Changes
On March 4, 2025 at 10:59:32 AM UTC,
-
Changed the version of Ring wind tunnel experiments - airborne snow metamorphism and stable water isotopes to 1.0
f | 1 | { | f | 1 | { |
2 | "author": "[{\"given_name\": \"Sonja\", \"name\": \"Wahl\", | 2 | "author": "[{\"given_name\": \"Sonja\", \"name\": \"Wahl\", | ||
3 | \"email\": \"sonja.wahl@epfl.ch\", \"data_credit\": [\"software\", | 3 | \"email\": \"sonja.wahl@epfl.ch\", \"data_credit\": [\"software\", | ||
4 | \"curation\", \"collection\", \"validation\", \"publication\"], | 4 | \"curation\", \"collection\", \"validation\", \"publication\"], | ||
5 | \"identifier\": \"0000-0003-3387-6298\", \"affiliation\": | 5 | \"identifier\": \"0000-0003-3387-6298\", \"affiliation\": | ||
6 | \"\\u00c8cole Polytechnique F\\u00e8d\\u00e8rale de Lausanne, | 6 | \"\\u00c8cole Polytechnique F\\u00e8d\\u00e8rale de Lausanne, | ||
7 | Lausanne, Switzerland School of Architecture, Civil and Environmental | 7 | Lausanne, Switzerland School of Architecture, Civil and Environmental | ||
8 | Engineering, Laboratory of Cryospheric Sciences (CRYOS) and WSL | 8 | Engineering, Laboratory of Cryospheric Sciences (CRYOS) and WSL | ||
9 | Institute for Snow and Avalanche Research SLF, Davos, Switzerland\"}, | 9 | Institute for Snow and Avalanche Research SLF, Davos, Switzerland\"}, | ||
10 | {\"given_name\": \"Benjamin\", \"name\": \"Walter\", \"email\": | 10 | {\"given_name\": \"Benjamin\", \"name\": \"Walter\", \"email\": | ||
11 | \"walter@slf.ch\", \"data_credit\": [\"supervision\", \"curation\", | 11 | \"walter@slf.ch\", \"data_credit\": [\"supervision\", \"curation\", | ||
12 | \"collection\"], \"identifier\": \"0000-0003-0282-8605\", | 12 | \"collection\"], \"identifier\": \"0000-0003-0282-8605\", | ||
13 | \"affiliation\": \"WSL-SLF\"}, {\"given_name\": \"Luca\", \"name\": | 13 | \"affiliation\": \"WSL-SLF\"}, {\"given_name\": \"Luca\", \"name\": | ||
14 | \"Bianchi\", \"email\": \"luca.bianchi@epfl.ch\", \"data_credit\": | 14 | \"Bianchi\", \"email\": \"luca.bianchi@epfl.ch\", \"data_credit\": | ||
15 | [\"collection\"], \"identifier\": \"0009-0007-8363-8729\", | 15 | [\"collection\"], \"identifier\": \"0009-0007-8363-8729\", | ||
16 | \"affiliation\": \"WSL-SLF \"}, {\"given_name\": \"Franziska\", | 16 | \"affiliation\": \"WSL-SLF \"}, {\"given_name\": \"Franziska\", | ||
17 | \"name\": \"Aemisegger\", \"email\": | 17 | \"name\": \"Aemisegger\", \"email\": | ||
18 | \"franziska.aemisegger@env.ethz.ch\", \"data_credit\": [\"curation\", | 18 | \"franziska.aemisegger@env.ethz.ch\", \"data_credit\": [\"curation\", | ||
19 | \"collection\"], \"identifier\": \"0000-0002-4022-9825 \", | 19 | \"collection\"], \"identifier\": \"0000-0002-4022-9825 \", | ||
20 | \"affiliation\": \"Institute for Atmospheric and Climate Science, ETH | 20 | \"affiliation\": \"Institute for Atmospheric and Climate Science, ETH | ||
21 | Zurich, Switzerland\"}, {\"given_name\": \"Michael\", \"name\": | 21 | Zurich, Switzerland\"}, {\"given_name\": \"Michael\", \"name\": | ||
22 | \"Lehning\", \"email\": \"lehning@slf.ch\", \"data_credit\": | 22 | \"Lehning\", \"email\": \"lehning@slf.ch\", \"data_credit\": | ||
23 | [\"curation\", \"supervision\"], \"identifier\": | 23 | [\"curation\", \"supervision\"], \"identifier\": | ||
24 | \"0000-0002-8442-0875\", \"affiliation\": \"\\u00c8cole Polytechnique | 24 | \"0000-0002-8442-0875\", \"affiliation\": \"\\u00c8cole Polytechnique | ||
25 | F\\u00e8d\\u00e8rale de Lausanne, Lausanne, Switzerland School of | 25 | F\\u00e8d\\u00e8rale de Lausanne, Lausanne, Switzerland School of | ||
26 | Architecture, Civil and Environmental Engineering, Laboratory of | 26 | Architecture, Civil and Environmental Engineering, Laboratory of | ||
27 | Cryospheric Sciences (CRYOS) and WSL Institute for Snow and Avalanche | 27 | Cryospheric Sciences (CRYOS) and WSL Institute for Snow and Avalanche | ||
28 | Research SLF, Davos, Switzerland\"}]", | 28 | Research SLF, Davos, Switzerland\"}]", | ||
29 | "author_email": null, | 29 | "author_email": null, | ||
30 | "creator_user_id": "94d21158-5550-4ed1-9a92-ae1322a97b2e", | 30 | "creator_user_id": "94d21158-5550-4ed1-9a92-ae1322a97b2e", | ||
31 | "date": | 31 | "date": | ||
32 | :\"collected\",\"date\":\"2024-01-09\",\"end_date\":\"2024-05-31\"}]", | 32 | :\"collected\",\"date\":\"2024-01-09\",\"end_date\":\"2024-05-31\"}]", | ||
33 | "doi": "10.16904/envidat.494", | 33 | "doi": "10.16904/envidat.494", | ||
34 | "funding": "[{\"institution\":\"SNF\",\"grant_number\":\" | 34 | "funding": "[{\"institution\":\"SNF\",\"grant_number\":\" | ||
