Changes
On June 27, 2021 at 9:15:50 AM UTC, Bastian Bergfeld:
-
Updated description of resource Supplementary material in Crack propagation in weak snowpack layers: Insights from high-speed photography from
# Supplementary material to the publication Bergfeld et al 2021 - description of the reverse crack - additional snow pack parameters derived from the SMP measurements
to# Supplementary material to the publication Bergfeld et al 2021 - description of the reverse crack - additional snowpack parameters derived from the SMP measurements
-
Changed value of field
restricted
of resource Supplementary material to{"allowed_users": "", "level": "public", "shared_secret": ""}
(previously{"level": "public", "allowed_users": "", "shared_secret": ""}
) in Crack propagation in weak snowpack layers: Insights from high-speed photography -
Changed value of field
resource_size
of resource Supplementary material to{"size_units": "kb", "size_value": ""}
(previously{"size_value": "", "size_units": "kb"}
) in Crack propagation in weak snowpack layers: Insights from high-speed photography
f | 1 | { | f | 1 | { |
2 | "author": "[{\"affiliation\": \"WSL Institute for Snow and Avalanche | 2 | "author": "[{\"affiliation\": \"WSL Institute for Snow and Avalanche | ||
3 | Research SLF, Davos, Switzerland\", \"affiliation_02\": \"\", | 3 | Research SLF, Davos, Switzerland\", \"affiliation_02\": \"\", | ||
4 | \"affiliation_03\": \"\", \"data_credit\": [\"collection\", | 4 | \"affiliation_03\": \"\", \"data_credit\": [\"collection\", | ||
5 | \"validation\", \"curation\", \"software\", \"publication\"], | 5 | \"validation\", \"curation\", \"software\", \"publication\"], | ||
6 | \"email\": \"bastian.bergfeld@slf.ch\", \"given_name\": \"Bastian\", | 6 | \"email\": \"bastian.bergfeld@slf.ch\", \"given_name\": \"Bastian\", | ||
7 | \"identifier\": \"0000-0002-3316-1922\", \"name\": \"Bergfeld\"}, | 7 | \"identifier\": \"0000-0002-3316-1922\", \"name\": \"Bergfeld\"}, | ||
8 | {\"affiliation\": \"WSL Institute for Snow and Avalanche Research SLF, | 8 | {\"affiliation\": \"WSL Institute for Snow and Avalanche Research SLF, | ||
9 | Davos, Switzerland\", \"affiliation_02\": \"\", \"affiliation_03\": | 9 | Davos, Switzerland\", \"affiliation_02\": \"\", \"affiliation_03\": | ||
10 | \"\", \"data_credit\": [\"collection\", \"supervision\"], \"email\": | 10 | \"\", \"data_credit\": [\"collection\", \"supervision\"], \"email\": | ||
11 | \"vanherwijnen@slf.ch\", \"given_name\": \"Alec\", \"identifier\": | 11 | \"vanherwijnen@slf.ch\", \"given_name\": \"Alec\", \"identifier\": | ||
12 | \"0000-0001-5637-6486\", \"name\": \"van Herwijnen\"}, | 12 | \"0000-0001-5637-6486\", \"name\": \"van Herwijnen\"}, | ||
13 | {\"affiliation\": \"WSL Institute for Snow and Avalanche Research SLF, | 13 | {\"affiliation\": \"WSL Institute for Snow and Avalanche Research SLF, | ||
14 | Davos, Switzerland\", \"affiliation_02\": \"\", \"affiliation_03\": | 14 | Davos, Switzerland\", \"affiliation_02\": \"\", \"affiliation_03\": | ||
15 | \"\", \"data_credit\": \"software\", \"email\": | 15 | \"\", \"data_credit\": \"software\", \"email\": | ||
16 | \"benjamin.reuter@slf.ch\", \"given_name\": \"Benjamin\", | 16 | \"benjamin.reuter@slf.ch\", \"given_name\": \"Benjamin\", | ||
17 | \"identifier\": \"0000-0002-7302-3858\", \"name\": \"Reuter\"}, | 17 | \"identifier\": \"0000-0002-7302-3858\", \"name\": \"Reuter\"}, | ||
