Changes
On January 21, 2025 at 2:12:00 PM UTC,
-
Changed value of field
environment-msfd-classes
to['habitats-water-column']
in Mediterranean Sea Water body Dissolved Oxygen Seasonal climatology -
Changed value of field
environment-wfd
to['chemical-status']
in Mediterranean Sea Water body Dissolved Oxygen Seasonal climatology -
Changed value of field
environment-msfd-descriptors-criteria
to['d5-eutrophication']
in Mediterranean Sea Water body Dissolved Oxygen Seasonal climatology -
Changed value of field
environment-non-msfd-classes
to['habitats']
in Mediterranean Sea Water body Dissolved Oxygen Seasonal climatology
f | 1 | { | f | 1 | { |
2 | "additional_informations": "", | 2 | "additional_informations": "", | ||
3 | "author": null, | 3 | "author": null, | ||
4 | "author_email": null, | 4 | "author_email": null, | ||
5 | "autonotes": "", | 5 | "autonotes": "", | ||
6 | "category": "biological_characteristics", | 6 | "category": "biological_characteristics", | ||
7 | "child_of_string": "", | 7 | "child_of_string": "", | ||
8 | "children": "", | 8 | "children": "", | ||
9 | "coastal-land-use-and-planning": [], | 9 | "coastal-land-use-and-planning": [], | ||
10 | "conservation-types": [], | 10 | "conservation-types": [], | ||
11 | "creator_user_id": "370a5f47-73a6-4299-8365-59e48347e60b", | 11 | "creator_user_id": "370a5f47-73a6-4299-8365-59e48347e60b", | ||
12 | "crs": [ | 12 | "crs": [ | ||
13 | "4326" | 13 | "4326" | ||
14 | ], | 14 | ], | ||
15 | "crs_other": "", | 15 | "crs_other": "", | ||
16 | "data_accessibility": "", | 16 | "data_accessibility": "", | ||
17 | "data_portal": "EMODnet Chemistry", | 17 | "data_portal": "EMODnet Chemistry", | ||
18 | "derived": "", | 18 | "derived": "", | ||
19 | "derives_from_string": "", | 19 | "derives_from_string": "", | ||
20 | "domain_area": "mediterranean_sea", | 20 | "domain_area": "mediterranean_sea", | ||
21 | "ecosystem-services": [], | 21 | "ecosystem-services": [], | ||
n | 22 | "environment-msfd-classes": [], | n | 22 | "environment-msfd-classes": [ |
23 | "habitats-water-column" | ||||
24 | ], | ||||
23 | "environment-msfd-descriptors-criteria": [], | 25 | "environment-msfd-descriptors-criteria": [ | ||
26 | "d5-eutrophication" | ||||
27 | ], | ||||
24 | "environment-non-msfd-classes": [], | 28 | "environment-non-msfd-classes": [ | ||
29 | "habitats" | ||||
30 | ], | ||||
25 | "environment-wfd": [], | 31 | "environment-wfd": [ | ||
32 | "chemical-status" | ||||
33 | ], | ||||
26 | "groups": [], | 34 | "groups": [], | ||
27 | "id": "4a25e12b-23da-47cb-aa87-0dac047c8e24", | 35 | "id": "4a25e12b-23da-47cb-aa87-0dac047c8e24", | ||
28 | "isopen": true, | 36 | "isopen": true, | ||
29 | "language": "eng", | 37 | "language": "eng", | ||
30 | "legal-governance-planning-function": [], | 38 | "legal-governance-planning-function": [], | ||
31 | "legal-governance-planning-theme": [], | 39 | "legal-governance-planning-theme": [], | ||
32 | "license_id": "cc-by", | 40 | "license_id": "cc-by", | ||
33 | "license_title": "Creative Commons Attribution", | 41 | "license_title": "Creative Commons Attribution", | ||
34 | "license_url": "http://www.opendefinition.org/licenses/cc-by", | 42 | "license_url": "http://www.opendefinition.org/licenses/cc-by", | ||
35 | "maintainer": null, | 43 | "maintainer": null, | ||
36 | "maintainer_email": null, | 44 | "maintainer_email": null, | ||
37 | "maritime-activities": [], | 45 | "maritime-activities": [], | ||
38 | "metadata_completeness": "", | 46 | "metadata_completeness": "", | ||
