{"count":87536,"next":"https://catalogue.ceda.ac.uk/api/v3/onlineresources/?format=json&limit=100&offset=46200","previous":"https://catalogue.ceda.ac.uk/api/v3/onlineresources/?format=json&limit=100&offset=46000","results":[{"ob_id":52059,"function":"documentation","linkage":"http://dap.ceda.ac.uk/badc/ukmo-hadobs/data/insitu/MOHC/HadOBS/HadUK-Grid/v1.1.0.0/HadUK-Grid_v1.1.0.0_change_log.txt","name":"HadUK-Grid v1.1.0.0 change log - new file lists of new files and file number totals for deleted, changed and adjusted files","relatedTo":{"ob_id":37212,"uuid":"bbca3267dc7d4219af484976734c9527","short_code":"ob"}},{"ob_id":52060,"function":"documentation","linkage":"http://dap.ceda.ac.uk/badc/ukmo-hadobs/data/insitu/MOHC/HadOBS/HadUK-Grid/v1.1.0.0/HadUK-Grid_change_log_summary.txt","name":"HadUK-Grid Summary Change Log (upto version v1.1.0.0) detailing changes to available data and processing","relatedTo":{"ob_id":37213,"uuid":"aeb4ca481d634ec597831282c3baed32","short_code":"ob"}},{"ob_id":52061,"function":"documentation","linkage":"http://dap.ceda.ac.uk/badc/ukmo-hadobs/data/insitu/MOHC/HadOBS/HadUK-Grid/v1.1.0.0/HadUK-Grid_v1.1.0.0_change_log.txt","name":"HadUK-Grid v1.1.0.0 change log - new file lists of new files and file number totals for deleted, changed and adjusted files","relatedTo":{"ob_id":37213,"uuid":"aeb4ca481d634ec597831282c3baed32","short_code":"ob"}},{"ob_id":52062,"function":"documentation","linkage":"https://www.metoffice.gov.uk/climate/uk/data/haduk-grid/haduk-grid","name":"Met Office documentation on HadUK-Grid data","relatedTo":{"ob_id":37213,"uuid":"aeb4ca481d634ec597831282c3baed32","short_code":"ob"}},{"ob_id":52063,"function":"documentation","linkage":"https://doi.org/10.1002/gdj3.78","name":"Hollis, D, McCarthy, MP, Kendon, M, Legg, T, Simpson, I. HadUK‐Grid—A new UK dataset of gridded climate observations. Geosci Data J. 2019; 00: 1– 9. https://doi.org/10.1002/gdj3.78","relatedTo":{"ob_id":37213,"uuid":"aeb4ca481d634ec597831282c3baed32","short_code":"ob"}},{"ob_id":52064,"function":"documentation","linkage":"https://www.metoffice.gov.uk/climate/uk/data/haduk-grid/haduk-grid","name":"Met Office documentation on HadUK-Grid data","relatedTo":{"ob_id":37214,"uuid":"7edd216fcf794b1f9a5889d496d50e54","short_code":"ob"}},{"ob_id":52065,"function":"documentation","linkage":"https://doi.org/10.1002/gdj3.78","name":"Hollis, D, McCarthy, MP, Kendon, M, Legg, T, Simpson, I. HadUK‐Grid—A new UK dataset of gridded climate observations. Geosci Data J. 2019; 00: 1– 9. https://doi.org/10.1002/gdj3.78","relatedTo":{"ob_id":37214,"uuid":"7edd216fcf794b1f9a5889d496d50e54","short_code":"ob"}},{"ob_id":52066,"function":"documentation","linkage":"http://dap.ceda.ac.uk/badc/ukmo-hadobs/data/insitu/MOHC/HadOBS/HadUK-Grid/v1.1.0.0/HadUK-Grid_change_log_summary.txt","name":"HadUK-Grid Summary Change Log (upto version v1.1.0.0) detailing changes to available data and processing","relatedTo":{"ob_id":37214,"uuid":"7edd216fcf794b1f9a5889d496d50e54","short_code":"ob"}},{"ob_id":52067,"function":"documentation","linkage":"http://dap.ceda.ac.uk/badc/ukmo-hadobs/data/insitu/MOHC/HadOBS/HadUK-Grid/v1.1.0.0/HadUK-Grid_v1.1.0.0_change_log.txt","name":"HadUK-Grid v1.1.0.0 change log - new file lists of new files and file number totals for deleted, changed and adjusted files","relatedTo":{"ob_id":37214,"uuid":"7edd216fcf794b1f9a5889d496d50e54","short_code":"ob"}},{"ob_id":52068,"function":"documentation","linkage":"https://rmets.onlinelibrary.wiley.com/doi/10.1002/gdj3.157","name":"Hawkins et al. (2022): Millions of historical monthly rainfall observations taken in the UK and Ireland rescued by citizen scientists. Geoscience Data Journal. Article DOI: 10.1002/gdj3.157","relatedTo":{"ob_id":37214,"uuid":"7edd216fcf794b1f9a5889d496d50e54","short_code":"ob"}},{"ob_id":52069,"function":"documentation","linkage":"https://rmets.onlinelibrary.wiley.com/doi/10.1002/gdj3.157","name":"Hawkins et al. (2022): Millions of historical monthly rainfall observations taken in the UK and Ireland rescued by citizen scientists. Geoscience Data Journal. Article DOI: 