates
Agulhas LGM Density Profile
Site U1474
Site U1475
Site U1476
Site U1477
Site U1478
Ancillary Project Letter (APL-845)
Climate and Ocean Change
monsoons
AABW (Antarctic Bottom Water)
AAIW (Antarctic Intermediate Water)
Agulhas Bank
Agulhas Current
Agulhas leakage
Agulhas Plateau
Agulhas Return Current
Agulhas ring
Agulhas Undercurrent
ASHSW (Arabian Sea High Salinity Water)
Cape Basin
CDW (Circumpolar Deep Water)
Davie Ridge
Delagoa Bight
DSTF (Dynamical Southern Ocean Subtropical Front)
East Madagascar Current
EIOW (Equatorial Indian Ocean Water)
Indian-Atlantic Ocean gateway
IOW (Indian Ocean Water)
ITCZ (Intertropical Convergence Zone)
Limpopo River
Mozambique Channel
Mozambique Undercurrent
NADW (North Atlantic Deep Water)
Natal Pulses
Natal Valley
RSIW (Red Sea Intermediate Water)
SAF (Subantarctic Front)
SICW (South Indian Central Water)
South Atlantic Ocean
Southeast African margin
Southwest Indian Ocean
STF (Subtropical Front)
STSW (Subtropical Surface Water)
TSW (Tropical Surface Water)
Zambezi River
spellingShingle Expedition 361
JOIDES Resolution
South African Climates
Agulhas LGM Density Profile
Site U1474
Site U1475
Site U1476
Site U1477
Site U1478
Ancillary Project Letter (APL-845)
Climate and Ocean Change
monsoons
AABW (Antarctic Bottom Water)
AAIW (Antarctic Intermediate Water)
Agulhas Bank
Agulhas Current
Agulhas leakage
Agulhas Plateau
Agulhas Return Current
Agulhas ring
Agulhas Undercurrent
ASHSW (Arabian Sea High Salinity Water)
Cape Basin
CDW (Circumpolar Deep Water)
Davie Ridge
Delagoa Bight
DSTF (Dynamical Southern Ocean Subtropical Front)
East Madagascar Current
EIOW (Equatorial Indian Ocean Water)
Indian-Atlantic Ocean gateway
IOW (Indian Ocean Water)
ITCZ (Intertropical Convergence Zone)
Limpopo River
Mozambique Channel
Mozambique Undercurrent
NADW (North Atlantic Deep Water)
Natal Pulses
Natal Valley
RSIW (Red Sea Intermediate Water)
SAF (Subantarctic Front)
SICW (South Indian Central Water)
South Atlantic Ocean
Southeast African margin
Southwest Indian Ocean
STF (Subtropical Front)
STSW (Subtropical Surface Water)
TSW (Tropical Surface Water)
Zambezi River
Hall, I.R.
Hemming, S.R.
LeVay, L.J.
Barker, S.
Berke, M.A.
Brentegani, L.
Caley, T.
Cartagena-Sierra, A.
Charles, C.D.
Coenen, J.J.
Crespin, J.G.
Franzese, A.M.
Gruetzner, J.
Han, X.
Hines, S.K.V.
Jimenez-Espejo, F.J.
Just, J.
Koutsodendris, A.
Kubota, K.
Lathika, N.
Norris, R.D.
Pereira dos Santos, T.
Robinson, R.
Rolinson, J.M.
Simon, M.H.
Tangunan, D.
van der Lubbe, J.J.L.
Yamane, M.
Zhang, H.