39 | "metadata_created": "2025-01-21T14:11:15.048723", | 47 | "metadata_created": "2025-01-21T14:11:15.048723", | ||
t | 40 | "metadata_modified": "2025-01-21T14:11:15.048729", | t | 48 | "metadata_modified": "2025-01-21T14:12:00.793217", |
41 | "name": | 49 | "name": | ||
42 | "mediterranean-sea-water-body-dissolved-oxygen-seasonal-climatology", | 50 | "mediterranean-sea-water-body-dissolved-oxygen-seasonal-climatology", | ||
43 | "notes": "Moving 6-year analysis of Water body dissolved oxygen | 51 | "notes": "Moving 6-year analysis of Water body dissolved oxygen | ||
44 | concentration in the Mediterranean Sea for each season:\r\n- winter: | 52 | concentration in the Mediterranean Sea for each season:\r\n- winter: | ||
45 | January-March,\r\n- spring: April-June,\r\n- summer: | 53 | January-March,\r\n- spring: April-June,\r\n- summer: | ||
46 | July-September,\r\n- autumn: October-December. \r\nEvery year of the | 54 | July-September,\r\n- autumn: October-December. \r\nEvery year of the | ||
47 | time dimension corresponds to the 6-year centered average of the | 55 | time dimension corresponds to the 6-year centered average of the | ||
48 | season.\r\n6-years periods span from 1971-1976 until | 56 | season.\r\n6-years periods span from 1971-1976 until | ||
49 | 2017-2022.\r\nData Sources: observational data from SeaDataNet/EMODNet | 57 | 2017-2022.\r\nData Sources: observational data from SeaDataNet/EMODNet | ||
50 | Chemistry Data Network.\r\nDescription of DIVA analysis: The | 58 | Chemistry Data Network.\r\nDescription of DIVA analysis: The | ||
51 | computation was done with the DIVAnd (Data-Interpolating Variational | 59 | computation was done with the DIVAnd (Data-Interpolating Variational | ||
52 | Analysis in n dimensions), version 2.7.9, using GEBCO 30sec topography | 60 | Analysis in n dimensions), version 2.7.9, using GEBCO 30sec topography | ||
53 | for the spatial connectivity of water masses.\r\nThe horizontal | 61 | for the spatial connectivity of water masses.\r\nThe horizontal | ||
54 | resolution of the produced DIVAnd maps grids is dx=dy=0.125 degrees | 62 | resolution of the produced DIVAnd maps grids is dx=dy=0.125 degrees | ||
55 | (around 13.5km and 10.9km accordingly).\r\nThe vertical resolution is | 63 | (around 13.5km and 10.9km accordingly).\r\nThe vertical resolution is | ||
56 | 27 depth levels: | 64 | 27 depth levels: | ||
57 | 00.,800.,900.,1000.,1100.,1200.,1300.,1400.,1500.,1750.,2000.].\r\nThe | 65 | 00.,800.,900.,1000.,1100.,1200.,1300.,1400.,1500.,1750.,2000.].\r\nThe | ||
58 | horizontal correlation length is 200km.\r\nThe vertical correlation | 66 | horizontal correlation length is 200km.\r\nThe vertical correlation | ||
59 | length (in meters) was set twices the vertical resolution: | 67 | length (in meters) was set twices the vertical resolution: | ||
60 | 00.,200.,200.,200.,200.,200.,200.,200.,200.,200.,200.,500.,500.,500.]. | 68 | 00.,200.,200.,200.,200.,200.,200.,200.,200.,200.,200.,500.,500.,500.]. | ||
61 | \r\nDuplicates check was performed using the following criteria for | 69 | \r\nDuplicates check was performed using the following criteria for | ||
62 | space and time: dlon=0.001deg., dlat=0.001deg., ddepth=1m, | 70 | space and time: dlon=0.001deg., dlat=0.001deg., ddepth=1m, | ||
63 | dtime=1hour, dvalue=0.1.\r\nThe error variance (epsilon2) was set | 71 | dtime=1hour, dvalue=0.1.\r\nThe error variance (epsilon2) was set | ||
64 | equal to 1 for profiles and 10 for time series to reduce the influence | 72 | equal to 1 for profiles and 10 for time series to reduce the influence | ||