18 | {\"affiliation\": \"WSL Institute for Snow and Avalanche Research SLF, | 18 | {\"affiliation\": \"WSL Institute for Snow and Avalanche Research SLF, | ||
19 | Davos, Switzerland\", \"affiliation_02\": \"\", \"affiliation_03\": | 19 | Davos, Switzerland\", \"affiliation_02\": \"\", \"affiliation_03\": | ||
20 | \"\", \"email\": \"gr\\u00e9goire.bobillier@slf.ch\", \"given_name\": | 20 | \"\", \"email\": \"gr\\u00e9goire.bobillier@slf.ch\", \"given_name\": | ||
21 | \"Gr\\u00e9goire\", \"identifier\": \"0000-0002-6913-5611\", \"name\": | 21 | \"Gr\\u00e9goire\", \"identifier\": \"0000-0002-6913-5611\", \"name\": | ||
22 | \"Bobillier\"}, {\"affiliation\": \"Institute for Mechanical Systems, | 22 | \"Bobillier\"}, {\"affiliation\": \"Institute for Mechanical Systems, | ||
23 | ETH Zurich, Zurich, Switzerland\", \"affiliation_02\": \"\", | 23 | ETH Zurich, Zurich, Switzerland\", \"affiliation_02\": \"\", | ||
24 | \"affiliation_03\": \"\", \"data_credit\": \"supervision\", \"email\": | 24 | \"affiliation_03\": \"\", \"data_credit\": \"supervision\", \"email\": | ||
25 | \"dual@imes.mavt.ethz.ch\", \"given_name\": \"J\\u00fcrg\", | 25 | \"dual@imes.mavt.ethz.ch\", \"given_name\": \"J\\u00fcrg\", | ||
26 | \"identifier\": \"0000-0001-5861-9058\", \"name\": \"Dual\"}, | 26 | \"identifier\": \"0000-0001-5861-9058\", \"name\": \"Dual\"}, | ||
27 | {\"affiliation\": \"WSL Institute for Snow and Avalanche Research SLF, | 27 | {\"affiliation\": \"WSL Institute for Snow and Avalanche Research SLF, | ||
28 | Davos, Switzerland\", \"affiliation_02\": \"\", \"affiliation_03\": | 28 | Davos, Switzerland\", \"affiliation_02\": \"\", \"affiliation_03\": | ||
29 | \"\", \"data_credit\": \"supervision\", \"email\": | 29 | \"\", \"data_credit\": \"supervision\", \"email\": | ||
30 | \"schweizer@slf.ch\", \"given_name\": \"J\\u00fcrg\", \"identifier\": | 30 | \"schweizer@slf.ch\", \"given_name\": \"J\\u00fcrg\", \"identifier\": | ||
31 | \"0000-0001-5076-2968\", \"name\": \"Schweizer\"}]", | 31 | \"0000-0001-5076-2968\", \"name\": \"Schweizer\"}]", | ||
32 | "author_email": null, | 32 | "author_email": null, | ||
33 | "creator_user_id": "c8312541-12f8-4533-a778-53f3d3e6a99b", | 33 | "creator_user_id": "c8312541-12f8-4533-a778-53f3d3e6a99b", | ||
34 | "date": "[{\"date\": \"2021-06-23\", \"date_type\": \"collected\", | 34 | "date": "[{\"date\": \"2021-06-23\", \"date_type\": \"collected\", | ||
35 | \"end_date\": \"\"}]", | 35 | \"end_date\": \"\"}]", | ||
36 | "doi": "10.16904/envidat.231", | 36 | "doi": "10.16904/envidat.231", | ||
37 | "funding": "[{\"grant_number\": \"200021_169424\", \"institution\": | 37 | "funding": "[{\"grant_number\": \"200021_169424\", \"institution\": | ||
38 | \"Swiss National Science Foundation\", \"institution_url\": \"\"}]", | 38 | \"Swiss National Science Foundation\", \"institution_url\": \"\"}]", | ||
39 | "groups": [], | 39 | "groups": [], | ||
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42 | "language": "en", | 42 | "language": "en", | ||
43 | "license_id": "wsl-data", | 43 | "license_id": "wsl-data", | ||
44 | "license_title": "WSL Data Policy", | 44 | "license_title": "WSL Data Policy", | ||
45 | "license_url": | 45 | "license_url": | ||
46 | ps://www.wsl.ch/en/about-wsl/programmes-and-initiatives/envidat.html", | 46 | ps://www.wsl.ch/en/about-wsl/programmes-and-initiatives/envidat.html", | ||
47 | "maintainer": "{\"affiliation\": \"WSL Institute for Snow and | 47 | "maintainer": "{\"affiliation\": \"WSL Institute for Snow and | ||
