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f | 1 | { | f | 1 | { |
2 | "author": "[{\"given_name\": \"Jakob\", \"name\": | 2 | "author": "[{\"given_name\": \"Jakob\", \"name\": | ||
3 | \"Sch\\u00f6ttner\", \"email\": \"jakob.schoettner@slf.ch\", | 3 | \"Sch\\u00f6ttner\", \"email\": \"jakob.schoettner@slf.ch\", | ||
4 | \"data_credit\": [], \"identifier\": | 4 | \"data_credit\": [], \"identifier\": | ||
5 | \"https://orcid.org/0000-0002-9031-8885\", \"affiliation\": \"WSL | 5 | \"https://orcid.org/0000-0002-9031-8885\", \"affiliation\": \"WSL | ||
6 | Institute for Snow and Avalanche Research SLF\"}, {\"given_name\": | 6 | Institute for Snow and Avalanche Research SLF\"}, {\"given_name\": | ||
7 | \"Melin\", \"name\": \"Walet\", \"email\": \"melin.walet@slf.ch\", | 7 | \"Melin\", \"name\": \"Walet\", \"email\": \"melin.walet@slf.ch\", | ||
8 | \"data_credit\": [], \"identifier\": | 8 | \"data_credit\": [], \"identifier\": | ||
9 | \"https://orcid.org/0009-0002-7275-818X\", \"affiliation\": \"WSL | 9 | \"https://orcid.org/0009-0002-7275-818X\", \"affiliation\": \"WSL | ||
10 | Institute for Snow and Avalanche Research SLF\"}, {\"given_name\": | 10 | Institute for Snow and Avalanche Research SLF\"}, {\"given_name\": | ||
11 | \"Philipp\", \"name\": \"Rosendahl\", \"email\": | 11 | \"Philipp\", \"name\": \"Rosendahl\", \"email\": | ||
12 | \"rosendahl@ismd.tu-darmstadt.de\", \"data_credit\": [], | 12 | \"rosendahl@ismd.tu-darmstadt.de\", \"data_credit\": [], | ||
13 | \"identifier\": \"https://orcid.org/0000-0002-6587-875X\", | 13 | \"identifier\": \"https://orcid.org/0000-0002-6587-875X\", | ||
14 | \"affiliation\": \"Institute for Structural Mechanics and Design, TU | 14 | \"affiliation\": \"Institute for Structural Mechanics and Design, TU | ||
15 | Darmstadt\"}, {\"given_name\": \"Philipp\", \"name\": | 15 | Darmstadt\"}, {\"given_name\": \"Philipp\", \"name\": | ||
16 | \"Wei\\u00dfgraeber\", \"email\": | 16 | \"Wei\\u00dfgraeber\", \"email\": | ||
17 | \"philipp.weissgraeber@uni-rostock.de\", \"data_credit\": [], | 17 | \"philipp.weissgraeber@uni-rostock.de\", \"data_credit\": [], | ||
18 | \"identifier\": \"https://orcid.org/0000-0001-8320-8672\", | 18 | \"identifier\": \"https://orcid.org/0000-0001-8320-8672\", | ||
19 | \"affiliation\": \"Chair of Lightweight Design, University of | 19 | \"affiliation\": \"Chair of Lightweight Design, University of | ||
20 | Rostock\"}, {\"given_name\": \"Valentin\", \"name\": \"Adam\", | 20 | Rostock\"}, {\"given_name\": \"Valentin\", \"name\": \"Adam\", | ||
21 | \"email\": \"valentin.adam@slf.ch\", \"data_credit\": [], | 21 | \"email\": \"valentin.adam@slf.ch\", \"data_credit\": [], | ||
22 | \"identifier\": \"https://orcid.org/0009-0008-6375-3727\", | 22 | \"identifier\": \"https://orcid.org/0009-0008-6375-3727\", | ||
23 | \"affiliation\": \"WSL Institute for Snow and Avalanche Research SLF, | 23 | \"affiliation\": \"WSL Institute for Snow and Avalanche Research SLF, | ||
24 | Institute for Structural Mechanics and Design, TU Darmstadt\"}, | 24 | Institute for Structural Mechanics and Design, TU Darmstadt\"}, | ||
25 | {\"given_name\": \"Benjamin\", \"name\": \"Walter\", \"email\": | 25 | {\"given_name\": \"Benjamin\", \"name\": \"Walter\", \"email\": | ||
26 | \"benjamin.walter@slf.ch\", \"data_credit\": [], \"identifier\": \"\", | 26 | \"benjamin.walter@slf.ch\", \"data_credit\": [], \"identifier\": \"\", | ||
27 | \"affiliation\": \"SLF\"}, {\"given_name\": \"Florian\", \"name\": | 27 | \"affiliation\": \"SLF\"}, {\"given_name\": \"Florian\", \"name\": | ||
28 | \"Rheinschmidt\", \"email\": \"rheinschmidt@ismd.tu-darmstadt.de\", | 28 | \"Rheinschmidt\", \"email\": \"rheinschmidt@ismd.tu-darmstadt.de\", | ||
29 | \"data_credit\": [], \"identifier\": | 29 | \"data_credit\": [], \"identifier\": | ||
30 | \"https://orcid.org/0000-0002-5947-904X\", \"affiliation\": | 30 | \"https://orcid.org/0000-0002-5947-904X\", \"affiliation\": | ||
31 | \"Institute for Structural Mechanics and Design, TU Darmstadt\"}, | 31 | \"Institute for Structural Mechanics and Design, TU Darmstadt\"}, | ||