10.1002/gdj3.157","relatedTo":{"ob_id":37213,"uuid":"aeb4ca481d634ec597831282c3baed32","short_code":"ob"}},{"ob_id":52070,"function":"documentation","linkage":"https://rmets.onlinelibrary.wiley.com/doi/10.1002/gdj3.157","name":"Hawkins et al. (2022): Millions of historical monthly rainfall observations taken in the UK and Ireland rescued by citizen scientists. Geoscience Data Journal. Article DOI: 10.1002/gdj3.157","relatedTo":{"ob_id":37212,"uuid":"bbca3267dc7d4219af484976734c9527","short_code":"ob"}},{"ob_id":52071,"function":"documentation","linkage":"https://rmets.onlinelibrary.wiley.com/doi/10.1002/gdj3.157","name":"Hawkins et al. (2022): Millions of historical monthly rainfall observations taken in the UK and Ireland rescued by citizen scientists. Geoscience Data Journal. Article DOI: 10.1002/gdj3.157","relatedTo":{"ob_id":37211,"uuid":"652cea3b8b4446f7bff73be0ce99ba0f","short_code":"ob"}},{"ob_id":52072,"function":"documentation","linkage":"https://rmets.onlinelibrary.wiley.com/doi/10.1002/gdj3.157","name":"Hawkins et al. (2022): Millions of historical monthly rainfall observations taken in the UK and Ireland rescued by citizen scientists. Geoscience Data Journal. Article DOI: 10.1002/gdj3.157","relatedTo":{"ob_id":37210,"uuid":"e6866698e5bd46cfa726cd82a7971f9a","short_code":"ob"}},{"ob_id":52073,"function":"documentation","linkage":"https://rmets.onlinelibrary.wiley.com/doi/10.1002/gdj3.157","name":"Hawkins et al. (2022): Millions of historical monthly rainfall observations taken in the UK and Ireland rescued by citizen scientists. Geoscience Data Journal. Article DOI: 10.1002/gdj3.157","relatedTo":{"ob_id":37209,"uuid":"6f4ac352b19341eb8c5b26644845ac35","short_code":"ob"}},{"ob_id":52074,"function":"documentation","linkage":"https://rmets.onlinelibrary.wiley.com/doi/10.1002/gdj3.157","name":"Hawkins et al. (2022): Millions of historical monthly rainfall observations taken in the UK and Ireland rescued by citizen scientists. Geoscience Data Journal. Article DOI: 10.1002/gdj3.157","relatedTo":{"ob_id":37208,"uuid":"59a7cd0dcd474f5f906ead4073a9be8b","short_code":"ob"}},{"ob_id":52075,"function":"documentation","linkage":"https://rmets.onlinelibrary.wiley.com/doi/10.1002/gdj3.157","name":"Hawkins et al. (2022): Millions of historical monthly rainfall observations taken in the UK and Ireland rescued by citizen scientists. Geoscience Data Journal. Article DOI: 10.1002/gdj3.157","relatedTo":{"ob_id":37207,"uuid":"39b1337028d147d9b572ae352490bed0","short_code":"ob"}},{"ob_id":52076,"function":"documentation","linkage":"https://www.nature.com/articles/s41597-022-01279-5","name":"Pyarali, K., Peng, J., Disse, M. et al. Development and application of high resolution SPEI drought dataset for Central Asia. Sci Data 9, 172 (2022). https://doi.org/10.1038/s41597-022-01279-5","relatedTo":{"ob_id":32688,"uuid":"feb1e0b5426d4f5c80f791909a3a2d37","short_code":"ob"}},{"ob_id":52077,"function":"download","linkage":"https://data.ceda.ac.uk/neodc/slstr_calibration/sentinel3a/data","name":"Data download","relatedTo":{"ob_id":37252,"uuid":"4f969b89bbdc474fb8bc5b3410844d25","short_code":"ob"}},{"ob_id":52078,"function":"download","linkage":"https://data.ceda.ac.uk/neodc/slstr_calibration/sentinel3a/data","name":"Data download","relatedTo":{"ob_id":37253,"uuid":"92479de800bf45f2b2866be01e5e3f01","short_code":"ob"}},{"ob_id":52079,"function":"download","linkage":"https://data.ceda.ac.uk/neodc/slstr_calibration","name":"https://data.ceda.ac.uk/neodc/slstr_calibration","relatedTo":{"ob_id":37254,"uuid":"475c1b1fbd4c49379336e5a0bd7b77ce","short_code":"coll"}},{"ob_id":52080,"function":"documentation","linkage":"https://doi.org/10.1002/gdj3.78","name":"Hollis, D, McCarthy, MP, Kendon, M, Legg, T, Simpson, I. HadUK-Grid—A new UK dataset of gridded climate observations. Geosci Data J. 2019; 6: 151– 159. https://doi.org/10.1002/gdj3.78","relatedTo":{"ob_id":26870,"uuid":"b1b352825f5548a8bf0639afe335f5ae","short_code":"comp"}},{"ob_id":52081,"function":"documentation","linkage":"https://www.researchgate.net/publication/358715931_Large-scale_Interseismic_Strain_Mapping_of_the_NE_Tibetan_Plateau_from_Sentinel-1_Interferometry","name":"Large-scale