65 | of close data near the coasts.\r\nAn anamorphosis transformation was | 73 | of close data near the coasts.\r\nAn anamorphosis transformation was | ||
66 | applied to the data (function DIVAnd.Anam.loglin) to avoid unrealistic | 74 | applied to the data (function DIVAnd.Anam.loglin) to avoid unrealistic | ||
67 | negative values: threshold value=200.\r\nA background analysis field | 75 | negative values: threshold value=200.\r\nA background analysis field | ||
68 | was used for all years (1971-2022) with correlation length equal to | 76 | was used for all years (1971-2022) with correlation length equal to | ||
69 | 600km and error variance (epsilon2) equal to 20.\r\nQuality control of | 77 | 600km and error variance (epsilon2) equal to 20.\r\nQuality control of | ||
70 | the observations was applied using the interpolated field | 78 | the observations was applied using the interpolated field | ||
71 | (QCMETHOD=3). Residuals (differences between the observations and the | 79 | (QCMETHOD=3). Residuals (differences between the observations and the | ||
72 | analysis (interpolated linearly to the location of the observations) | 80 | analysis (interpolated linearly to the location of the observations) | ||
73 | were calculated. Observations with residuals outside the minimum and | 81 | were calculated. Observations with residuals outside the minimum and | ||
74 | maximum values of the 99% quantile were discarded from the analysis. | 82 | maximum values of the 99% quantile were discarded from the analysis. | ||
75 | \r\nOriginators of Italian data sets-List of contributors:\r\n- | 83 | \r\nOriginators of Italian data sets-List of contributors:\r\n- | ||
76 | Brunetti Fabio (OGS)\r\n- Cardin Vanessa, Bensi Manuel | 84 | Brunetti Fabio (OGS)\r\n- Cardin Vanessa, Bensi Manuel | ||
77 | doi:10.6092/36728450-4296-4e6a-967d-d5b6da55f306\r\n- Cardin Vanessa, | 85 | doi:10.6092/36728450-4296-4e6a-967d-d5b6da55f306\r\n- Cardin Vanessa, | ||
78 | Bensi Manuel, Ursella Laura, Siena Giuseppe | 86 | Bensi Manuel, Ursella Laura, Siena Giuseppe | ||
79 | doi:10.6092/f8e6d18e-f877-4aa5-a983-a03b06ccb987\r\n- Cataletto Bruno | 87 | doi:10.6092/f8e6d18e-f877-4aa5-a983-a03b06ccb987\r\n- Cataletto Bruno | ||
80 | (OGS)\r\n- Cinzia Comici Cinzia (OGS)\r\n- Civitarese Giuseppe | 88 | (OGS)\r\n- Cinzia Comici Cinzia (OGS)\r\n- Civitarese Giuseppe | ||
81 | (OGS)\r\n- DeVittor Cinzia (OGS)\r\n- Giani Michele (OGS)\r\n- | 89 | (OGS)\r\n- DeVittor Cinzia (OGS)\r\n- Giani Michele (OGS)\r\n- | ||
82 | Kovacevic Vedrana (OGS)\r\n- Mosetti Renzo (OGS)\r\n- Solidoro | 90 | Kovacevic Vedrana (OGS)\r\n- Mosetti Renzo (OGS)\r\n- Solidoro | ||
83 | C.,Beran A.,Cataletto B.,Celussi M.,Cibic T.,Comici C.,Del Negro P.,De | 91 | C.,Beran A.,Cataletto B.,Celussi M.,Cibic T.,Comici C.,Del Negro P.,De | ||
84 | Vittor C.,Minocci M.,Monti M.,Fabbro C.,Falconi C.,Franzo A.,Libralato | 92 | Vittor C.,Minocci M.,Monti M.,Fabbro C.,Falconi C.,Franzo A.,Libralato | ||
85 | S.,Lipizer M.,Negussanti J.S.,Russel H.,Valli G., | 93 | S.,Lipizer M.,Negussanti J.S.,Russel H.,Valli G., | ||
86 | doi:10.6092/e5518899-b914-43b0-8139-023718aa63f5\r\n- Celio Massimo | 94 | doi:10.6092/e5518899-b914-43b0-8139-023718aa63f5\r\n- Celio Massimo | ||
87 | (ARPA FVG)\r\n- Malaguti Antonella (ENEA)\r\n- Fonda Umani Serena | 95 | (ARPA FVG)\r\n- Malaguti Antonella (ENEA)\r\n- Fonda Umani Serena | ||
88 | (UNITS)\r\n- Bignami Francesco (ISAC/CNR)\r\n- Boldrini Alfredo | 96 | (UNITS)\r\n- Bignami Francesco (ISAC/CNR)\r\n- Boldrini Alfredo | ||
