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On November 28, 2024 at 1:15:39 PM UTC, admin:
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Changed value of field
extra_authors
to[{'extra_author': 'Dietrich, Benjamin', 'familyName': 'Dietrich', 'givenName': 'Benjamin', 'orcid': ''}, {'extra_author': 'Marocco, Luca', 'familyName': 'Marocco', 'givenName': 'Luca', 'orcid': ''}, {'extra_author': 'Wetzel, Thomas', 'familyName': 'Wetzel', 'givenName': 'Thomas', 'orcid': ''}]
in Heat transfer and pressure drop data of a turbulent tube flow of water and gainsn with azimuthally inhomogeneous heat flux
f | 1 | { | f | 1 | { |
2 | "author": "Laube, Tim", | 2 | "author": "Laube, Tim", | ||
3 | "author_email": "", | 3 | "author_email": "", | ||
n | n | 4 | "citation": [], | ||
4 | "creator_user_id": "17755db4-395a-4b3b-ac09-e8e3484ca700", | 5 | "creator_user_id": "17755db4-395a-4b3b-ac09-e8e3484ca700", | ||
5 | "doi": "10.35097/1421", | 6 | "doi": "10.35097/1421", | ||
6 | "doi_date_published": "2023", | 7 | "doi_date_published": "2023", | ||
7 | "doi_publisher": "", | 8 | "doi_publisher": "", | ||
8 | "doi_status": "True", | 9 | "doi_status": "True", | ||
9 | "extra_authors": [ | 10 | "extra_authors": [ | ||
10 | { | 11 | { | ||
11 | "extra_author": "Dietrich, Benjamin", | 12 | "extra_author": "Dietrich, Benjamin", | ||
n | n | 13 | "familyName": "Dietrich", | ||
14 | "givenName": "Benjamin", | ||||
12 | "orcid": "" | 15 | "orcid": "" | ||
13 | }, | 16 | }, | ||
14 | { | 17 | { | ||
15 | "extra_author": "Marocco, Luca", | 18 | "extra_author": "Marocco, Luca", | ||
n | n | 19 | "familyName": "Marocco", | ||
20 | "givenName": "Luca", | ||||
16 | "orcid": "" | 21 | "orcid": "" | ||
17 | }, | 22 | }, | ||
18 | { | 23 | { | ||
19 | "extra_author": "Wetzel, Thomas", | 24 | "extra_author": "Wetzel, Thomas", | ||
n | n | 25 | "familyName": "Wetzel", | ||
26 | "givenName": "Thomas", | ||||
20 | "orcid": "" | 27 | "orcid": "" | ||
21 | } | 28 | } | ||
22 | ], | 29 | ], | ||
n | n | 30 | "familyName": "Laube", | ||
31 | "givenName": "Tim", | ||||
23 | "groups": [], | 32 | "groups": [], | ||
24 | "id": "28b9083d-ac06-4363-bee2-3230dabf0c7a", | 33 | "id": "28b9083d-ac06-4363-bee2-3230dabf0c7a", | ||
25 | "isopen": false, | 34 | "isopen": false, | ||
26 | "license_id": "CC BY-NC 4.0 Attribution-NonCommercial", | 35 | "license_id": "CC BY-NC 4.0 Attribution-NonCommercial", | ||
27 | "license_title": "CC BY-NC 4.0 Attribution-NonCommercial", | 36 | "license_title": "CC BY-NC 4.0 Attribution-NonCommercial", | ||
28 | "metadata_created": "2023-08-04T08:50:45.111738", | 37 | "metadata_created": "2023-08-04T08:50:45.111738", | ||
t | 29 | "metadata_modified": "2023-08-04T09:31:22.157196", | t | 38 | "metadata_modified": "2024-11-28T13:15:39.169066", |
30 | "name": "rdr-doi-10-35097-1421", | 39 | "name": "rdr-doi-10-35097-1421", | ||
31 | "notes": "Abstract: In diesem Beitrag werden experimentelle Daten | 40 | "notes": "Abstract: In diesem Beitrag werden experimentelle Daten | ||
32 | f\u00fcr den W\u00e4rme\u00fcbergang und den Druckverlust einer | 41 | f\u00fcr den W\u00e4rme\u00fcbergang und den Druckverlust einer | ||
33 | turbulenten Rohrstr\u00f6mung von Wasser und der | 42 | turbulenten Rohrstr\u00f6mung von Wasser und der | ||
34 | Fl\u00fcssigmetalllegierung GaInSn mit azimutal homogener und | 43 | Fl\u00fcssigmetalllegierung GaInSn mit azimutal homogener und | ||
35 | inhomogener Verteilung des W\u00e4rmestroms bereitgestellt. F\u00fcr | 44 | inhomogener Verteilung des W\u00e4rmestroms bereitgestellt. F\u00fcr | ||
36 | den inhomogenen Fall wurde der W\u00e4rmestrom nur \u00fcber den | 45 | den inhomogenen Fall wurde der W\u00e4rmestrom nur \u00fcber den | ||