35 | \",\"institution_url\":\"https://data.snf.ch/grants/grant/179130\"}]", | 35 | \",\"institution_url\":\"https://data.snf.ch/grants/grant/179130\"}]", | ||
36 | "groups": [], | 36 | "groups": [], | ||
37 | "id": "f2ebc8e9-e757-47a8-8713-8892cb1cb25f", | 37 | "id": "f2ebc8e9-e757-47a8-8713-8892cb1cb25f", | ||
38 | "isopen": true, | 38 | "isopen": true, | ||
39 | "license_id": "cc-by-sa", | 39 | "license_id": "cc-by-sa", | ||
40 | "license_title": "Creative Commons Attribution Share-Alike | 40 | "license_title": "Creative Commons Attribution Share-Alike | ||
41 | (CC-BY-SA)", | 41 | (CC-BY-SA)", | ||
42 | "license_url": "https://creativecommons.org/licenses/by-sa/4.0/", | 42 | "license_url": "https://creativecommons.org/licenses/by-sa/4.0/", | ||
43 | "maintainer": | 43 | "maintainer": | ||
44 | ":\"sonja.wahl@epfl.ch\",\"given_name\":\"Sonja\",\"name\":\"Wahl\"}", | 44 | ":\"sonja.wahl@epfl.ch\",\"given_name\":\"Sonja\",\"name\":\"Wahl\"}", | ||
45 | "maintainer_email": null, | 45 | "maintainer_email": null, | ||
46 | "metadata_created": "2024-02-28T05:32:55.309669", | 46 | "metadata_created": "2024-02-28T05:32:55.309669", | ||
n | 47 | "metadata_modified": "2024-03-12T18:48:33.333944", | n | 47 | "metadata_modified": "2025-03-04T10:59:32.809118", |
48 | "name": "ring-wind-tunnel-airborne-snow-metamorphism", | 48 | "name": "ring-wind-tunnel-airborne-snow-metamorphism", | ||
49 | "notes": "This dataset collection contains all datasets collected | 49 | "notes": "This dataset collection contains all datasets collected | ||
50 | during the ring wind tunnel experiments in January and May 2023 at the | 50 | during the ring wind tunnel experiments in January and May 2023 at the | ||
51 | SLF cold laboratory facilities in Davos. A full description of the | 51 | SLF cold laboratory facilities in Davos. A full description of the | ||
52 | experiment set-up can be found in Wahl et al. (2024). The collection | 52 | experiment set-up can be found in Wahl et al. (2024). The collection | ||
53 | contains data from 19 experiments. The dataset collection entails | 53 | contains data from 19 experiments. The dataset collection entails | ||
54 | measurements of the stable water isotopic composition of snow samples | 54 | measurements of the stable water isotopic composition of snow samples | ||
55 | and the water vapour inside the wind tunnel, measurements of the | 55 | and the water vapour inside the wind tunnel, measurements of the | ||
56 | meteorological variables inside the wind tunnel and snow sample | 56 | meteorological variables inside the wind tunnel and snow sample | ||
57 | properties as measured with microCT measurements (sphere size | 57 | properties as measured with microCT measurements (sphere size | ||
58 | distribution and specific surface area (SSA)).", | 58 | distribution and specific surface area (SSA)).", | ||
59 | "num_resources": 6, | 59 | "num_resources": 6, | ||
60 | "num_tags": 8, | 60 | "num_tags": 8, | ||
61 | "organization": { | 61 | "organization": { | ||
62 | "approval_status": "approved", | 62 | "approval_status": "approved", | ||
63 | "created": "2018-11-15T15:30:05.707541", | 63 | "created": "2018-11-15T15:30:05.707541", | ||
64 | "description": "", | 64 | "description": "", | ||
65 | "id": "f2a8afe5-e84e-454b-b5d9-6c1bf682eabd", | 65 | "id": "f2a8afe5-e84e-454b-b5d9-6c1bf682eabd", | ||
66 | "image_url": "", | 66 | "image_url": "", | ||
67 | "is_organization": true, | 67 | "is_organization": true, | ||
68 | "name": "snow-processes", | 68 | "name": "snow-processes", | ||
69 | "state": "active", | 69 | "state": "active", | ||
70 | "title": "Snow Processes", | 70 | "title": "Snow Processes", | ||
71 | "type": "organization" | 71 | "type": "organization" | ||
72 | }, | 72 | }, | ||
73 | "owner_org": "f2a8afe5-e84e-454b-b5d9-6c1bf682eabd", | 73 | "owner_org": "f2a8afe5-e84e-454b-b5d9-6c1bf682eabd", | ||
74 | "private": false, | 74 | "private": false, | ||
75 | "publication": | 75 | "publication": | ||
76 | "{\"publisher\":\"EnviDat\",\"publication_year\":\"2024\"}", | 76 | "{\"publisher\":\"EnviDat\",\"publication_year\":\"2024\"}", | ||
77 | "publication_state": "published", | 77 | "publication_state": "published", | ||
78 | "relationships_as_object": [], | 78 | "relationships_as_object": [], | ||
79 | "relationships_as_subject": [], | 79 | "relationships_as_subject": [], | ||
80 | "resource_type": "dataset", | 80 | "resource_type": "dataset", | ||
81 | "resource_type_general": "dataset", | 81 | "resource_type_general": "dataset", | ||