Interseismic Strain Mapping of the NE Tibetan Plateau from Sentinel-1 Interferometry","relatedTo":{"ob_id":37273,"uuid":"7fbb95c288af44ab8b40e74fef0e7cbc","short_code":"ob"}},{"ob_id":52082,"function":"documentation","linkage":"https://doi.org/10.3390/rs12152430","name":"Lazecký, M., Spaans, K., González, P. J., Maghsoudi, Y., Morishita, Y., Albino, F., Elliott, J., Greenall, N., Hatton, E., Hooper, A., Juncu, D., McDougall, A., Walters, R. J., Watson, C. S., Weiss, J. R., & Wright, T. J. (2020). LiCSAR: An Automatic InSAR Tool for Measuring and Monitoring Tectonic and Volcanic Activity. Remote Sensing, 12(15), 2430.","relatedTo":{"ob_id":37273,"uuid":"7fbb95c288af44ab8b40e74fef0e7cbc","short_code":"ob"}},{"ob_id":52083,"function":"documentation","linkage":"https://doi.org/10.1029/2020GL087376","name":"Weiss, J., Walters, R., Morishita, Y., Wright, T., Lazecky, M., Wang, H., Hussain, E., Hooper, A., Elliott, J., Rollins, C., Yu, C., González, P., Spaans, K., Li, Z., & Parsons, B. (2020). High‐resolution surface velocities and strain for Anatolia from Sentinel‐1 InSAR and GNSS data. Geophysical Research Letters, 47.","relatedTo":{"ob_id":37273,"uuid":"7fbb95c288af44ab8b40e74fef0e7cbc","short_code":"ob"}},{"ob_id":52084,"function":"documentation","linkage":"https://doi.org/10.1016/j.jappgeo.2009.02.006","name":"López-Quiroz, P., Doin, M. P., Tupin, F., Briole, P., & Nicolas, J. M. (2009). Time series analysis of Mexico City subsidence constrained by radar interferometry. Journal of Applied Geophysics, 69(1), 1–15.","relatedTo":{"ob_id":37273,"uuid":"7fbb95c288af44ab8b40e74fef0e7cbc","short_code":"ob"}},{"ob_id":52085,"function":"documentation","linkage":"https://doi.org/10.1002/2014JB011768","name":"Doin, M. P., Twardzik, C., Ducret, G., Lasserre, C., Guillaso, S., & Jianbao, S. (2015). InSAR measurement of the deformation around Siling Co Lake: Inferences on the lower crust viscosity in central Tibet. Journal of Geophysical Research: Solid Earth, 120(7), 5290–5310.","relatedTo":{"ob_id":37273,"uuid":"7fbb95c288af44ab8b40e74fef0e7cbc","short_code":"ob"}},{"ob_id":52086,"function":"documentation","linkage":"https://data.cci.ceda.ac.uk/thredds/fileServer/esacci/fire/docs/Sentinel3_SYN_v1.0/Fire_cci_D4.2.5_PUG-S3-SYN_v1.0.pdf","name":"Product User Guide","relatedTo":{"ob_id":34730,"uuid":"c98515f1934a4db68d2007b47c5a8d04","short_code":"ob"}},{"ob_id":52087,"function":"documentation","linkage":"https://data.cci.ceda.ac.uk/thredds/fileServer/esacci/fire/docs/Sentinel3_SYN_v1.0/Fire_cci_D4.2.5_PUG-S3-SYN_v1.0.pdf","name":"Product User Guide","relatedTo":{"ob_id":34729,"uuid":"3aaaaf94813e48f18f2b83242a8dacbe","short_code":"ob"}},{"ob_id":52089,"function":"documentation","linkage":"https://www.ipcc.ch/report/ar6/wg1/downloads/report/IPCC_AR6_WGI_Chapter02_SM.pdf","name":"SUPPLEMENTARY MATERIAL FOR REPORT CHAPTER: Gulev, S.K., P.W. Thorne, J. Ahn, F.J. Dentener, C.M. Domingues, S. Gerland, D. Gong, D.S. Kaufman, H.C. Nnamchi, J. Quaas, J.A. Rivera, S. Sathyendranath, S.L. Smith, B. Trewin, K. von Schuckmann, and R.S. Vose, 2021: Changing State of the Climate System Supplementary Material. In Climate Change 2021: The Physical Science Basis. Contribution of Working Group I to the Sixth Assessment Report of the Intergovernmental Panel on Climate Change","relatedTo":{"ob_id":37280,"uuid":"f3515388768344bfb2be0521f82388be","short_code":"ob"}},{"ob_id":52090,"function":"documentation","linkage":"https://www.ipcc.ch/report/ar6/wg1/downloads/report/IPCC_AR6_WGI_Chapter02.pdf","name":"ORIGIN OF FIGURE (IPCC REPORT CHAPTER): Gulev, S.K., P.W. Thorne, J. Ahn, F.J. Dentener, C.M. Domingues, S. Gerland, D. Gong, D.S. Kaufman, H.C. Nnamchi, J. Quaas, J.A. Rivera, S. Sathyendranath, S.L. Smith, B. Trewin, K. von Schuckmann, and R.S. Vose, 2021: Changing State of the Climate System. In Climate Change 2021: The Physical Science Basis. Contribution of Working Group I to the Sixth Assessment Report of the Intergovernmental Panel on Climate