89 | (ISMAR/CNR)\r\n- Marini Mauro (ISMAR/CNR)\r\n- Miserocchi Stefano | 97 | (ISMAR/CNR)\r\n- Marini Mauro (ISMAR/CNR)\r\n- Miserocchi Stefano | ||
90 | (ISMAR/CNR)\r\n- Zaccone Renata (IAMC/CNR)\r\n- Lavezza, R., Dubroca, | 98 | (ISMAR/CNR)\r\n- Zaccone Renata (IAMC/CNR)\r\n- Lavezza, R., Dubroca, | ||
91 | L. F. C., Ludicone, D., Kress, N., Herut, B., Civitarese, G., Cruzado, | 99 | L. F. C., Ludicone, D., Kress, N., Herut, B., Civitarese, G., Cruzado, | ||
92 | A., Lef\u00e8vre, D.,Souvermezoglou, E., Yilmaz, A., Tugrul, S., and | 100 | A., Lef\u00e8vre, D.,Souvermezoglou, E., Yilmaz, A., Tugrul, S., and | ||
93 | Ribera d'Alcala, M.: Compilation of quality controlled nutrient | 101 | Ribera d'Alcala, M.: Compilation of quality controlled nutrient | ||
94 | profiles from the Mediterranean Sea, doi:10.1594/PANGAEA.771907, | 102 | profiles from the Mediterranean Sea, doi:10.1594/PANGAEA.771907, | ||
95 | 2011.", | 103 | 2011.", | ||
96 | "num_resources": 0, | 104 | "num_resources": 0, | ||
97 | "num_tags": 3, | 105 | "num_tags": 3, | ||
98 | "oceanographic-variables": [], | 106 | "oceanographic-variables": [], | ||
99 | "organization": { | 107 | "organization": { | ||
100 | "approval_status": "approved", | 108 | "approval_status": "approved", | ||
101 | "created": "2023-10-03T13:37:52.548819", | 109 | "created": "2023-10-03T13:37:52.548819", | ||
102 | "description": "Team for integration and updating of the Knowledge | 110 | "description": "Team for integration and updating of the Knowledge | ||
103 | Catalogue (metadata catalogue) for MSP on a national scale and | 111 | Catalogue (metadata catalogue) for MSP on a national scale and | ||
104 | Mediterranean projection, with a focus on safeguarding the | 112 | Mediterranean projection, with a focus on safeguarding the | ||
105 | biodiversity of marine ecosystems (Activity 4.1 Knowledge Catalogue | 113 | biodiversity of marine ecosystems (Activity 4.1 Knowledge Catalogue | ||
106 | for Biodiversity mainstreaming in Maritime Spatial Planning - | 114 | for Biodiversity mainstreaming in Maritime Spatial Planning - | ||
107 | MSP4BIODIVERSITY) within Spoke 2: Solutions to reverse marine | 115 | MSP4BIODIVERSITY) within Spoke 2: Solutions to reverse marine | ||
108 | biodiversity loss and manage marine resources sustainably of the | 116 | biodiversity loss and manage marine resources sustainably of the | ||
109 | __National Biodiversity Future Center \u2013 NBFC__\r\n\r\n", | 117 | __National Biodiversity Future Center \u2013 NBFC__\r\n\r\n", | ||
110 | "id": "8ed582af-8314-4998-b7e4-9de7cd1975dd", | 118 | "id": "8ed582af-8314-4998-b7e4-9de7cd1975dd", | ||
111 | "image_url": "2023-10-03-143557.861877LogoNBFCRGB.png", | 119 | "image_url": "2023-10-03-143557.861877LogoNBFCRGB.png", | ||
112 | "is_organization": true, | 120 | "is_organization": true, | ||
113 | "name": "msp-italy-working-team", | 121 | "name": "msp-italy-working-team", | ||
114 | "state": "active", | 122 | "state": "active", | ||
115 | "title": "MSP-Italy Working Team", | 123 | "title": "MSP-Italy Working Team", | ||
116 | "type": "organization" | 124 | "type": "organization" | ||
117 | }, | 125 | }, | ||
118 | "original-abstract": "", | 126 | "original-abstract": "", | ||
119 | "original-title": "Mediterranean Sea - DIVAnd 4D 6-year seasonal | 127 | "original-title": "Mediterranean Sea - DIVAnd 4D 6-year seasonal | ||
120 | analysis of Water body dissolved oxygen concentration 1971/2022 | 128 | analysis of Water body dissolved oxygen concentration 1971/2022 | ||
121 | v2023", | 129 | v2023", | ||
