<?xml version="1.0" encoding="UTF-8"?><resource xsi:schemaLocation="http://datacite.org/schema/kernel-4 http://schema.datacite.org/meta/kernel-4.3/metadata.xsd" xmlns:xsi="http://www.w3.org/2001/XMLSchema-instance" xmlns="http://datacite.org/schema/kernel-4"><identifier identifierType="DOI">10.1594/PANGAEA.996588</identifier><creators><creator><creatorName>Dilmahamod, Ahmad Fehmi</creatorName><givenName>Ahmad Fehmi</givenName><familyName>Dilmahamod</familyName><nameIdentifier schemeURI="http://orcid.org/" nameIdentifierScheme="ORCID">0000-0003-1110-940X</nameIdentifier><affiliation affiliationIdentifierScheme="ROR" affiliationIdentifier="https://ror.org/02h2x0161">GEOMAR - Helmholtz Centre for Ocean Research Kiel</affiliation></creator><creator><creatorName>Karstensen, Johannes</creatorName><givenName>Johannes</givenName><familyName>Karstensen</familyName><nameIdentifier schemeURI="http://orcid.org/" nameIdentifierScheme="ORCID">0000-0001-5044-7079</nameIdentifier><affiliation affiliationIdentifierScheme="ROR" affiliationIdentifier="https://ror.org/02h2x0161">GEOMAR - Helmholtz Centre for Ocean Research Kiel</affiliation></creator><creator><creatorName>Hummels, Rebecca</creatorName><givenName>Rebecca</givenName><familyName>Hummels</familyName><nameIdentifier schemeURI="http://orcid.org/" nameIdentifierScheme="ORCID">0000-0002-3746-6213</nameIdentifier><affiliation affiliationIdentifierScheme="ROR" affiliationIdentifier="https://ror.org/02h2x0161">GEOMAR - Helmholtz Centre for Ocean Research Kiel</affiliation></creator><creator><creatorName>Atamanchuk, Dariia</creatorName><givenName>Dariia</givenName><familyName>Atamanchuk</familyName><nameIdentifier schemeURI="http://orcid.org/" nameIdentifierScheme="ORCID">0000-0002-9117-502X</nameIdentifier><affiliation affiliationIdentifierScheme="ROR" affiliationIdentifier="https://ror.org/01e6qks80">Dalhousie University</affiliation></creator><creator><creatorName>Koelling, Jannes</creatorName><givenName>Jannes</givenName><familyName>Koelling</familyName><affiliation affiliationIdentifierScheme="ROR" affiliationIdentifier="https://ror.org/00cvxb145">University of Washington</affiliation></creator></creators><titles><title>Physical oceanography from mooring KPO_1160</title></titles><publisher>PANGAEA</publisher><publicationYear>2026</publicationYear><subjects><subject>Mooring</subject><subject>physical data</subject><subject>subpolar North Atlantic</subject><subject subjectScheme="Parameter">Sample code/label</subject><subject subjectScheme="Parameter">DATE/TIME</subject><subject subjectScheme="Parameter">DEPTH, water</subject><subject subjectScheme="Parameter">Quality flag, water depth</subject><subject subjectScheme="Parameter">Pressure, water</subject><subject subjectScheme="Parameter">Quality flag, water pressure</subject><subject subjectScheme="Parameter">Temperature, water</subject><subject subjectScheme="Parameter">Quality flag, water temperature</subject><subject subjectScheme="Parameter">Salinity</subject><subject subjectScheme="Parameter">Quality flag, salinity</subject><subject subjectScheme="Parameter">Current velocity, east-west</subject><subject subjectScheme="Parameter">Quality flag, current velocity</subject><subject subjectScheme="Parameter">Current velocity, north-south</subject><subject subjectScheme="Parameter">Oxygen</subject><subject subjectScheme="Parameter">Quality flag, oxygen</subject><subject subjectScheme="Method">Mooring</subject><subject subjectScheme="Campaign">MSM54</subject><subject subjectScheme="Campaign">MSM74</subject><subject subjectScheme="Basis">Maria S. Merian</subject><subject subjectScheme="Project">North Atlantic Climate (NACLIM)</subject><subject subjectScheme="Project">Optimizing and Enhancing the Integrated Atlantic Ocean Observing System (AtlantOS)</subject><subject subjectScheme="Project">Regional Atlantic Circulation and