32 | {\"given_name\": \"Henning\", \"name\": \"L\\u00f6we\", \"email\": | 32 | {\"given_name\": \"Henning\", \"name\": \"L\\u00f6we\", \"email\": | ||
33 | \"loewe@slf.ch\", \"data_credit\": [], \"identifier\": | 33 | \"loewe@slf.ch\", \"data_credit\": [], \"identifier\": | ||
34 | \"0000-0001-7515-6809\", \"affiliation\": \"WSL Institute for Snow and | 34 | \"0000-0001-7515-6809\", \"affiliation\": \"WSL Institute for Snow and | ||
35 | Avalanche Research SLF\"}, {\"given_name\": \"J\\u00fcrg\", \"name\": | 35 | Avalanche Research SLF\"}, {\"given_name\": \"J\\u00fcrg\", \"name\": | ||
36 | \"Schweizer\", \"email\": \"schweizer@wsl.ch\", \"data_credit\": [], | 36 | \"Schweizer\", \"email\": \"schweizer@wsl.ch\", \"data_credit\": [], | ||
37 | \"identifier\": \"\", \"affiliation\": \"WSL Institute for Snow and | 37 | \"identifier\": \"\", \"affiliation\": \"WSL Institute for Snow and | ||
38 | Avalanche Research SLF\"}, {\"given_name\": \"Alec\", \"name\": \"van | 38 | Avalanche Research SLF\"}, {\"given_name\": \"Alec\", \"name\": \"van | ||
39 | Herwijnen\", \"email\": \"vanherwijnen@slf.ch\", \"data_credit\": [], | 39 | Herwijnen\", \"email\": \"vanherwijnen@slf.ch\", \"data_credit\": [], | ||
40 | \"identifier\": \"0000-0001-5637-6486\", \"affiliation\": \" WSL | 40 | \"identifier\": \"0000-0001-5637-6486\", \"affiliation\": \" WSL | ||
41 | Institute for Snow and Avalanche Research SLF, Davos, | 41 | Institute for Snow and Avalanche Research SLF, Davos, | ||
42 | Switzerland\"}]", | 42 | Switzerland\"}]", | ||
43 | "author_email": null, | 43 | "author_email": null, | ||
44 | "creator_user_id": "21115b39-acbd-40c5-a245-134bd2965d53", | 44 | "creator_user_id": "21115b39-acbd-40c5-a245-134bd2965d53", | ||
45 | "date": | 45 | "date": | ||
46 | :\"collected\",\"date\":\"2023-03-01\",\"end_date\":\"2024-01-31\"}]", | 46 | :\"collected\",\"date\":\"2023-03-01\",\"end_date\":\"2024-01-31\"}]", | ||
47 | "doi": "10.16904/envidat.626", | 47 | "doi": "10.16904/envidat.626", | ||
48 | "extras": [ | 48 | "extras": [ | ||
49 | { | 49 | { | ||
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52 | } | 52 | } | ||
53 | ], | 53 | ], | ||
54 | "funding": | 54 | "funding": | ||
55 | \",\"institution_url\":\"https://data.snf.ch/grants/grant/201071\"}]", | 55 | \",\"institution_url\":\"https://data.snf.ch/grants/grant/201071\"}]", | ||
56 | "groups": [], | 56 | "groups": [], | ||
57 | "id": "f428c8e6-191b-45d4-8b92-239b5f056338", | 57 | "id": "f428c8e6-191b-45d4-8b92-239b5f056338", | ||
58 | "isopen": true, | 58 | "isopen": true, | ||
59 | "license_id": "cc-by", | 59 | "license_id": "cc-by", | ||
60 | "license_title": "Creative Commons Attribution", | 60 | "license_title": "Creative Commons Attribution", | ||
61 | "license_url": "https://creativecommons.org/licenses/by/4.0/", | 61 | "license_url": "https://creativecommons.org/licenses/by/4.0/", | ||
62 | "maintainer": | 62 | "maintainer": | ||
63 | email\":\"vanherwijnen@slf.ch\",\"given_name\":\"Alec\",\"name\":\"van | 63 | email\":\"vanherwijnen@slf.ch\",\"given_name\":\"Alec\",\"name\":\"van | ||
64 | Herwijnen\"}", | 64 | Herwijnen\"}", | ||
65 | "maintainer_email": null, | 65 | "maintainer_email": null, | ||
66 | "metadata_created": "2025-03-03T17:09:36.883579", | 66 | "metadata_created": "2025-03-03T17:09:36.883579", | ||
t | 67 | "metadata_modified": "2025-03-07T12:17:25.830186", | t | 67 | "metadata_modified": "2025-03-07T12:17:26.028198", |
68 | "name": | 68 | "name": | ||
69 | "on-the-compressive-strength-of-weak-snow-layers-of-depth-hoar", | 69 | "on-the-compressive-strength-of-weak-snow-layers-of-depth-hoar", | ||
70 | "notes": "This repository hosts the experimental data accompanying | 70 | "notes": "This repository hosts the experimental data accompanying | ||
71 | our publication, \u201cOn the compressive strength of weak snow layers | 71 | our publication, \u201cOn the compressive strength of weak snow layers | ||
72 | of depth hoar,\u201d featured in the Journal of | 72 | of depth hoar,\u201d featured in the Journal of | ||