122 | "owner": "EMODnet Chemistry", | 130 | "owner": "EMODnet Chemistry", | ||
123 | "owner_org": "8ed582af-8314-4998-b7e4-9de7cd1975dd", | 131 | "owner_org": "8ed582af-8314-4998-b7e4-9de7cd1975dd", | ||
124 | "pdm_modules_relevance": [], | 132 | "pdm_modules_relevance": [], | ||
125 | "pdm_testing_relevance": [], | 133 | "pdm_testing_relevance": [], | ||
126 | "presentation_form": "map", | 134 | "presentation_form": "map", | ||
127 | "private": false, | 135 | "private": false, | ||
128 | "provider": "EMODnet Chemistry", | 136 | "provider": "EMODnet Chemistry", | ||
129 | "relationships_as_object": [], | 137 | "relationships_as_object": [], | ||
130 | "relationships_as_subject": [], | 138 | "relationships_as_subject": [], | ||
131 | "relevance-spatial-and-temporal": [], | 139 | "relevance-spatial-and-temporal": [], | ||
132 | "resources": [], | 140 | "resources": [], | ||
133 | "socio-economic-activities": [], | 141 | "socio-economic-activities": [], | ||
134 | "socio-economic-demography": [], | 142 | "socio-economic-demography": [], | ||
135 | "socio-economic-values": [], | 143 | "socio-economic-values": [], | ||
136 | "spatial_geojson": "", | 144 | "spatial_geojson": "", | ||
137 | "spatial_representation": "raster", | 145 | "spatial_representation": "raster", | ||
138 | "state": "draft", | 146 | "state": "draft", | ||
139 | "sub_category": "Biochemistry Water body Dissolved Oxygen", | 147 | "sub_category": "Biochemistry Water body Dissolved Oxygen", | ||
140 | "tags": [ | 148 | "tags": [ | ||
141 | { | 149 | { | ||
142 | "display_name": "EMODnet Chemistry", | 150 | "display_name": "EMODnet Chemistry", | ||
143 | "id": "a5dd60e2-6473-4d02-a032-82db042a68b7", | 151 | "id": "a5dd60e2-6473-4d02-a032-82db042a68b7", | ||
144 | "name": "EMODnet Chemistry", | 152 | "name": "EMODnet Chemistry", | ||
145 | "state": "active", | 153 | "state": "active", | ||
146 | "vocabulary_id": null | 154 | "vocabulary_id": null | ||
147 | }, | 155 | }, | ||
148 | { | 156 | { | ||
149 | "display_name": "biological_characteristics", | 157 | "display_name": "biological_characteristics", | ||
150 | "id": "6776bb52-faf6-42a4-9a20-5311cf349e14", | 158 | "id": "6776bb52-faf6-42a4-9a20-5311cf349e14", | ||
151 | "name": "biological_characteristics", | 159 | "name": "biological_characteristics", | ||
152 | "state": "active", | 160 | "state": "active", | ||
153 | "vocabulary_id": null | 161 | "vocabulary_id": null | ||
154 | }, | 162 | }, | ||
155 | { | 163 | { | ||
156 | "display_name": "mediterranean_sea", | 164 | "display_name": "mediterranean_sea", | ||
157 | "id": "781675ae-7e67-46ed-aadf-4fc3f1c4c655", | 165 | "id": "781675ae-7e67-46ed-aadf-4fc3f1c4c655", | ||
158 | "name": "mediterranean_sea", | 166 | "name": "mediterranean_sea", | ||
159 | "state": "active", | 167 | "state": "active", | ||
160 | "vocabulary_id": null | 168 | "vocabulary_id": null | ||
161 | } | 169 | } | ||
162 | ], | 170 | ], | ||
163 | "title": "Mediterranean Sea Water body Dissolved Oxygen Seasonal | 171 | "title": "Mediterranean Sea Water body Dissolved Oxygen Seasonal | ||
164 | climatology", | 172 | climatology", | ||
165 | "type": "msp-data", | 173 | "type": "msp-data", | ||
166 | "url": null, | 174 | "url": null, | ||
167 | "validation_level": "", | 175 | "validation_level": "", | ||
168 | "version": null, | 176 | "version": null, | ||
169 | "web_services": [ | 177 | "web_services": [ | ||
170 | "OGC_WMS" | 178 | "OGC_WMS" | ||
171 | ], | 179 | ], | ||
172 | "web_services_other": "" | 180 | "web_services_other": "" | ||
173 | } | 181 | } |