82 | "resources": [ | 82 | "resources": [ | ||
83 | { | 83 | { | ||
84 | "cache_last_updated": null, | 84 | "cache_last_updated": null, | ||
85 | "cache_url": null, | 85 | "cache_url": null, | ||
86 | "created": "2024-02-28T05:33:28.494419", | 86 | "created": "2024-02-28T05:33:28.494419", | ||
87 | "description": "The dataset contains the stable water isotopic | 87 | "description": "The dataset contains the stable water isotopic | ||
88 | composition (d18O, dD. d-excess) of the snow samples taken during the | 88 | composition (d18O, dD. d-excess) of the snow samples taken during the | ||
89 | ring wind tunnel experiments in January and May 2023 at the SLF cold | 89 | ring wind tunnel experiments in January and May 2023 at the SLF cold | ||
90 | laboratory facilities in Davos. The snow samples were collected in | 90 | laboratory facilities in Davos. The snow samples were collected in | ||
91 | air-tight WhirlPaks and kept frozen at -20\u00b0C until they were | 91 | air-tight WhirlPaks and kept frozen at -20\u00b0C until they were | ||
92 | melted in the closed sampling bags, filtered and 1.8ml were | 92 | melted in the closed sampling bags, filtered and 1.8ml were | ||
93 | transferred into a 2ml glass vial and shipped to the Paul Scherrer | 93 | transferred into a 2ml glass vial and shipped to the Paul Scherrer | ||
94 | Institut in Villigen, Switzerland where they were analysed following | 94 | Institut in Villigen, Switzerland where they were analysed following | ||
95 | established laboratory procedures. The combined uncertainty on the | 95 | established laboratory procedures. The combined uncertainty on the | ||
96 | individual isotopic composition is <0.5\u2030 for dD and <0.1\u2030 | 96 | individual isotopic composition is <0.5\u2030 for dD and <0.1\u2030 | ||
97 | for d18O which yields an uncertainty of 0.9\u2030 on | 97 | for d18O which yields an uncertainty of 0.9\u2030 on | ||
98 | d-excess.\nTimestamps are given for local Davos time (LT) and | 98 | d-excess.\nTimestamps are given for local Davos time (LT) and | ||
99 | synchronised to the CRDS instrument which is in UTC. The \"ExpNo\" | 99 | synchronised to the CRDS instrument which is in UTC. The \"ExpNo\" | ||
100 | column refers to the experiment numbers given in Wahl et al. (2024), | 100 | column refers to the experiment numbers given in Wahl et al. (2024), | ||
101 | Table 1. The \"type\" of the snow samples is: \"ini\" = initial snow | 101 | Table 1. The \"type\" of the snow samples is: \"ini\" = initial snow | ||
102 | before introduction to the wind tunnel, \"airborne\" = snow sampled | 102 | before introduction to the wind tunnel, \"airborne\" = snow sampled | ||
103 | out of the air, \"acc_in\" = inner part of accumulated snow, | 103 | out of the air, \"acc_in\" = inner part of accumulated snow, | ||
104 | \"acc_out\" = outer surface layer of accumulated snow.", | 104 | \"acc_out\" = outer surface layer of accumulated snow.", | ||
105 | "doi": "", | 105 | "doi": "", | ||
106 | "format": "TXT", | 106 | "format": "TXT", | ||
107 | "hash": "", | 107 | "hash": "", | ||
108 | "id": "68873e4c-7b30-4f82-b97c-446c80546216", | 108 | "id": "68873e4c-7b30-4f82-b97c-446c80546216", | ||
109 | "last_modified": "2024-03-08T12:14:19.532000", | 109 | "last_modified": "2024-03-08T12:14:19.532000", | ||
110 | "metadata_modified": "2024-03-08T20:14:20.893426", | 110 | "metadata_modified": "2024-03-08T20:14:20.893426", | ||
111 | "mimetype": "text/plain", | 111 | "mimetype": "text/plain", | ||
112 | "mimetype_inner": null, | 112 | "mimetype_inner": null, | ||
113 | "name": "Snow samples - stable water isotopic composition", | 113 | "name": "Snow samples - stable water isotopic composition", | ||
114 | "package_id": "f2ebc8e9-e757-47a8-8713-8892cb1cb25f", | 114 | "package_id": "f2ebc8e9-e757-47a8-8713-8892cb1cb25f", | ||
115 | "position": 0, | 115 | "position": 0, | ||
116 | "resource_size": "{\"size_value\":\"\",\"size_units\":\"\"}", | 116 | "resource_size": "{\"size_value\":\"\",\"size_units\":\"\"}", | ||
117 | "resource_type": null, | 117 | "resource_type": null, | ||
118 | "restricted": | 118 | "restricted": | ||
119 | {\"level\":\"public\",\"allowed_users\":\"\",\"shared_secret\":\"\"}", | 119 | {\"level\":\"public\",\"allowed_users\":\"\",\"shared_secret\":\"\"}", | ||
120 | "size": 20365, | 120 | "size": 20365, | ||
121 | "state": "active", | 121 | "state": "active", | ||
122 | "url": | 122 | "url": | ||
123 | b30-4f82-b97c-446c80546216/download/windtunnel2023_snow_isotopes.txt", | 123 | b30-4f82-b97c-446c80546216/download/windtunnel2023_snow_isotopes.txt", | ||