73 | Glaciology.\n\n\n-Compressive Strength Data:\nMeasurements of the | 73 | Glaciology.\n\n\n-Compressive Strength Data:\nMeasurements of the | ||
74 | compressive strength for 92 artificially grown weak snow | 74 | compressive strength for 92 artificially grown weak snow | ||
75 | samples.\n\n-Microstructural CT Data:\nCT-derived microstructural | 75 | samples.\n\n-Microstructural CT Data:\nCT-derived microstructural | ||
76 | information for each sample, including:\nDensity\nSpecific surface | 76 | information for each sample, including:\nDensity\nSpecific surface | ||
77 | area\nConnectivity density\nCorrelation | 77 | area\nConnectivity density\nCorrelation | ||
78 | lengths\nAnisotropy\n\n-Additional CT Data:\nParent Sample | 78 | lengths\nAnisotropy\n\n-Additional CT Data:\nParent Sample | ||
79 | Variability: CT data used to assess the variability of the parent | 79 | Variability: CT data used to assess the variability of the parent | ||
80 | samples.\nTemporal Evolution: CT data capturing the evolution within | 80 | samples.\nTemporal Evolution: CT data capturing the evolution within | ||
81 | the artificial weak layers.\nReference Data: Information on the | 81 | the artificial weak layers.\nReference Data: Information on the | ||
82 | reference CT data sourced from the RHOSSA and MOSAiC campaigns.", | 82 | reference CT data sourced from the RHOSSA and MOSAiC campaigns.", | ||
83 | "num_resources": 4, | 83 | "num_resources": 4, | ||
84 | "num_tags": 6, | 84 | "num_tags": 6, | ||
85 | "organization": { | 85 | "organization": { | ||
86 | "approval_status": "approved", | 86 | "approval_status": "approved", | ||
87 | "created": "2019-09-27T12:40:13.473824", | 87 | "created": "2019-09-27T12:40:13.473824", | ||
88 | "description": "Snow avalanches \u2013 a type of fast-moving mass | 88 | "description": "Snow avalanches \u2013 a type of fast-moving mass | ||
89 | movement \u2013 occur in snow covered mountain areas throughout the | 89 | movement \u2013 occur in snow covered mountain areas throughout the | ||
90 | world and may cause property damage and loss of life as they interfere | 90 | world and may cause property damage and loss of life as they interfere | ||
91 | with human activities. Most avalanches release from terrain steeper | 91 | with human activities. Most avalanches release from terrain steeper | ||
92 | than about 30\u00b0 during or soon after snow storms, or are triggered | 92 | than about 30\u00b0 during or soon after snow storms, or are triggered | ||
93 | by snow loading due to wind, or by a temperature change. Snow slab | 93 | by snow loading due to wind, or by a temperature change. Snow slab | ||
94 | avalanches can also be triggered artificially by, for example, people | 94 | avalanches can also be triggered artificially by, for example, people | ||
95 | (usually unintentionally) or intentionally by explosives used as part | 95 | (usually unintentionally) or intentionally by explosives used as part | ||
96 | of avalanche control programs. Today, most avalanche fatalities are | 96 | of avalanche control programs. Today, most avalanche fatalities are | ||
97 | recreationists. Independent of the triggering mode, the snowpack | 97 | recreationists. Independent of the triggering mode, the snowpack | ||
98 | layering is decisive for the instability of the snowpack which | 98 | layering is decisive for the instability of the snowpack which | ||
99 | consists of layers with varying properties. The complex microstructure | 99 | consists of layers with varying properties. The complex microstructure | ||
100 | of snow and spatial variations in snow layer properties across the | 100 | of snow and spatial variations in snow layer properties across the | ||
101 | terrain limit the predictability of snow avalanches. Even today, it is | 101 | terrain limit the predictability of snow avalanches. Even today, it is | ||
102 | not possible to predict the exact location, time and extent of an | 102 | not possible to predict the exact location, time and extent of an | ||