global Change II (RACE-II)</subject></subjects><dates><date dateType="Collected">2016-05-12T14:00:00/2018-05-29T00:00:00</date></dates><resourceType resourceTypeGeneral="Dataset">Dataset</resourceType><relatedIdentifiers><relatedIdentifier relatedIdentifierType="DOI" relationType="References">10.2312/cr_msm74</relatedIdentifier><relatedIdentifier relatedIdentifierType="DOI" relationType="References">10.2312/cr_msm54</relatedIdentifier><relatedIdentifier relatedIdentifierType="URL" relationType="IsDerivedFrom">https://store.pangaea.de/Publications/HummelsR_2026/kpo_1160.zip</relatedIdentifier></relatedIdentifiers><sizes><size>12481504 data points</size></sizes><formats><format>text/tab-separated-values</format></formats><rightsList><rights rightsURI="https://creativecommons.org/licenses/by/4.0/" schemeURI="https://spdx.org/licenses/" rightsIdentifierScheme="SPDX" rightsIdentifier="CC-BY-4.0">Creative Commons Attribution 4.0 International</rights></rightsList><descriptions><description descriptionType="Abstract">This data set contains quality-controlled observations from a GEOMAR mooring deployment. Depending on the mooring configuration, measurements may include pressure, temperature, conductivity, dissolved oxygen, and current velocity recorded by oceanographic instruments throughout the deployment period.<br/>Data Processing: Instruments equipped with pressure, temperature, conductivity, and oxygen sensors were calibrated in situ immediately before deployment and after recovery by attaching them to the CTD frame during CTD/O2 casts. Sensor readings were compared with calibrated CTDO2 observations during dedicated calibration stops lasting several minutes. Correction terms were derived from the differences between the moored instruments and the CTDO measurements and subsequently applied to the complete deployment records. Calibration-stop results were additionally validated using nearby CTD observations obtained during the deployment (CTD data of deployment cruise: https://doi.org/10.1594/PANGAEA.963942) and recovery cruises (CTD data of recovery cruise: https://doi.org/10.1594/PANGAEA.928976). This procedure enables the detection and correction of potential sensor drift and provides estimates of calibration and measurement uncertainties. Details of the deployment and recovery operations are documented in the corresponding cruise reports.</description><description descriptionType="TechnicalInfo">instrument =  Label:kpo_1160_02  File:kpo_1160_instr_02.nc  Type:Seabird  MicroCat  37-IM with pressure  SN:03752<br/>instrument =  Label:kpo_1160_04  File:kpo_1160_instr_04.nc  Type:Nortek  Aquadopp  Seriell  SN:P26209-25<br/>instrument =  Label:kpo_1160_05  File:kpo_1160_instr_05.nc  Type:Aanderaa  RCM  8  SN:08412  depth/pressure data was at least partially derived and not directly measured, consult quality flags for details<br/>instrument =  Label:kpo_1160_06  File:kpo_1160_instr_06.nc  Type:RBR  RBR Concerto  DO  SN:52628  depth/pressure data was at least partially derived and not directly measured, consult quality flags for details<br/>instrument =  Label:kpo_1160_07  File:kpo_1160_instr_07.nc  Type:Seabird  MicroCat  37-IM with pressure  SN:03753<br/>instrument =  Label:kpo_1160_08  File:kpo_1160_instr_08.nc  Type:Aanderaa  RCM  8  SN:10660  depth/pressure data was at least partially derived and not directly measured, consult quality flags for details<br/>instrument =  Label:kpo_1160_09  File:kpo_1160_instr_09.nc  Type:Seabird  MicroCat  37-SM  SN:00952  depth/pressure data was at least partially derived and not directly measured, consult quality flags for details<br/>instrument =  Label:kpo_1160_10  File:kpo_1160_instr_10.nc  Type:Nortek  Aquadopp  Induktiv  SN:P26209-04<br/>instrument =  Label:kpo_1160_11  File:kpo_1160_instr_11.nc  Type:Seabird  MicroCat  37-SM  SN:00053  depth/pressure data was at least partially