124 | "url_type": "upload" | 124 | "url_type": "upload" | ||
125 | }, | 125 | }, | ||
126 | { | 126 | { | ||
127 | "cache_last_updated": null, | 127 | "cache_last_updated": null, | ||
128 | "cache_url": null, | 128 | "cache_url": null, | ||
129 | "created": "2024-02-28T05:50:12.946035", | 129 | "created": "2024-02-28T05:50:12.946035", | ||
130 | "description": "The water vapour and its calibrated isotopic | 130 | "description": "The water vapour and its calibrated isotopic | ||
131 | composition sampled inside the wind tunnel at 46cm height during the | 131 | composition sampled inside the wind tunnel at 46cm height during the | ||
132 | experiments. The vapour was pumped through a heated copper tube at a | 132 | experiments. The vapour was pumped through a heated copper tube at a | ||
133 | rate of 0.2 l/min to the CRDS instrument located in a temperate room | 133 | rate of 0.2 l/min to the CRDS instrument located in a temperate room | ||
134 | outside the cold laboratory. The data has 1 second resolution with the | 134 | outside the cold laboratory. The data has 1 second resolution with the | ||
135 | timestamp in UTC (CRDS reference time). The measured variables are the | 135 | timestamp in UTC (CRDS reference time). The measured variables are the | ||
136 | calibrated d18O (\u2030), dD (\u2030) and d-excess (\u2030) signals | 136 | calibrated d18O (\u2030), dD (\u2030) and d-excess (\u2030) signals | ||
137 | and the uncalibrated (\"H2Oraw\", ppmv) and calibrated | 137 | and the uncalibrated (\"H2Oraw\", ppmv) and calibrated | ||
138 | (\"H2Ocali\",ppmv) humidity readings of the CRDS and converted to | 138 | (\"H2Ocali\",ppmv) humidity readings of the CRDS and converted to | ||
139 | specific humidity (\"spechum\", g/kg). The isotope data was corrected | 139 | specific humidity (\"spechum\", g/kg). The isotope data was corrected | ||
140 | for its humidity-isotope dependency and referenced against the | 140 | for its humidity-isotope dependency and referenced against the | ||
141 | VSMOW-SLAP scale. Calibration runs were performed daily and details | 141 | VSMOW-SLAP scale. Calibration runs were performed daily and details | ||
142 | can be found in Wahl et al. (2024) including the Supplementary | 142 | can be found in Wahl et al. (2024) including the Supplementary | ||
143 | Materials.", | 143 | Materials.", | ||
144 | "doi": "", | 144 | "doi": "", | ||
145 | "format": "TXT", | 145 | "format": "TXT", | ||
146 | "hash": "", | 146 | "hash": "", | ||
147 | "id": "e1ffe37c-e289-4eb5-a65f-af474e56fae7", | 147 | "id": "e1ffe37c-e289-4eb5-a65f-af474e56fae7", | ||
148 | "last_modified": "2024-03-11T16:30:27.292000", | 148 | "last_modified": "2024-03-11T16:30:27.292000", | ||
149 | "metadata_modified": "2024-03-11T23:30:28.572786", | 149 | "metadata_modified": "2024-03-11T23:30:28.572786", | ||
150 | "mimetype": "text/plain", | 150 | "mimetype": "text/plain", | ||
151 | "mimetype_inner": null, | 151 | "mimetype_inner": null, | ||
152 | "name": "Wind tunnel water vapour isotopic composition", | 152 | "name": "Wind tunnel water vapour isotopic composition", | ||
153 | "package_id": "f2ebc8e9-e757-47a8-8713-8892cb1cb25f", | 153 | "package_id": "f2ebc8e9-e757-47a8-8713-8892cb1cb25f", | ||
154 | "position": 1, | 154 | "position": 1, | ||
155 | "resource_size": "{\"size_value\":\"\",\"size_units\":\"\"}", | 155 | "resource_size": "{\"size_value\":\"\",\"size_units\":\"\"}", | ||
156 | "resource_type": null, | 156 | "resource_type": null, | ||
157 | "restricted": | 157 | "restricted": | ||
158 | {\"level\":\"public\",\"allowed_users\":\"\",\"shared_secret\":\"\"}", | 158 | {\"level\":\"public\",\"allowed_users\":\"\",\"shared_secret\":\"\"}", | ||
159 | "size": 46068957, | 159 | "size": 46068957, | ||
160 | "state": "active", | 160 | "state": "active", | ||
161 | "url": | 161 | "url": | ||
162 | 89-4eb5-a65f-af474e56fae7/download/windtunnel2023_vapor_isotopes.txt", | 162 | 89-4eb5-a65f-af474e56fae7/download/windtunnel2023_vapor_isotopes.txt", | ||
163 | "url_type": "upload" | 163 | "url_type": "upload" | ||
164 | }, | 164 | }, | ||
165 | { | 165 | { | ||
166 | "cache_last_updated": null, | 166 | "cache_last_updated": null, | ||
167 | "cache_url": null, | 167 | "cache_url": null, | ||
168 | "created": "2024-02-28T05:54:25.615861", | 168 | "created": "2024-02-28T05:54:25.615861", | ||
169 | "description": "The dataset contains the 1-minute averages of | 169 | "description": "The dataset contains the 1-minute averages of | ||