48 | Avalanche Research SLF, Davos, Switzerland\", \"email\": | 48 | Avalanche Research SLF, Davos, Switzerland\", \"email\": | ||
49 | \"bastian.bergfeld@slf.ch\", \"given_name\": \"Bastian\", | 49 | \"bastian.bergfeld@slf.ch\", \"given_name\": \"Bastian\", | ||
50 | \"identifier\": \"0000-0002-3316-1922\", \"name\": \"Bergfeld\"}", | 50 | \"identifier\": \"0000-0002-3316-1922\", \"name\": \"Bergfeld\"}", | ||
51 | "maintainer_email": null, | 51 | "maintainer_email": null, | ||
52 | "metadata_created": "2021-06-23T14:00:28.699523", | 52 | "metadata_created": "2021-06-23T14:00:28.699523", | ||
n | 53 | "metadata_modified": "2021-06-25T19:00:05.212612", | n | 53 | "metadata_modified": "2021-06-27T09:15:50.396424", |
54 | "name": | 54 | "name": | ||
55 | agation-in-weak-snowpack-layers-insights-from-high-speed-photography", | 55 | agation-in-weak-snowpack-layers-insights-from-high-speed-photography", | ||
56 | "notes": "This data set includes material and results described in | 56 | "notes": "This data set includes material and results described in | ||
57 | the related research article:\r\n\r\nBergfeld, B., van Herwijnen, A., | 57 | the related research article:\r\n\r\nBergfeld, B., van Herwijnen, A., | ||
58 | Reuter, B., Bobillier, G., Dual, J., and Schweizer, J.: Dynamic crack | 58 | Reuter, B., Bobillier, G., Dual, J., and Schweizer, J.: Dynamic crack | ||
59 | propagation in weak snowpack layers: Insights from high-resolution, | 59 | propagation in weak snowpack layers: Insights from high-resolution, | ||
60 | high-speed photography, The Cryosphere Discuss. [preprint], | 60 | high-speed photography, The Cryosphere Discuss. [preprint], | ||
61 | https://doi.org/10.5194/tc-2020-360, in review, 2021.\r\n\r\n# | 61 | https://doi.org/10.5194/tc-2020-360, in review, 2021.\r\n\r\n# | ||
62 | Context: \r\nIn order to study crack propagation in weak snowpack | 62 | Context: \r\nIn order to study crack propagation in weak snowpack | ||
63 | layers in great detail, we recorded Propagation Saw Test (PST) | 63 | layers in great detail, we recorded Propagation Saw Test (PST) | ||
64 | experiments using a high-speed camera and applied digital image | 64 | experiments using a high-speed camera and applied digital image | ||
65 | correlation (DIC) to derive displacement and strain fields in the | 65 | correlation (DIC) to derive displacement and strain fields in the | ||
66 | slab, weak layer, and substrate. We demonstrated the versatility and | 66 | slab, weak layer, and substrate. We demonstrated the versatility and | ||
67 | accuracy of the DIC method by showing measurements from three PST | 67 | accuracy of the DIC method by showing measurements from three PST | ||
68 | experiments, resulting in slab fracture, crack arrest and full | 68 | experiments, resulting in slab fracture, crack arrest and full | ||
69 | propagation in the related publication. \r\n# Content:\r\n- | 69 | propagation in the related publication. \r\n# Content:\r\n- | ||
70 | Supplementary material for related publication\r\n- Ilustrative videos | 70 | Supplementary material for related publication\r\n- Ilustrative videos | ||
71 | showing crack propagation\r\n- High-speed recordings of the | 71 | showing crack propagation\r\n- High-speed recordings of the | ||
72 | Experiments \r\n(the raw .cine files are available upon | 72 | Experiments \r\n(the raw .cine files are available upon | ||