Change","relatedTo":{"ob_id":37280,"uuid":"f3515388768344bfb2be0521f82388be","short_code":"ob"}},{"ob_id":52091,"function":"documentation","linkage":"https://climate.esa.int","name":"ESA Climate Change Initiative website","relatedTo":{"ob_id":37276,"uuid":"48cd535e93574c8da8e80b91e06c7d51","short_code":"ob"}},{"ob_id":52092,"function":"documentation","linkage":"https://climate.esa.int/projects/ice-sheets-greenland","name":"ESA Greenland Ice Sheets project webpage","relatedTo":{"ob_id":37276,"uuid":"48cd535e93574c8da8e80b91e06c7d51","short_code":"ob"}},{"ob_id":52093,"function":"documentation","linkage":"https://climate.esa.int/media/documents/ST-DTU-ESA-GISCCI-PUG-001_v2.2.pdf","name":"Product User Guide","relatedTo":{"ob_id":37276,"uuid":"48cd535e93574c8da8e80b91e06c7d51","short_code":"ob"}},{"ob_id":52094,"function":"documentation","linkage":"https://climate.esa.int/documents/2896/DTU-ESA-GISCCI-ATBD-001_v2.1_signed.pdf","name":"Algorithm Theoretical Baseline Document (ATBD)","relatedTo":{"ob_id":37276,"uuid":"48cd535e93574c8da8e80b91e06c7d51","short_code":"ob"}},{"ob_id":52095,"function":"documentation","linkage":"https://doi.org/10.5194/tc-7-1411-2013","name":"Barletta, V. R., Sørensen, L. S., and Forsberg, R. (2013) 'Scatter of mass changes estimates at basin scale for Greenland and Antarctica', The Cryosphere, 7, 1411-1432, doi:10.5194/tc-7-1411-2013.","relatedTo":{"ob_id":37276,"uuid":"48cd535e93574c8da8e80b91e06c7d51","short_code":"ob"}},{"ob_id":52096,"function":"documentation","linkage":"http://journals.ametsoc.org/doi/abs/10.1175/2011BAMS3015.1","name":"Integrated surface database reference paper","relatedTo":{"ob_id":37289,"uuid":"062942e96a6e4567b2bc47045be910a7","short_code":"ob"}},{"ob_id":52097,"function":"documentation","linkage":"https://zenodo.org/record/7357311","name":"HadISDH Data Format v2","relatedTo":{"ob_id":37289,"uuid":"062942e96a6e4567b2bc47045be910a7","short_code":"ob"}},{"ob_id":52098,"function":"documentation","linkage":"http://www.clim-past.net/9/657/2013/cp-9-657-2013.html","name":"HadISDH 2013 reference paper","relatedTo":{"ob_id":37289,"uuid":"062942e96a6e4567b2bc47045be910a7","short_code":"ob"}},{"ob_id":52099,"function":"documentation","linkage":"http://www.clim-past.net/10/1983/2014/cp-10-1983-2014.html","name":"HadISDH 2014 reference paper","relatedTo":{"ob_id":37289,"uuid":"062942e96a6e4567b2bc47045be910a7","short_code":"ob"}},{"ob_id":52100,"function":"documentation","linkage":"http://www.geosci-instrum-method-data-syst.net/5/473/2016/gi-5-473-2016.html","name":"Dunn, R. J. H., Willett, K. M., Parker, D. E., and Mitchell, L.: Expanding HadISD: quality-controlled, sub-daily station data from 1931, Geosci. Instrum. Method. Data Syst., 5, 473-491, doi:10.5194/gi-5-473-2016, 2016.","relatedTo":{"ob_id":37289,"uuid":"062942e96a6e4567b2bc47045be910a7","short_code":"ob"}},{"ob_id":52101,"function":"documentation","linkage":"http://www.metoffice.gov.uk/hadobs/hadisdh/","name":"HadISDH Homepage","relatedTo":{"ob_id":37289,"uuid":"062942e96a6e4567b2bc47045be910a7","short_code":"ob"}},{"ob_id":52102,"function":"documentation","linkage":"https://twitter.com/metofficeHadOBS","name":"Met Office HadOBS twitter feed","relatedTo":{"ob_id":37289,"uuid":"062942e96a6e4567b2bc47045be910a7","short_code":"ob"}},{"ob_id":52103,"function":"documentation","linkage":"http://hadisdh.blogspot.co.uk/","name":"HadISDH blog","relatedTo":{"ob_id":37289,"uuid":"062942e96a6e4567b2bc47045be910a7","short_code":"ob"}},{"ob_id":52104,"function":"documentation","linkage":"https://zenodo.org/record/7356965/files/HadISDH.2.0.0Process.png","name":"HadISDH process diagram","relatedTo":{"ob_id":37289,"uuid":"062942e96a6e4567b2bc47045be910a7","short_code":"ob"}},{"ob_id":52105,"function":"documentation","linkage":"https://doi.org/10.5281/zenodo.6532614","name":"HadISDH update document for v4.4.1.2021f","relatedTo":{"ob_id":37289,"uuid":"062942e96a6e4567b2bc47045be910a7","short_code":"ob"}},{"ob_id":52106,"function":"documentation","linkage":"https://zenodo.org/record/7357311","name":"HadISDH Data Format