170 | the calibrated meteorological variables: temperature (T, \u00b0C), | 170 | the calibrated meteorological variables: temperature (T, \u00b0C), | ||
171 | relative humidity (RH, %), relative humidity referenced against | 171 | relative humidity (RH, %), relative humidity referenced against | ||
172 | saturation over ice (RHice, %), specific humidity (q, g/kg) and wind | 172 | saturation over ice (RHice, %), specific humidity (q, g/kg) and wind | ||
173 | speed (WS, m/s) as measured in the observation section of the wind | 173 | speed (WS, m/s) as measured in the observation section of the wind | ||
174 | tunnel at different heights and the room temperature of the laboratory | 174 | tunnel at different heights and the room temperature of the laboratory | ||
175 | measured outside the wind tunnel (Lab_Ta, \u00b0C). The measurement | 175 | measured outside the wind tunnel (Lab_Ta, \u00b0C). The measurement | ||
176 | heights correspond to: \"Top\"=42.5cm, \"Mid\"=30cm, \"Bot\"=15cm, | 176 | heights correspond to: \"Top\"=42.5cm, \"Mid\"=30cm, \"Bot\"=15cm, | ||
177 | \"PT100_Ta\"=3cm. \"WS\" was measured at 36.5cm height. The time was | 177 | \"PT100_Ta\"=3cm. \"WS\" was measured at 36.5cm height. The time was | ||
178 | synchronised to the concurrent CRDS measurements (which are UTC) and | 178 | synchronised to the concurrent CRDS measurements (which are UTC) and | ||
179 | adjusted for the time lag resulting from pumping vapour from inside | 179 | adjusted for the time lag resulting from pumping vapour from inside | ||
180 | the wind tunnel to the CRDS. The timestamps indicate the beginning of | 180 | the wind tunnel to the CRDS. The timestamps indicate the beginning of | ||
181 | the averaging period.", | 181 | the averaging period.", | ||
182 | "doi": "", | 182 | "doi": "", | ||
183 | "format": "TXT", | 183 | "format": "TXT", | ||
184 | "hash": "", | 184 | "hash": "", | ||
185 | "id": "1fcb9bb3-769d-40ee-948f-1b6899c6d488", | 185 | "id": "1fcb9bb3-769d-40ee-948f-1b6899c6d488", | ||
186 | "last_modified": "2024-02-28T21:49:59.099000", | 186 | "last_modified": "2024-02-28T21:49:59.099000", | ||
187 | "metadata_modified": "2024-02-29T05:50:00.536371", | 187 | "metadata_modified": "2024-02-29T05:50:00.536371", | ||
188 | "mimetype": "text/plain", | 188 | "mimetype": "text/plain", | ||
189 | "mimetype_inner": null, | 189 | "mimetype_inner": null, | ||
190 | "name": "Meteorological variables measured inside the wind | 190 | "name": "Meteorological variables measured inside the wind | ||
191 | tunnel during the May 2023 experiments", | 191 | tunnel during the May 2023 experiments", | ||
192 | "package_id": "f2ebc8e9-e757-47a8-8713-8892cb1cb25f", | 192 | "package_id": "f2ebc8e9-e757-47a8-8713-8892cb1cb25f", | ||
193 | "position": 2, | 193 | "position": 2, | ||
194 | "resource_size": "{\"size_value\":\"\",\"size_units\":\"\"}", | 194 | "resource_size": "{\"size_value\":\"\",\"size_units\":\"\"}", | ||
195 | "resource_type": null, | 195 | "resource_type": null, | ||
196 | "restricted": | 196 | "restricted": | ||
197 | {\"level\":\"public\",\"allowed_users\":\"\",\"shared_secret\":\"\"}", | 197 | {\"level\":\"public\",\"allowed_users\":\"\",\"shared_secret\":\"\"}", | ||
198 | "size": 290145, | 198 | "size": 290145, | ||
199 | "state": "active", | 199 | "state": "active", | ||
200 | "url": | 200 | "url": | ||
201 | 40ee-948f-1b6899c6d488/download/windtunnel2023_metvariables_1min.txt", | 201 | 40ee-948f-1b6899c6d488/download/windtunnel2023_metvariables_1min.txt", | ||
202 | "url_type": "upload" | 202 | "url_type": "upload" | ||
203 | }, | 203 | }, | ||
204 | { | 204 | { | ||
205 | "cache_last_updated": null, | 205 | "cache_last_updated": null, | ||
206 | "cache_url": null, | 206 | "cache_url": null, | ||
207 | "created": "2024-02-29T05:15:20.116714", | 207 | "created": "2024-02-29T05:15:20.116714", | ||
208 | "description": "The individual measurement reports of the | 208 | "description": "The individual measurement reports of the | ||
209 | microCT scan for each snow sample as combined zip file. The file names | 209 | microCT scan for each snow sample as combined zip file. The file names | ||
210 | and the sample number indicate which snow sample it is, see \"Snow | 210 | and the sample number indicate which snow sample it is, see \"Snow | ||
211 | samples - microCT measurements\". Each file contains the statistics | 211 | samples - microCT measurements\". Each file contains the statistics | ||
212 | and the count of fitted sphere size diameters and the respective share | 212 | and the count of fitted sphere size diameters and the respective share | ||