73 | request)\r\nProcessed Data containing:\r\n - displacement, velocity | 73 | request)\r\nProcessed Data containing:\r\n - displacement, velocity | ||
74 | and acceleration fields for the three PSTs\r\n - speed and touchdown | 74 | and acceleration fields for the three PSTs\r\n - speed and touchdown | ||
75 | dataset", | 75 | dataset", | ||
76 | "num_resources": 5, | 76 | "num_resources": 5, | ||
77 | "num_tags": 5, | 77 | "num_tags": 5, | ||
78 | "organization": { | 78 | "organization": { | ||
79 | "approval_status": "approved", | 79 | "approval_status": "approved", | ||
80 | "created": "2019-09-27T12:40:13.473824", | 80 | "created": "2019-09-27T12:40:13.473824", | ||
81 | "description": "Snow avalanches \u2013 a type of fast-moving mass | 81 | "description": "Snow avalanches \u2013 a type of fast-moving mass | ||
82 | movement \u2013 occur in snow covered mountain areas throughout the | 82 | movement \u2013 occur in snow covered mountain areas throughout the | ||
83 | world and may cause property damage and loss of life as they interfere | 83 | world and may cause property damage and loss of life as they interfere | ||
84 | with human activities. Most avalanches release from terrain steeper | 84 | with human activities. Most avalanches release from terrain steeper | ||
85 | than about 30\u00b0 during or soon after snow storms, or are triggered | 85 | than about 30\u00b0 during or soon after snow storms, or are triggered | ||
86 | by snow loading due to wind, or by a temperature change. Snow slab | 86 | by snow loading due to wind, or by a temperature change. Snow slab | ||
87 | avalanches can also be triggered artificially by, for example, people | 87 | avalanches can also be triggered artificially by, for example, people | ||
88 | (usually unintentionally) or intentionally by explosives used as part | 88 | (usually unintentionally) or intentionally by explosives used as part | ||
89 | of avalanche control programs. Today, most avalanche fatalities are | 89 | of avalanche control programs. Today, most avalanche fatalities are | ||
90 | recreationists. Independent of the triggering mode, the snowpack | 90 | recreationists. Independent of the triggering mode, the snowpack | ||
91 | layering is decisive for the instability of the snowpack which | 91 | layering is decisive for the instability of the snowpack which | ||
92 | consists of layers with varying properties. The complex microstructure | 92 | consists of layers with varying properties. The complex microstructure | ||
93 | of snow and spatial variations in snow layer properties across the | 93 | of snow and spatial variations in snow layer properties across the | ||
94 | terrain limit the predictability of snow avalanches. Even today, it is | 94 | terrain limit the predictability of snow avalanches. Even today, it is | ||
95 | not possible to predict the exact location, time and extent of an | 95 | not possible to predict the exact location, time and extent of an | ||
96 | avalanche event. Improving avalanche prediction requires a better | 96 | avalanche event. Improving avalanche prediction requires a better | ||
97 | understanding of the underlying processes. ", | 97 | understanding of the underlying processes. ", | ||
98 | "id": "a357f01f-845b-4b61-9ad0-f204d3332c52", | 98 | "id": "a357f01f-845b-4b61-9ad0-f204d3332c52", | ||
99 | "image_url": "2019-09-27-104013.456832slf.png", | 99 | "image_url": "2019-09-27-104013.456832slf.png", | ||
100 | "is_organization": true, | 100 | "is_organization": true, | ||