IODP Expedition 361 Thermal conductivity
topic_facet Expedition 361
JOIDES Resolution
South African Climates
Agulhas LGM Density Profile
Site U1474
Site U1475
Site U1476
Site U1477
Site U1478
Ancillary Project Letter (APL-845)
Climate and Ocean Change
monsoons
AABW (Antarctic Bottom Water)
AAIW (Antarctic Intermediate Water)
Agulhas Bank
Agulhas Current
Agulhas leakage
Agulhas Plateau
Agulhas Return Current
Agulhas ring
Agulhas Undercurrent
ASHSW (Arabian Sea High Salinity Water)
Cape Basin
CDW (Circumpolar Deep Water)
Davie Ridge
Delagoa Bight
DSTF (Dynamical Southern Ocean Subtropical Front)
East Madagascar Current
EIOW (Equatorial Indian Ocean Water)
Indian-Atlantic Ocean gateway
IOW (Indian Ocean Water)
ITCZ (Intertropical Convergence Zone)
Limpopo River
Mozambique Channel
Mozambique Undercurrent
NADW (North Atlantic Deep Water)
Natal Pulses
Natal Valley
RSIW (Red Sea Intermediate Water)
SAF (Subantarctic Front)
SICW (South Indian Central Water)
South Atlantic Ocean
Southeast African margin
Southwest Indian Ocean
STF (Subtropical Front)
STSW (Subtropical Surface Water)
TSW (Tropical Surface Water)
Zambezi River
description Thermal conductivity was measured using the heated needle method in either full-space needle configuration (soft/saturated sediments) or half-space needle configuration (harder materials) of a TeKa Berlin TK-04 thermal conductivity meter. Heat is applied to the sample and then thermal equilibrium is sought. The heating and equilibration curve is reduced to derive the thermal conductivity value. Raw data are stored if a user wishes to do off-line or postexpedition reduction.
author2 International Ocean Discovery Program
format Other/Unknown Material
author Hall, I.R.
Hemming, S.R.
LeVay, L.J.
Barker, S.
Berke, M.A.
Brentegani, L.
Caley, T.
Cartagena-Sierra, A.
Charles, C.D.
Coenen, J.J.
Crespin, J.G.
Franzese, A.M.
Gruetzner, J.
Han, X.
Hines, S.K.V.
Jimenez-Espejo, F.J.
Just, J.
Koutsodendris, A.
Kubota, K.
Lathika, N.
Norris, R.D.
Pereira dos Santos, T.
Robinson, R.
Rolinson, J.M.
Simon, M.H.
Tangunan, D.
van der Lubbe, J.J.L.
Yamane, M.
Zhang, H.
author_facet Hall, I.R.
Hemming, S.R.
LeVay, L.J.
Barker, S.
Berke, M.A.
Brentegani, L.
Caley, T.
Cartagena-Sierra, A.
Charles, C.D.
Coenen, J.J.
Crespin, J.G.
Franzese, A.M.
Gruetzner, J.
Han, X.
Hines, S.K.V.
Jimenez-Espejo, F.J.
Just, J.
Koutsodendris, A.
Kubota, K.
Lathika, N.
Norris, R.D.
Pereira dos Santos, T.
Robinson, R.
Rolinson, J.M.
Simon, M.H.
Tangunan, D.
van der Lubbe, J.J.L.
Yamane, M.
Zhang, H.
author_sort Hall, I.R.
title IODP Expedition 361 Thermal conductivity
title_short IODP Expedition 361 Thermal conductivity
title_full IODP Expedition 361 Thermal conductivity
title_fullStr IODP Expedition 361 Thermal conductivity
title_full_unstemmed IODP Expedition 361 Thermal conductivity
title_sort iodp expedition 361 thermal conductivity
publisher Zenodo
publishDate 2020
url https://doi.org/10.5281/zenodo.3633175
genre Antarc*
Antarctic
NADW
North Atlantic Deep Water
North Atlantic
South Atlantic Ocean
Southern Ocean
genre_facet Antarc*
Antarctic
NADW
North Atlantic Deep Water
North Atlantic
South Atlantic Ocean
Southern Ocean
op_relation https://doi.org/10.14379/iodp.proc.361.2017
https://zenodo.org/communities/iodp
https://doi.org/10.5281/zenodo.3633174
https://doi.org/10.5281/zenodo.3633175
oai:zenodo.org:3633175
op_rights info:eu-repo/semantics/openAccess
Creative Commons Zero v1.0 Universal
https://creativecommons.org/publicdomain/zero/1.0/legalcode
op_doi https://doi.org/10.5281/zenodo.363317510.14379/iodp.proc.361.201710.5281/zenodo.3633174
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