213 | (in-%) in the frequency distribution. Immediately after snow sampling, | 213 | (in-%) in the frequency distribution. Immediately after snow sampling, | ||
214 | a small portion of snow was transferred to the cylindrical \u03bcCT | 214 | a small portion of snow was transferred to the cylindrical \u03bcCT | ||
215 | sample holder with a diameter of 15 mm and analysed at -20\u00b0C | 215 | sample holder with a diameter of 15 mm and analysed at -20\u00b0C | ||
216 | using a Scanco\u00ae CT-40 scanner. The analysis followed Hildebrand | 216 | using a Scanco\u00ae CT-40 scanner. The analysis followed Hildebrand | ||
217 | and R\u00fcegsegger (1997).", | 217 | and R\u00fcegsegger (1997).", | ||
218 | "doi": "", | 218 | "doi": "", | ||
219 | "format": "ZIP", | 219 | "format": "ZIP", | ||
220 | "hash": "", | 220 | "hash": "", | ||
221 | "id": "d91180d7-3057-462d-b893-20a01974b0a1", | 221 | "id": "d91180d7-3057-462d-b893-20a01974b0a1", | ||
222 | "last_modified": "2024-03-12T10:57:22.948000", | 222 | "last_modified": "2024-03-12T10:57:22.948000", | ||
223 | "metadata_modified": "2024-03-12T17:57:24.192216", | 223 | "metadata_modified": "2024-03-12T17:57:24.192216", | ||
224 | "mimetype": "application/zip", | 224 | "mimetype": "application/zip", | ||
225 | "mimetype_inner": null, | 225 | "mimetype_inner": null, | ||
226 | "name": "Snow samples - sphere size statistics files", | 226 | "name": "Snow samples - sphere size statistics files", | ||
227 | "package_id": "f2ebc8e9-e757-47a8-8713-8892cb1cb25f", | 227 | "package_id": "f2ebc8e9-e757-47a8-8713-8892cb1cb25f", | ||
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230 | "resource_type": null, | 230 | "resource_type": null, | ||
231 | "restricted": | 231 | "restricted": | ||
232 | {\"level\":\"public\",\"allowed_users\":\"\",\"shared_secret\":\"\"}", | 232 | {\"level\":\"public\",\"allowed_users\":\"\",\"shared_secret\":\"\"}", | ||
233 | "size": 62459, | 233 | "size": 62459, | ||
234 | "state": "active", | 234 | "state": "active", | ||
235 | "url": | 235 | "url": | ||
236 | d-b893-20a01974b0a1/download/snowsamples_spheresizedistributions.zip", | 236 | d-b893-20a01974b0a1/download/snowsamples_spheresizedistributions.zip", | ||
237 | "url_type": "upload" | 237 | "url_type": "upload" | ||
238 | }, | 238 | }, | ||
239 | { | 239 | { | ||
240 | "cache_last_updated": null, | 240 | "cache_last_updated": null, | ||
241 | "cache_url": null, | 241 | "cache_url": null, | ||
242 | "created": "2024-02-29T06:00:07.141971", | 242 | "created": "2024-02-29T06:00:07.141971", | ||
243 | "description": "The dataset contains the 1-minute averages of | 243 | "description": "The dataset contains the 1-minute averages of | ||
244 | the calibrated meteorological variables: temperature (T, \u00b0C), | 244 | the calibrated meteorological variables: temperature (T, \u00b0C), | ||
245 | relative humidity (RH, %), relative humidity referenced against | 245 | relative humidity (RH, %), relative humidity referenced against | ||
246 | saturation over ice (RHice, %), specific humidity (q, g/kg) and wind | 246 | saturation over ice (RHice, %), specific humidity (q, g/kg) and wind | ||
247 | speed (WS, m/s) as measured in the observation section of the wind | 247 | speed (WS, m/s) as measured in the observation section of the wind | ||
248 | tunnel at different heights. The measurement heights correspond to: | 248 | tunnel at different heights. The measurement heights correspond to: | ||
249 | \"Top\"=42.5cm, \"Mid\"=30cm, \"Bot\"=15cm, \"PT100_Ta\"=3cm. \"WS\" | 249 | \"Top\"=42.5cm, \"Mid\"=30cm, \"Bot\"=15cm, \"PT100_Ta\"=3cm. \"WS\" | ||
250 | was measured at 36.5cm height. The timestamp is in local time (UTC+1) | 250 | was measured at 36.5cm height. The timestamp is in local time (UTC+1) | ||
251 | and indicates the start of the averaging period.", | 251 | and indicates the start of the averaging period.", | ||
252 | "doi": "", | 252 | "doi": "", | ||
253 | "format": "TXT", | 253 | "format": "TXT", | ||
254 | "hash": "", | 254 | "hash": "", | ||
255 | "id": "a9edeb00-0547-47a3-821d-0a70b86af7ab", | 255 | "id": "a9edeb00-0547-47a3-821d-0a70b86af7ab", | ||
256 | "last_modified": "2024-02-28T22:01:06.662000", | 256 | "last_modified": "2024-02-28T22:01:06.662000", | ||
257 | "metadata_modified": "2024-02-29T06:01:08.317888", | 257 | "metadata_modified": "2024-02-29T06:01:08.317888", | ||
258 | "mimetype": "text/plain", | 258 | "mimetype": "text/plain", | ||
259 | "mimetype_inner": null, | 259 | "mimetype_inner": null, | ||