37 | halben \u00e4u\u00dferen Rohrumfang aufgepr\u00e4gt. Die Reynolds-Zahl | 46 | halben \u00e4u\u00dferen Rohrumfang aufgepr\u00e4gt. Die Reynolds-Zahl | ||
38 | der Str\u00f6mung wurde f\u00fcr Wasser im Bereich $5\\cdot10^3 < | 47 | der Str\u00f6mung wurde f\u00fcr Wasser im Bereich $5\\cdot10^3 < | ||
39 | Re_{Wasser} <4.2\\cdot10^4$ und f\u00fcr GaInSn im Bereich | 48 | Re_{Wasser} <4.2\\cdot10^4$ und f\u00fcr GaInSn im Bereich | ||
40 | $8\\cdot10^3 < Re_{GaInSn} < 1\\cdot10^5$ variiert.\r\nAbstract: In | 49 | $8\\cdot10^3 < Re_{GaInSn} < 1\\cdot10^5$ variiert.\r\nAbstract: In | ||
41 | this contribution experimental data of heat transfer and pressure drop | 50 | this contribution experimental data of heat transfer and pressure drop | ||
42 | for a turbulent tube flow of water and the liquid metal alloy GaInSn, | 51 | for a turbulent tube flow of water and the liquid metal alloy GaInSn, | ||
43 | with azimuthally homogeneous and inhomogeneous heat flux distribution | 52 | with azimuthally homogeneous and inhomogeneous heat flux distribution | ||
44 | is provided. For the inhomogeneous case, the heat flux was only | 53 | is provided. For the inhomogeneous case, the heat flux was only | ||
45 | applied over the half of the tube's outer circumference. The Reynolds | 54 | applied over the half of the tube's outer circumference. The Reynolds | ||
46 | number of the flow was varied for water in the range of $5\\cdot10^3 < | 55 | number of the flow was varied for water in the range of $5\\cdot10^3 < | ||
47 | Re_{Water} <4.2\\cdot10^4$ and for GaInSn $8\\cdot10^3 < Re_{GaInSn} < | 56 | Re_{Water} <4.2\\cdot10^4$ and for GaInSn $8\\cdot10^3 < Re_{GaInSn} < | ||
48 | 1\\cdot10^5$.\r\nTechnicalRemarks: Raw and analyzed data for the heat | 57 | 1\\cdot10^5$.\r\nTechnicalRemarks: Raw and analyzed data for the heat | ||
49 | transfer and pressure drop for a turbulent tube flow of water and the | 58 | transfer and pressure drop for a turbulent tube flow of water and the | ||
50 | liquid metal alloy GaInSn summarized in an excel file.", | 59 | liquid metal alloy GaInSn summarized in an excel file.", | ||
51 | "num_resources": 0, | 60 | "num_resources": 0, | ||
52 | "num_tags": 7, | 61 | "num_tags": 7, | ||
53 | "orcid": "", | 62 | "orcid": "", | ||
54 | "organization": { | 63 | "organization": { | ||
55 | "approval_status": "approved", | 64 | "approval_status": "approved", | ||
56 | "created": "2023-01-12T13:30:23.238233", | 65 | "created": "2023-01-12T13:30:23.238233", | ||
57 | "description": "RADAR (Research Data Repository) is a | 66 | "description": "RADAR (Research Data Repository) is a | ||
58 | cross-disciplinary repository for archiving and publishing research | 67 | cross-disciplinary repository for archiving and publishing research | ||
59 | data from completed scientific studies and projects. The focus is on | 68 | data from completed scientific studies and projects. The focus is on | ||
60 | research data from subjects that do not yet have their own | 69 | research data from subjects that do not yet have their own | ||
61 | discipline-specific infrastructures for research data management. ", | 70 | discipline-specific infrastructures for research data management. ", | ||
62 | "id": "013c89a9-383c-4200-8baa-0f78bf1d91f9", | 71 | "id": "013c89a9-383c-4200-8baa-0f78bf1d91f9", | ||
63 | "image_url": "radar-logo.svg", | 72 | "image_url": "radar-logo.svg", | ||
64 | "is_organization": true, | 73 | "is_organization": true, | ||
65 | "name": "radar", | 74 | "name": "radar", | ||
66 | "state": "active", | 75 | "state": "active", | ||
67 | "title": "RADAR", | 76 | "title": "RADAR", | ||
68 | "type": "organization" | 77 | "type": "organization" | ||
69 | }, | 78 | }, | ||
70 | "owner_org": "013c89a9-383c-4200-8baa-0f78bf1d91f9", | 79 | "owner_org": "013c89a9-383c-4200-8baa-0f78bf1d91f9", | ||