v2","relatedTo":{"ob_id":37290,"uuid":"54d3408edd9e41bca226924754619812","short_code":"ob"}},{"ob_id":52107,"function":"documentation","linkage":"http://www.metoffice.gov.uk/hadobs/hadisdh/","name":"HadISDH Homepage","relatedTo":{"ob_id":37290,"uuid":"54d3408edd9e41bca226924754619812","short_code":"ob"}},{"ob_id":52108,"function":"documentation","linkage":"https://twitter.com/metofficeHadOBS","name":"Met Office HadOBS twitter feed","relatedTo":{"ob_id":37290,"uuid":"54d3408edd9e41bca226924754619812","short_code":"ob"}},{"ob_id":52109,"function":"documentation","linkage":"https://rmets.onlinelibrary.wiley.com/doi/full/10.1002/joc.4775","name":"ICOADS.3.0.0 reference paper","relatedTo":{"ob_id":37290,"uuid":"54d3408edd9e41bca226924754619812","short_code":"ob"}},{"ob_id":52110,"function":"documentation","linkage":"https://zenodo.org/record/7357309","name":"HadISDH.marine process diagram","relatedTo":{"ob_id":37290,"uuid":"54d3408edd9e41bca226924754619812","short_code":"ob"}},{"ob_id":52111,"function":"documentation","linkage":"http://hadisdh.blogspot.co.uk/","name":"HadISDH blog","relatedTo":{"ob_id":37290,"uuid":"54d3408edd9e41bca226924754619812","short_code":"ob"}},{"ob_id":52112,"function":"documentation","linkage":"https://doi.org/10.5281/zenodo.6532633","name":"HadISDH update document for v1.3.0.2021f","relatedTo":{"ob_id":37290,"uuid":"54d3408edd9e41bca226924754619812","short_code":"ob"}},{"ob_id":52113,"function":"documentation","linkage":"https://www.clim-past.net/9/657/2013/cp-9-657-2013.html","name":"HadISDH.land 2013 paper","relatedTo":{"ob_id":37291,"uuid":"563cb665bc6e43f99b355a9bb8134317","short_code":"ob"}},{"ob_id":52114,"function":"documentation","linkage":"https://www.geosci-instrum-method-data-syst.net/5/473/2016/","name":"HadISD reference paper","relatedTo":{"ob_id":37291,"uuid":"563cb665bc6e43f99b355a9bb8134317","short_code":"ob"}},{"ob_id":52115,"function":"documentation","linkage":"https://rmets.onlinelibrary.wiley.com/doi/full/10.1002/joc.4775","name":"ICOADS.3.0.0 reference paper","relatedTo":{"ob_id":37291,"uuid":"563cb665bc6e43f99b355a9bb8134317","short_code":"ob"}},{"ob_id":52116,"function":"documentation","linkage":"https://journals.ametsoc.org/doi/abs/10.1175/2011BAMS3015.1","name":"ISD reference paper","relatedTo":{"ob_id":37291,"uuid":"563cb665bc6e43f99b355a9bb8134317","short_code":"ob"}},{"ob_id":52117,"function":"documentation","linkage":"https://twitter.com/metofficeHadOBS","name":"Met Office HadOBS twitter feed","relatedTo":{"ob_id":37291,"uuid":"563cb665bc6e43f99b355a9bb8134317","short_code":"ob"}},{"ob_id":52118,"function":"documentation","linkage":"https://zenodo.org/record/7357309","name":"HadISDH.marine process diagram","relatedTo":{"ob_id":37291,"uuid":"563cb665bc6e43f99b355a9bb8134317","short_code":"ob"}},{"ob_id":52119,"function":"documentation","linkage":"https://www.clim-past.net/10/1983/2014/cp-10-1983-2014.html","name":"HadISDH.land 2014 reference paper","relatedTo":{"ob_id":37291,"uuid":"563cb665bc6e43f99b355a9bb8134317","short_code":"ob"}},{"ob_id":52120,"function":"documentation","linkage":"https://zenodo.org/record/7357311","name":"HadISDH Data Format v2","relatedTo":{"ob_id":37291,"uuid":"563cb665bc6e43f99b355a9bb8134317","short_code":"ob"}},{"ob_id":52121,"function":"documentation","linkage":"http://www.metoffice.gov.uk/hadobs/hadisdh/","name":"HadISDH Homepage","relatedTo":{"ob_id":37291,"uuid":"563cb665bc6e43f99b355a9bb8134317","short_code":"ob"}},{"ob_id":52122,"function":"documentation","linkage":"http://hadisdh.blogspot.co.uk/","name":"HadISDH blog","relatedTo":{"ob_id":37291,"uuid":"563cb665bc6e43f99b355a9bb8134317","short_code":"ob"}},{"ob_id":52123,"function":"documentation","linkage":"https://doi.org/10.5281/zenodo.6532614","name":"HadISDH.land update doc for version 4.4.0.2021f","relatedTo":{"ob_id":37291,"uuid":"563cb665bc6e43f99b355a9bb8134317","short_code":"ob"}},{"ob_id":52124,"function":"documentation","linkage":"https://doi.org/10.5281/zenodo.6532633","name":"HadISDH.marine update doc for version 1.3.0.2010f","relatedTo":{"ob_id":37291,"uuid":"563cb665bc6e43f99b355a9bb8134317","short_code":"ob"}},{"ob_id":52125,"function":"documentation","linkage":"http://www.geos-chem.org","name":"Description