103 | avalanche event. Improving avalanche prediction requires a better | 103 | avalanche event. Improving avalanche prediction requires a better | ||
104 | understanding of the underlying processes. ", | 104 | understanding of the underlying processes. ", | ||
105 | "id": "a357f01f-845b-4b61-9ad0-f204d3332c52", | 105 | "id": "a357f01f-845b-4b61-9ad0-f204d3332c52", | ||
106 | "image_url": "2019-09-27-104013.456832slf.png", | 106 | "image_url": "2019-09-27-104013.456832slf.png", | ||
107 | "is_organization": true, | 107 | "is_organization": true, | ||
108 | "name": "avalanche-formation", | 108 | "name": "avalanche-formation", | ||
109 | "state": "active", | 109 | "state": "active", | ||
110 | "title": "Avalanche Formation and Dynamics", | 110 | "title": "Avalanche Formation and Dynamics", | ||
111 | "type": "organization" | 111 | "type": "organization" | ||
112 | }, | 112 | }, | ||
113 | "owner_org": "a357f01f-845b-4b61-9ad0-f204d3332c52", | 113 | "owner_org": "a357f01f-845b-4b61-9ad0-f204d3332c52", | ||
114 | "private": false, | 114 | "private": false, | ||
115 | "publication": | 115 | "publication": | ||
116 | "{\"publisher\":\"EnviDat\",\"publication_year\":\"2025\"}", | 116 | "{\"publisher\":\"EnviDat\",\"publication_year\":\"2025\"}", | ||
117 | "publication_state": "published", | 117 | "publication_state": "published", | ||
118 | "related_datasets": | 118 | "related_datasets": | ||
119 | 4/PANGAEA.952794>\n\nRHOSSA:\n<https://doi.org/10.16904/envidat.151>", | 119 | 4/PANGAEA.952794>\n\nRHOSSA:\n<https://doi.org/10.16904/envidat.151>", | ||
120 | "relationships_as_object": [], | 120 | "relationships_as_object": [], | ||
121 | "relationships_as_subject": [], | 121 | "relationships_as_subject": [], | ||
122 | "resource_type": "dataset", | 122 | "resource_type": "dataset", | ||
123 | "resource_type_general": "dataset", | 123 | "resource_type_general": "dataset", | ||
124 | "resources": [ | 124 | "resources": [ | ||
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128 | "created": "2025-03-05T14:43:54.112936", | 128 | "created": "2025-03-05T14:43:54.112936", | ||
129 | "description": "CT Reference Data: Contains sample names, | 129 | "description": "CT Reference Data: Contains sample names, | ||
130 | positions, evaluated regions and microstructural parameters based on | 130 | positions, evaluated regions and microstructural parameters based on | ||
131 | data from the RHOSSA and MOSAiC | 131 | data from the RHOSSA and MOSAiC | ||
132 | 1594/PANGAEA.952794\n\nRHOSSA:\nhttps://doi.org/10.16904/envidat.151", | 132 | 1594/PANGAEA.952794\n\nRHOSSA:\nhttps://doi.org/10.16904/envidat.151", | ||
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185 | "description": "Parent sample variability: Contains the CT data | 185 | "description": "Parent sample variability: Contains the CT data | ||
186 | used to estimate the parent sample variability.", | 186 | used to estimate the parent sample variability.", | ||
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212 | "description": "Time series data: Contains the CT data of upper | 212 | "description": "Time series data: Contains the CT data of upper | ||
213 | slab, weak layer and lower slab used to evaluate the temporal | 213 | slab, weak layer and lower slab used to evaluate the temporal | ||
214 | evolution within the artificial samples.", | 214 | evolution within the artificial samples.", | ||
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234 | "url_type": "upload" | 234 | "url_type": "upload" | ||
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237 | "spatial": | 237 | "spatial": | ||
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241 | "tags": [ | 241 | "tags": [ | ||
242 | { | 242 | { | ||
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244 | "id": "f924b091-2fc7-430b-9bbb-847c61c4f3fd", | 244 | "id": "f924b091-2fc7-430b-9bbb-847c61c4f3fd", | ||
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269 | }, | 269 | }, | ||
270 | { | 270 | { | ||
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282 | "vocabulary_id": null | 282 | "vocabulary_id": null | ||
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