260 | "name": "Meteorological variables measured inside the wind | 260 | "name": "Meteorological variables measured inside the wind | ||
261 | tunnel during the January 2023 experiments", | 261 | tunnel during the January 2023 experiments", | ||
262 | "package_id": "f2ebc8e9-e757-47a8-8713-8892cb1cb25f", | 262 | "package_id": "f2ebc8e9-e757-47a8-8713-8892cb1cb25f", | ||
263 | "position": 4, | 263 | "position": 4, | ||
264 | "resource_size": "{\"size_value\":\"\",\"size_units\":\"\"}", | 264 | "resource_size": "{\"size_value\":\"\",\"size_units\":\"\"}", | ||
265 | "resource_type": null, | 265 | "resource_type": null, | ||
266 | "restricted": | 266 | "restricted": | ||
267 | {\"level\":\"public\",\"allowed_users\":\"\",\"shared_secret\":\"\"}", | 267 | {\"level\":\"public\",\"allowed_users\":\"\",\"shared_secret\":\"\"}", | ||
268 | "size": 41430, | 268 | "size": 41430, | ||
269 | "state": "active", | 269 | "state": "active", | ||
270 | "url": | 270 | "url": | ||
271 | 3-821d-0a70b86af7ab/download/windtunnel2023_janmetvariables_1min.txt", | 271 | 3-821d-0a70b86af7ab/download/windtunnel2023_janmetvariables_1min.txt", | ||
272 | "url_type": "upload" | 272 | "url_type": "upload" | ||
273 | }, | 273 | }, | ||
274 | { | 274 | { | ||
275 | "cache_last_updated": null, | 275 | "cache_last_updated": null, | ||
276 | "cache_url": null, | 276 | "cache_url": null, | ||
277 | "created": "2024-03-11T23:36:02.905771", | 277 | "created": "2024-03-11T23:36:02.905771", | ||
278 | "description": "The data of the snow samples that were analysed | 278 | "description": "The data of the snow samples that were analysed | ||
279 | in a Scanco\u00ae CT-40 scanner using a sample holder of 15 mm | 279 | in a Scanco\u00ae CT-40 scanner using a sample holder of 15 mm | ||
280 | diameter which allowed for a high-resolution analysis with voxel size | 280 | diameter which allowed for a high-resolution analysis with voxel size | ||
281 | of 8 \u03bcm. The timestamp (local time, Davos, Switzerland) of snow | 281 | of 8 \u03bcm. The timestamp (local time, Davos, Switzerland) of snow | ||
282 | sampling is given as well as the type of snow sample (see Snow samples | 282 | sampling is given as well as the type of snow sample (see Snow samples | ||
283 | - stable water isotopic composition dataset), the corresponding wind | 283 | - stable water isotopic composition dataset), the corresponding wind | ||
284 | tunnel experiment number (\"ExpNo\", Wahl et al. (2024), Table 1) and | 284 | tunnel experiment number (\"ExpNo\", Wahl et al. (2024), Table 1) and | ||
285 | the time since the snow introduction to the wind tunnel. The measured | 285 | the time since the snow introduction to the wind tunnel. The measured | ||
286 | SSA is given in units 1/mm. The column \"hist_filename\" lists the | 286 | SSA is given in units 1/mm. The column \"hist_filename\" lists the | ||
287 | name of the corresponding .txt file which contains the sphere size | 287 | name of the corresponding .txt file which contains the sphere size | ||
288 | statistics of the snow samples. The sphere size statistics files are | 288 | statistics of the snow samples. The sphere size statistics files are | ||
289 | compressed in a .zip file.", | 289 | compressed in a .zip file.", | ||
290 | "doi": "", | 290 | "doi": "", | ||
291 | "format": "TXT", | 291 | "format": "TXT", | ||
292 | "hash": "", | 292 | "hash": "", | ||
293 | "id": "93606a69-9f2e-4f8d-bca5-3f28001ee056", | 293 | "id": "93606a69-9f2e-4f8d-bca5-3f28001ee056", | ||
294 | "last_modified": "2024-03-12T10:58:10.634000", | 294 | "last_modified": "2024-03-12T10:58:10.634000", | ||
295 | "metadata_modified": "2024-03-12T17:58:11.932100", | 295 | "metadata_modified": "2024-03-12T17:58:11.932100", | ||
296 | "mimetype": "text/plain", | 296 | "mimetype": "text/plain", | ||
297 | "mimetype_inner": null, | 297 | "mimetype_inner": null, | ||
298 | "name": "Snow samples - microCT measurements", | 298 | "name": "Snow samples - microCT measurements", | ||
299 | "package_id": "f2ebc8e9-e757-47a8-8713-8892cb1cb25f", | 299 | "package_id": "f2ebc8e9-e757-47a8-8713-8892cb1cb25f", | ||
300 | "position": 5, | 300 | "position": 5, | ||
301 | "resource_size": "{\"size_value\":\"\",\"size_units\":\"\"}", | 301 | "resource_size": "{\"size_value\":\"\",\"size_units\":\"\"}", | ||
302 | "resource_type": null, | 302 | "resource_type": null, | ||
303 | "restricted": | 303 | "restricted": | ||
304 | {\"level\":\"public\",\"allowed_users\":\"\",\"shared_secret\":\"\"}", | 304 | {\"level\":\"public\",\"allowed_users\":\"\",\"shared_secret\":\"\"}", | ||