101 | "name": "avalanche-formation", | 101 | "name": "avalanche-formation", | ||
102 | "state": "active", | 102 | "state": "active", | ||
103 | "title": "Avalanche Formation", | 103 | "title": "Avalanche Formation", | ||
104 | "type": "organization" | 104 | "type": "organization" | ||
105 | }, | 105 | }, | ||
106 | "owner_org": "a357f01f-845b-4b61-9ad0-f204d3332c52", | 106 | "owner_org": "a357f01f-845b-4b61-9ad0-f204d3332c52", | ||
107 | "private": false, | 107 | "private": false, | ||
108 | "publication": "{\"publication_year\": \"2021\", \"publisher\": | 108 | "publication": "{\"publication_year\": \"2021\", \"publisher\": | ||
109 | \"EnviDat\"}", | 109 | \"EnviDat\"}", | ||
110 | "publication_state": "published", | 110 | "publication_state": "published", | ||
111 | "related_datasets": "", | 111 | "related_datasets": "", | ||
112 | "related_publications": "https://doi.org/10.5194/tc-2020-360", | 112 | "related_publications": "https://doi.org/10.5194/tc-2020-360", | ||
113 | "relationships_as_object": [], | 113 | "relationships_as_object": [], | ||
114 | "relationships_as_subject": [], | 114 | "relationships_as_subject": [], | ||
115 | "resource_type": "datapaper", | 115 | "resource_type": "datapaper", | ||
116 | "resource_type_general": "datapaper", | 116 | "resource_type_general": "datapaper", | ||
117 | "resources": [ | 117 | "resources": [ | ||
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121 | "created": "2021-06-23T15:27:31.318734", | 121 | "created": "2021-06-23T15:27:31.318734", | ||
122 | "description": "# Supplementary material to the publication | 122 | "description": "# Supplementary material to the publication | ||
123 | Bergfeld et al 2021\r\n- description of the reverse crack\r\n- | 123 | Bergfeld et al 2021\r\n- description of the reverse crack\r\n- | ||
n | 124 | additional snow pack parameters derived from the SMP measurements", | n | 124 | additional snowpack parameters derived from the SMP measurements", |
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151 | "description": "The videos show the cracking process in three | 151 | "description": "The videos show the cracking process in three | ||
152 | example Propagation Saw Tests (flat field). The upper panel shows | 152 | example Propagation Saw Tests (flat field). The upper panel shows | ||
153 | strain on top of the recorded movie frames. The second row shows | 153 | strain on top of the recorded movie frames. The second row shows | ||
154 | vertical (*w*, blue line) and horizontal (*u*, orange line) | 154 | vertical (*w*, blue line) and horizontal (*u*, orange line) | ||
155 | displacement fields. The third and fourth row show the first and | 155 | displacement fields. The third and fourth row show the first and | ||
156 | second time derivatives, namely the velocity and acceleration field. | 156 | second time derivatives, namely the velocity and acceleration field. | ||
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211 | "created": "2021-06-25T08:54:56.118375", | 211 | "created": "2021-06-25T08:54:56.118375", | ||
212 | "description": "Data is stored as netcdf files as python/xarray | 212 | "description": "Data is stored as netcdf files as python/xarray | ||
213 | Datasets.\r\nDatasets are self-explaining and contain the necessary | 213 | Datasets.\r\nDatasets are self-explaining and contain the necessary | ||