of GEOS-Chem model","relatedTo":{"ob_id":37296,"uuid":"406f88ee14f34177934b1dbd0be6aac7","short_code":"ob"}},{"ob_id":52126,"function":"documentation","linkage":"https://www.ipcc.ch/report/ar6/wg1/downloads/report/IPCC_AR6_WGI_Chapter02.pdf","name":"ORIGIN OF FIGURE (IPCC REPORT CHAPTER):  Gulev, S.K., P.W. Thorne, J. Ahn, F.J. Dentener, C.M. Domingues, S. Gerland, D. Gong, D.S. Kaufman, H.C. Nnamchi, J. Quaas, J.A. Rivera, S. Sathyendranath, S.L. Smith, B. Trewin, K. von Schuckmann, and R.S. Vose, 2021: Changing State of the Climate System. In Climate Change 2021: The Physical Science Basis. Contribution of Working Group I to the Sixth Assessment Report of the Intergovernmental Panel on Climate Change","relatedTo":{"ob_id":37308,"uuid":"033cd690801741c9bc745b8da55faef4","short_code":"ob"}},{"ob_id":52127,"function":"documentation","linkage":"https://www.ipcc.ch/report/ar6/wg1/downloads/report/IPCC_AR6_WGI_Chapter02_SM.pdf","name":"SUPPLEMENTARY MATERIAL FOR REPORT CHAPTER: Gulev, S.K., P.W. Thorne, J. Ahn, F.J. Dentener, C.M. Domingues, S. Gerland, D. Gong, D.S. Kaufman, H.C. Nnamchi, J. Quaas, J.A. Rivera, S. Sathyendranath, S.L. Smith, B. Trewin, K. von Schuckmann, and R.S. Vose, 2021: Changing State of the Climate System Supplementary Material. In Climate Change 2021: The Physical Science Basis. Contribution of Working Group I to the Sixth Assessment Report of the Intergovernmental Panel on Climate Change","relatedTo":{"ob_id":37308,"uuid":"033cd690801741c9bc745b8da55faef4","short_code":"ob"}},{"ob_id":52128,"function":"download","linkage":"http://data.ceda.ac.uk/badc/capeverde/data/","name":"Cape Verde data directory","relatedTo":{"ob_id":37314,"uuid":"f81862e3ae1642158c6a17d82a9a6a54","short_code":"result"}},{"ob_id":52129,"function":"download","linkage":"http://data.ceda.ac.uk/badc/capeverde/data/","name":"Cape Verde data directory","relatedTo":{"ob_id":37315,"uuid":"da1ba6ec606746cf8ecb0e9ad97dd7fb","short_code":"result"}},{"ob_id":52131,"function":"documentation","linkage":"https://climate.esa.int/projects/land-cover/","name":"ESA CCI Land Cover project website","relatedTo":{"ob_id":37340,"uuid":"26a0f46c95ee4c29b5c650b129aab788","short_code":"ob"}},{"ob_id":52132,"function":"documentation","linkage":"https://climate.esa.int/","name":"ESA Climate Change Initiative website","relatedTo":{"ob_id":37340,"uuid":"26a0f46c95ee4c29b5c650b129aab788","short_code":"ob"}},{"ob_id":52134,"function":"documentation","linkage":"https://gmd.copernicus.org/articles/10/639/2017/","name":"Review of the global models used within phase 1 of the Chemistry-Climate Model Initiative (CCMI)","relatedTo":{"ob_id":37341,"uuid":"031313dc6bfc4a0baabd58a51629bc21","short_code":"ob"}},{"ob_id":52136,"function":"documentation","linkage":"https://dap.ceda.ac.uk/badc/deposited2022/invisible_tracks/data//README.txt","name":"Text file containing further information on the dataset","relatedTo":{"ob_id":37320,"uuid":"2d0f8bb3927b4f75ae75276705858f68","short_code":"ob"}},{"ob_id":52137,"function":"documentation","linkage":"https://doi.org/10.5281/zenodo.6556425","name":"Code used to produce the dataset (DOI:  10.5281/zenodo.6556425)","relatedTo":{"ob_id":37320,"uuid":"2d0f8bb3927b4f75ae75276705858f68","short_code":"ob"}},{"ob_id":52141,"function":"documentation","linkage":"https://gmd.copernicus.org/articles/10/639/2017/","name":"Review of the global models used within phase 1 of the Chemistry-Climate Model Initiative (CCMI)","relatedTo":{"ob_id":37358,"uuid":"1fcf16f9d33348589d4e8431083470d0","short_code":"ob"}},{"ob_id":52142,"function":"documentation","linkage":"https://gmd.copernicus.org/articles/10/639/2017/","name":"Review of the global models used within phase 1 of the Chemistry-Climate Model Initiative (CCMI)","relatedTo":{"ob_id":37359,"uuid":"9ffb90316a73409380c5708803e3d4de","short_code":"ob"}},{"ob_id":52144,"function":"documentation","linkage":"https://csl.noaa.gov/assessments/ozone/2018/","name":"WMO (World Meteorological Organization), Scientific Assessment of