305 | "size": 3800, | 305 | "size": 3800, | ||
306 | "state": "active", | 306 | "state": "active", | ||
307 | "url": | 307 | "url": | ||
308 | e-4f8d-bca5-3f28001ee056/download/windtunnel2023_ct_measurements.txt", | 308 | e-4f8d-bca5-3f28001ee056/download/windtunnel2023_ct_measurements.txt", | ||
309 | "url_type": "upload" | 309 | "url_type": "upload" | ||
310 | } | 310 | } | ||
311 | ], | 311 | ], | ||
312 | "spatial": | 312 | "spatial": | ||
313 | {\"name\":\"ring-wind-tunnel-snow-samples---isotopic-composition\"}}", | 313 | {\"name\":\"ring-wind-tunnel-snow-samples---isotopic-composition\"}}", | ||
314 | "state": "active", | 314 | "state": "active", | ||
315 | "subtitle": "", | 315 | "subtitle": "", | ||
316 | "tags": [ | 316 | "tags": [ | ||
317 | { | 317 | { | ||
318 | "display_name": "BLOWING SNOW", | 318 | "display_name": "BLOWING SNOW", | ||
319 | "id": "3247266c-0e5d-488b-82ec-e9ec7314e48a", | 319 | "id": "3247266c-0e5d-488b-82ec-e9ec7314e48a", | ||
320 | "name": "BLOWING SNOW", | 320 | "name": "BLOWING SNOW", | ||
321 | "state": "active", | 321 | "state": "active", | ||
322 | "vocabulary_id": null | 322 | "vocabulary_id": null | ||
323 | }, | 323 | }, | ||
324 | { | 324 | { | ||
325 | "display_name": "COLD LAB", | 325 | "display_name": "COLD LAB", | ||
326 | "id": "5e198c65-cda4-461a-aba9-295953da38da", | 326 | "id": "5e198c65-cda4-461a-aba9-295953da38da", | ||
327 | "name": "COLD LAB", | 327 | "name": "COLD LAB", | ||
328 | "state": "active", | 328 | "state": "active", | ||
329 | "vocabulary_id": null | 329 | "vocabulary_id": null | ||
330 | }, | 330 | }, | ||
331 | { | 331 | { | ||
332 | "display_name": "DRIFTING SNOW", | 332 | "display_name": "DRIFTING SNOW", | ||
333 | "id": "4feec802-2bd4-4b97-92c1-4e619f332a52", | 333 | "id": "4feec802-2bd4-4b97-92c1-4e619f332a52", | ||
334 | "name": "DRIFTING SNOW", | 334 | "name": "DRIFTING SNOW", | ||
335 | "state": "active", | 335 | "state": "active", | ||
336 | "vocabulary_id": null | 336 | "vocabulary_id": null | ||
337 | }, | 337 | }, | ||
338 | { | 338 | { | ||
339 | "display_name": "EXPERIMENTS", | 339 | "display_name": "EXPERIMENTS", | ||
340 | "id": "ba58e6e2-eb93-4647-ba1e-b15f1229880d", | 340 | "id": "ba58e6e2-eb93-4647-ba1e-b15f1229880d", | ||
341 | "name": "EXPERIMENTS", | 341 | "name": "EXPERIMENTS", | ||
342 | "state": "active", | 342 | "state": "active", | ||
343 | "vocabulary_id": null | 343 | "vocabulary_id": null | ||
344 | }, | 344 | }, | ||
345 | { | 345 | { | ||
346 | "display_name": "METAMORPHISM", | 346 | "display_name": "METAMORPHISM", | ||
347 | "id": "494b98ca-ec3d-4fc6-8fd5-db3214708055", | 347 | "id": "494b98ca-ec3d-4fc6-8fd5-db3214708055", | ||
348 | "name": "METAMORPHISM", | 348 | "name": "METAMORPHISM", | ||
349 | "state": "active", | 349 | "state": "active", | ||
350 | "vocabulary_id": null | 350 | "vocabulary_id": null | ||
351 | }, | 351 | }, | ||
352 | { | 352 | { | ||
353 | "display_name": "SNOW SALTATION", | 353 | "display_name": "SNOW SALTATION", | ||
354 | "id": "afdb56b6-e408-4961-9db3-dad2eb20c827", | 354 | "id": "afdb56b6-e408-4961-9db3-dad2eb20c827", | ||
355 | "name": "SNOW SALTATION", | 355 | "name": "SNOW SALTATION", | ||
356 | "state": "active", | 356 | "state": "active", | ||
357 | "vocabulary_id": null | 357 | "vocabulary_id": null | ||
358 | }, | 358 | }, | ||
359 | { | 359 | { | ||
360 | "display_name": "WATER ISOTOPES", | 360 | "display_name": "WATER ISOTOPES", | ||
361 | "id": "64250210-7055-408c-82b0-b1029ad7b440", | 361 | "id": "64250210-7055-408c-82b0-b1029ad7b440", | ||
362 | "name": "WATER ISOTOPES", | 362 | "name": "WATER ISOTOPES", | ||
363 | "state": "active", | 363 | "state": "active", | ||
364 | "vocabulary_id": null | 364 | "vocabulary_id": null | ||
365 | }, | 365 | }, | ||
366 | { | 366 | { | ||
367 | "display_name": "WIND TUNNEL", | 367 | "display_name": "WIND TUNNEL", | ||
368 | "id": "3a02227f-0040-4232-840a-e003aea822c4", | 368 | "id": "3a02227f-0040-4232-840a-e003aea822c4", | ||
369 | "name": "WIND TUNNEL", | 369 | "name": "WIND TUNNEL", | ||
370 | "state": "active", | 370 | "state": "active", | ||
371 | "vocabulary_id": null | 371 | "vocabulary_id": null | ||
372 | } | 372 | } | ||
373 | ], | 373 | ], | ||
374 | "title": "Ring wind tunnel experiments - airborne snow metamorphism | 374 | "title": "Ring wind tunnel experiments - airborne snow metamorphism | ||
375 | and stable water isotopes", | 375 | and stable water isotopes", | ||
376 | "type": "dataset", | 376 | "type": "dataset", | ||
t | 377 | "url": null | t | 377 | "url": null, |
378 | "version": "1.0" | ||||
378 | } | 379 | } |