derived and not directly measured, consult quality flags for details<br/>instrument =  Label:kpo_1160_12  File:kpo_1160_instr_12.nc  Type:RBR  RBR Concerto  DO  SN:52633  depth/pressure data was at least partially derived and not directly measured, consult quality flags for details<br/>instrument =  Label:kpo_1160_13  File:kpo_1160_instr_13.nc  Type:Seabird  MicroCat  37-SM  SN:00278  depth/pressure data was at least partially derived and not directly measured, consult quality flags for details<br/>instrument =  Label:kpo_1160_14  File:kpo_1160_instr_14.nc  Type:Seabird  MicroCat  37-SM with pressure  SN:06859<br/>instrument =  Label:kpo_1160_15  File:kpo_1160_instr_15.nc  Type:Sontek  Argonaut  SN:184  depth/pressure data was at least partially derived and not directly measured, consult quality flags for details<br/>instrument =  Label:kpo_1160_16  File:kpo_1160_instr_16.nc  Type:Aanderaa  RCM  8  SN:09816  depth/pressure data was at least partially derived and not directly measured, consult quality flags for details<br/>instrument =  Label:kpo_1160_17  File:kpo_1160_instr_17.nc  Type:Seabird  MicroCat  37-IM with pressure  SN:10693<br/>instrument =  Label:kpo_1160_18  File:kpo_1160_instr_18.nc  Type:Seabird  MicroCat  37-SM  SN:01599  depth/pressure data was at least partially derived and not directly measured, consult quality flags for details<br/>instrument =  Label:kpo_1160_19  File:kpo_1160_instr_19.nc  Type:Nortek  Aquadopp  Induktiv  SN:P26209-08<br/>instrument =  Label:kpo_1160_20  File:kpo_1160_instr_20.nc  Type:Sontek  Argonaut  SN:329  depth/pressure data was at least partially derived and not directly measured, consult quality flags for details<br/>instrument =  Label:kpo_1160_21  File:kpo_1160_instr_21.nc  Type:RBR  RBR Concerto  DO  SN:52633  depth/pressure data was at least partially derived and not directly measured, consult quality flags for details<br/>instrument =  Label:kpo_1160_22  File:kpo_1160_instr_22.nc  Type:Seabird  MicroCat  37-IM with pressure  SN:10695</description></descriptions><geoLocations><geoLocation><geoLocationBox><westBoundLongitude>-50.903160000000014</westBoundLongitude><eastBoundLongitude>-50.839080000000024</eastBoundLongitude><southBoundLatitude>53.12662</southBoundLatitude><northBoundLatitude>53.247</northBoundLatitude></geoLocationBox></geoLocation></geoLocations><fundingReferences><fundingReference><funderName>Federal Ministry of Education and Research</funderName><funderIdentifier funderIdentifierType="Crossref Funder ID">https://doi.org/10.13039/501100002347</funderIdentifier><awardNumber>03F0729C</awardNumber><awardTitle>Role of the tropical Atlantic for climate variability in the Atlantic sector (RACE II)</awardTitle></fundingReference><fundingReference><funderName>Horizon 2020 of the European Commission</funderName><funderIdentifier funderIdentifierType="Crossref Funder ID">https://doi.org/10.13039/501100007601</funderIdentifier><awardNumber awardURI="https://doi.org/10.3030/633211">633211</awardNumber><awardTitle>Optimizing and Enhancing the Integrated Atlantic Ocean Observing System</awardTitle></fundingReference><fundingReference><funderName>National Science Foundation</funderName><funderIdentifier funderIdentifierType="Crossref Funder ID">https://doi.org/10.13039/100000001</funderIdentifier><awardNumber>OCE-1947829</awardNumber><awardTitle>GOHSNAP Gases in the Overturning and Horizontal circulation of the Subpolar North Atlantic Program</awardTitle></fundingReference><fundingReference><funderName>Seventh Framework Programme of the European Commission</funderName><funderIdentifier funderIdentifierType="Crossref Funder ID">https://doi.org/10.13039/100011102</funderIdentifier><awardNumber awardURI="https://cordis.europa.eu/project/id/308299">308299</awardNumber><awardTitle>North Atlantic Climate</awardTitle></fundingReference></fundingReferences></resource>