Ozone Depletion: 2018, Global Ozone Research and Monitoring Project – Report No. 58, 588 pp., Geneva, Switzerland, 2018.","relatedTo":{"ob_id":37359,"uuid":"9ffb90316a73409380c5708803e3d4de","short_code":"ob"}},{"ob_id":52145,"function":"documentation","linkage":"https://csl.noaa.gov/assessments/ozone/2018/","name":"WMO (World Meteorological Organization), Scientific Assessment of Ozone Depletion: 2018, Global Ozone Research and Monitoring Project – Report No. 58, 588 pp., Geneva, Switzerland, 2018.","relatedTo":{"ob_id":37360,"uuid":"98851c33e7fe481c8179b2c0fe70af77","short_code":"ob"}},{"ob_id":52147,"function":"documentation","linkage":"https://gmd.copernicus.org/articles/10/639/2017/","name":"Review of the global models used within phase 1 of the Chemistry-Climate Model Initiative (CCMI)","relatedTo":{"ob_id":37360,"uuid":"98851c33e7fe481c8179b2c0fe70af77","short_code":"ob"}},{"ob_id":52148,"function":"documentation","linkage":"https://journals.ametsoc.org/doi/abs/10.1175/BAMS-D-18-0217.1","name":"IGP Project overview paper","relatedTo":{"ob_id":37365,"uuid":"9fb47f1d6d294b0dba553adc2253e6cf","short_code":"ob"}},{"ob_id":52149,"function":"documentation","linkage":"https://doi.org/10.1002/qj.828","name":"Dee D et al. (2011) The ERA-Interim reanalysis: Configuration and performance of the data assimilation system. Q J R Meteorol Soc 137:553–597.","relatedTo":{"ob_id":37365,"uuid":"9fb47f1d6d294b0dba553adc2253e6cf","short_code":"ob"}},{"ob_id":52150,"function":"documentation","linkage":"https://doi.org/10.1016/j.rse.2010.10.017","name":"Donlon CJ, Martin M, Stark J, Roberts-Jones J, Fiedler E, Wimmer W (2012) The Operational Sea Surface Temperature and Sea Ice Analysis (OSTIA) system. Rem Sens Env 116:140-158.","relatedTo":{"ob_id":37365,"uuid":"9fb47f1d6d294b0dba553adc2253e6cf","short_code":"ob"}},{"ob_id":52151,"function":"documentation","linkage":"https://doi.org/10.5194/acp-16-1545-2016","name":"Elvidge AD, Renfrew IA, Weiss AI, Brooks IM, Lachlan-Cope TA, King JC (2016) Observations of surface momentum exchange over the marginal-ice-zone and recommendations for its parameterization. Atmos Chem Phys 16:1545-1563.","relatedTo":{"ob_id":37365,"uuid":"9fb47f1d6d294b0dba553adc2253e6cf","short_code":"ob"}},{"ob_id":52152,"function":"documentation","linkage":"https://doi.org/10.1029/2012JD017630","name":"Lupkes C, Gryanik VM, Hartmann J, Andreas EL (2012) A parametrization, based on sea ice morphology, of the neutral atmospheric drag coefﬁcients for weather predict ion and climate models. J Geophys Res 117:D13112.","relatedTo":{"ob_id":37365,"uuid":"9fb47f1d6d294b0dba553adc2253e6cf","short_code":"ob"}},{"ob_id":52153,"function":"documentation","linkage":"https://doi.org/10.1002/qj.3486","name":"Renfrew IA, Elvidge AD, Edwards J (2019a) Atmospheric sensitivity to marginal-ice-zone drag: local and global responses. Q J R Meteorol Soc in press.","relatedTo":{"ob_id":37365,"uuid":"9fb47f1d6d294b0dba553adc2253e6cf","short_code":"ob"}},{"ob_id":52154,"function":"documentation","linkage":"http://dx.doi.org/10.1175/JCLI-D-11-00648.1","name":"Roberts-Jones J, Fiedler EK, Martin MJ (2012) Daily, Global, High-Resolution SST and Sea Ice Reanalysis for 1985-2007 Using the OSTIA System. J Clim 25:6215-6232.","relatedTo":{"ob_id":37365,"uuid":"9fb47f1d6d294b0dba553adc2253e6cf","short_code":"ob"}},{"ob_id":52155,"function":"documentation","linkage":"https://doi.org/10.5194/gmd-10-1487-2017","name":"Walters, D et al. (2017) The Met Office Unified Model Global Atmosphere 6.0/6.1 and JULES Global Land 6.0/6.1 configurations. Geosci Model Dev 10:1487-1520.","relatedTo":{"ob_id":37365,"uuid":"9fb47f1d6d294b0dba553adc2253e6cf","short_code":"ob"}},{"ob_id":52156,"function":"documentation","linkage":"https://climate.esa.int","name":"ESA Climate Change Initiative website","relatedTo":{"ob_id":37368,"uuid":"c5843f2ee17b417f87b75b6fb2b274ac","short_code":"ob"}},{"ob_id":52157,"function":"documentation","linkage":"https://climate.esa.int/projects/land-surface-temperature/","name":"ESA LST_cci