214 | information and metadata.\r\nInformation on how to load the netCDF | 214 | information and metadata.\r\nInformation on how to load the netCDF | ||
215 | files (datasets) can be found at | 215 | files (datasets) can be found at | ||
216 | \"http://xarray.pydata.org/en/stable/\"", | 216 | \"http://xarray.pydata.org/en/stable/\"", | ||
217 | "doi": "", | 217 | "doi": "", | ||
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260 | "size": null, | 260 | "size": null, | ||
261 | "state": "active", | 261 | "state": "active", | ||
262 | "url": | 262 | "url": | ||
263 | ch/#/?prefix=slf/snow_avalanches_and_prevention/bergfeld_et_al_2021/", | 263 | ch/#/?prefix=slf/snow_avalanches_and_prevention/bergfeld_et_al_2021/", | ||
264 | "url_type": null | 264 | "url_type": null | ||
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266 | ], | 266 | ], | ||
267 | "spatial": | 267 | "spatial": | ||
268 | e\":\"Point\",\"coordinates\":[9.869878291210625,46.80768286835673]}", | 268 | e\":\"Point\",\"coordinates\":[9.869878291210625,46.80768286835673]}", | ||
269 | "spatial_info": "Switzerland", | 269 | "spatial_info": "Switzerland", | ||
270 | "state": "active", | 270 | "state": "active", | ||
271 | "subtitle": "", | 271 | "subtitle": "", | ||
272 | "tags": [ | 272 | "tags": [ | ||
273 | { | 273 | { | ||
274 | "display_name": "CRACK PROPAGATION", | 274 | "display_name": "CRACK PROPAGATION", | ||
275 | "id": "cca7ca78-fafe-4329-af76-45610a10396b", | 275 | "id": "cca7ca78-fafe-4329-af76-45610a10396b", | ||
276 | "name": "CRACK PROPAGATION", | 276 | "name": "CRACK PROPAGATION", | ||
277 | "state": "active", | 277 | "state": "active", | ||
278 | "vocabulary_id": null | 278 | "vocabulary_id": null | ||
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284 | "state": "active", | 284 | "state": "active", | ||
285 | "vocabulary_id": null | 285 | "vocabulary_id": null | ||
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289 | "id": "c4e9ea3f-6149-45ce-8631-c872b96a9537", | 289 | "id": "c4e9ea3f-6149-45ce-8631-c872b96a9537", | ||
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291 | "state": "active", | 291 | "state": "active", | ||
292 | "vocabulary_id": null | 292 | "vocabulary_id": null | ||
293 | }, | 293 | }, | ||
294 | { | 294 | { | ||
295 | "display_name": "SNOW AVALANCHE", | 295 | "display_name": "SNOW AVALANCHE", | ||
296 | "id": "6083a08c-fd24-4e5a-bb20-559021b89c92", | 296 | "id": "6083a08c-fd24-4e5a-bb20-559021b89c92", | ||
297 | "name": "SNOW AVALANCHE", | 297 | "name": "SNOW AVALANCHE", | ||
298 | "state": "active", | 298 | "state": "active", | ||
299 | "vocabulary_id": null | 299 | "vocabulary_id": null | ||
300 | }, | 300 | }, | ||
301 | { | 301 | { | ||
302 | "display_name": "SNOW MECHANICS", | 302 | "display_name": "SNOW MECHANICS", | ||
303 | "id": "31bab9c5-b32e-452d-bce1-f7500696beab", | 303 | "id": "31bab9c5-b32e-452d-bce1-f7500696beab", | ||
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305 | "state": "active", | 305 | "state": "active", | ||
306 | "vocabulary_id": null | 306 | "vocabulary_id": null | ||
307 | } | 307 | } | ||
308 | ], | 308 | ], | ||
309 | "title": "Crack propagation in weak snowpack layers: Insights from | 309 | "title": "Crack propagation in weak snowpack layers: Insights from | ||
310 | high-speed photography", | 310 | high-speed photography", | ||
311 | "type": "dataset", | 311 | "type": "dataset", | ||
312 | "url": null, | 312 | "url": null, | ||
313 | "version": "1.0" | 313 | "version": "1.0" | ||
314 | } | 314 | } |