webpages","relatedTo":{"ob_id":37368,"uuid":"c5843f2ee17b417f87b75b6fb2b274ac","short_code":"ob"}},{"ob_id":52158,"function":"documentation","linkage":"https://www.sparc-climate.org/wp-content/uploads/sites/5/2021/07/SPARCnewsletter_Jul2021_web.pdf","name":"A new set of Chemistry-Climate Model Initiative (CCMI) Community Simulations to Update the Assessment of Models and Support Upcoming Ozone Assessment Activities, David Plummer et al. (2021), SPARC Newsletter,  volume 57,  pp 22-30","relatedTo":{"ob_id":37341,"uuid":"031313dc6bfc4a0baabd58a51629bc21","short_code":"ob"}},{"ob_id":52159,"function":"documentation","linkage":"https://www.sparc-climate.org/wp-content/uploads/sites/5/2021/07/SPARCnewsletter_Jul2021_web.pdf","name":"A new set of Chemistry-Climate Model Initiative (CCMI) Community Simulations to Update the Assessment of Models and Support Upcoming Ozone Assessment Activities, David Plummer et al. (2021), SPARC Newsletter,  volume 57,  pp 22-30","relatedTo":{"ob_id":37359,"uuid":"9ffb90316a73409380c5708803e3d4de","short_code":"ob"}},{"ob_id":52160,"function":"documentation","linkage":"https://www.sparc-climate.org/wp-content/uploads/sites/5/2021/07/SPARCnewsletter_Jul2021_web.pdf","name":"A new set of Chemistry-Climate Model Initiative (CCMI) Community Simulations to Update the Assessment of Models and Support Upcoming Ozone Assessment Activities, David Plummer et al. (2021), SPARC Newsletter,  volume 57,  pp 22-30","relatedTo":{"ob_id":37360,"uuid":"98851c33e7fe481c8179b2c0fe70af77","short_code":"ob"}},{"ob_id":52161,"function":"documentation","linkage":"https://www.sparc-climate.org/wp-content/uploads/sites/5/2021/07/SPARCnewsletter_Jul2021_web.pdf","name":"A new set of Chemistry-Climate Model Initiative (CCMI) Community Simulations to Update the Assessment of Models and Support Upcoming Ozone Assessment Activities, David Plummer et al. (2021), SPARC Newsletter,  volume 57,  p 22-30","relatedTo":{"ob_id":37358,"uuid":"1fcf16f9d33348589d4e8431083470d0","short_code":"ob"}},{"ob_id":52162,"function":"documentation","linkage":"https://www.sparc-climate.org/wp-content/uploads/sites/5/2021/07/SPARCnewsletter_Jul2021_web.pdf","name":"A new set of Chemistry-Climate Model Initiative (CCMI) Community Simulations to Update the Assessment of Models and Support Upcoming Ozone Assessment Activities, David Plummer et al. (2021), SPARC Newsletter,  volume 57,  p 22-30","relatedTo":{"ob_id":33022,"uuid":"9ffc2afd029442a8bf4f1dfc5b688ca4","short_code":"ob"}},{"ob_id":52163,"function":"documentation","linkage":"https://www.sparc-climate.org/wp-content/uploads/sites/5/2021/07/SPARCnewsletter_Jul2021_web.pdf","name":"A new set of Chemistry-Climate Model Initiative (CCMI) Community Simulations to Update the Assessment of Models and Support Upcoming Ozone Assessment Activities, David Plummer et al. (2021), SPARC Newsletter,  volume 57,  p 22-30","relatedTo":{"ob_id":33019,"uuid":"9d93bed3b24648fcade5e427903c7da7","short_code":"ob"}},{"ob_id":52164,"function":"documentation","linkage":"https://www.sparc-climate.org/wp-content/uploads/sites/5/2021/07/SPARCnewsletter_Jul2021_web.pdf","name":"A new set of Chemistry-Climate Model Initiative (CCMI) Community Simulations to Update the Assessment of Models and Support Upcoming Ozone Assessment Activities, David Plummer et al. (2021), SPARC Newsletter,  volume 57,  pp 22-30","relatedTo":{"ob_id":32809,"uuid":"f088e7a33a25409197ea9b6aa3b90864","short_code":"ob"}},{"ob_id":52165,"function":"documentation","linkage":"https://climate.esa.int/projects/land-surface-temperature/","name":"ESA LST_cci webpages","relatedTo":{"ob_id":37377,"uuid":"d215ebefe04546088a14dfc7ffc0643f","short_code":"ob"}},{"ob_id":52166,"function":"documentation","linkage":"https://climate.esa.int","name":"ESA Climate Change Initiative website","relatedTo":{"ob_id":37377,"uuid":"d215ebefe04546088a14dfc7ffc0643f","short_code":"ob"}},{"ob_id":52167,"function":"documentation","linkage":"https://admin.climate.esa.int/media/documents/LST-CCI-D4.3-PUG_-_i2r0_-_Product_User_Guide.pdf","name":"Product User Guide","relatedTo":{"ob_id":37377,"uuid":"d215ebefe04546088a14dfc7ffc0643f","short_code":"ob"}}]}