71 | "private": false, | 80 | "private": false, | ||
72 | "production_year": "2023", | 81 | "production_year": "2023", | ||
73 | "publication_year": "2023", | 82 | "publication_year": "2023", | ||
74 | "publishers": [ | 83 | "publishers": [ | ||
75 | { | 84 | { | ||
76 | "publisher": "Karlsruhe Institute of Technology" | 85 | "publisher": "Karlsruhe Institute of Technology" | ||
77 | } | 86 | } | ||
78 | ], | 87 | ], | ||
79 | "relationships_as_object": [], | 88 | "relationships_as_object": [], | ||
80 | "relationships_as_subject": [], | 89 | "relationships_as_subject": [], | ||
81 | "repository_name": "RADAR (Research Data Repository)", | 90 | "repository_name": "RADAR (Research Data Repository)", | ||
82 | "resources": [], | 91 | "resources": [], | ||
83 | "services_used_list": "", | 92 | "services_used_list": "", | ||
84 | "source_metadata_created": "2023", | 93 | "source_metadata_created": "2023", | ||
85 | "source_metadata_modified": "", | 94 | "source_metadata_modified": "", | ||
86 | "state": "active", | 95 | "state": "active", | ||
87 | "subject_areas": [ | 96 | "subject_areas": [ | ||
88 | { | 97 | { | ||
89 | "subject_area_additional": "", | 98 | "subject_area_additional": "", | ||
90 | "subject_area_name": "Engineering" | 99 | "subject_area_name": "Engineering" | ||
91 | } | 100 | } | ||
92 | ], | 101 | ], | ||
93 | "tags": [ | 102 | "tags": [ | ||
94 | { | 103 | { | ||
95 | "display_name": "Nusselt number", | 104 | "display_name": "Nusselt number", | ||
96 | "id": "eb8c0b7f-fccd-4aeb-8d81-805b00aec314", | 105 | "id": "eb8c0b7f-fccd-4aeb-8d81-805b00aec314", | ||
97 | "name": "Nusselt number", | 106 | "name": "Nusselt number", | ||
98 | "state": "active", | 107 | "state": "active", | ||
99 | "vocabulary_id": null | 108 | "vocabulary_id": null | ||
100 | }, | 109 | }, | ||
101 | { | 110 | { | ||
102 | "display_name": "azimuthally inhomogeneous heat flux", | 111 | "display_name": "azimuthally inhomogeneous heat flux", | ||
103 | "id": "4e229051-3eb1-49dc-b4f1-4e08129c26f8", | 112 | "id": "4e229051-3eb1-49dc-b4f1-4e08129c26f8", | ||
104 | "name": "azimuthally inhomogeneous heat flux", | 113 | "name": "azimuthally inhomogeneous heat flux", | ||
105 | "state": "active", | 114 | "state": "active", | ||
106 | "vocabulary_id": null | 115 | "vocabulary_id": null | ||
107 | }, | 116 | }, | ||
108 | { | 117 | { | ||
109 | "display_name": "convective heat transfer", | 118 | "display_name": "convective heat transfer", | ||
110 | "id": "c2f064e2-315c-4269-adec-de352743402d", | 119 | "id": "c2f064e2-315c-4269-adec-de352743402d", | ||
111 | "name": "convective heat transfer", | 120 | "name": "convective heat transfer", | ||
112 | "state": "active", | 121 | "state": "active", | ||
113 | "vocabulary_id": null | 122 | "vocabulary_id": null | ||
114 | }, | 123 | }, | ||
115 | { | 124 | { | ||
116 | "display_name": "friction coefficient", | 125 | "display_name": "friction coefficient", | ||
117 | "id": "00eb50dc-040f-4011-8c38-be59200189ef", | 126 | "id": "00eb50dc-040f-4011-8c38-be59200189ef", | ||
118 | "name": "friction coefficient", | 127 | "name": "friction coefficient", | ||
119 | "state": "active", | 128 | "state": "active", | ||
120 | "vocabulary_id": null | 129 | "vocabulary_id": null | ||
121 | }, | 130 | }, | ||
122 | { | 131 | { | ||
123 | "display_name": "gallium-indium-tin", | 132 | "display_name": "gallium-indium-tin", | ||
124 | "id": "003111ad-d5e1-4919-8509-2ff7a071fea2", | 133 | "id": "003111ad-d5e1-4919-8509-2ff7a071fea2", | ||
125 | "name": "gallium-indium-tin", | 134 | "name": "gallium-indium-tin", | ||
126 | "state": "active", | 135 | "state": "active", | ||
127 | "vocabulary_id": null | 136 | "vocabulary_id": null | ||
128 | }, | 137 | }, | ||
129 | { | 138 | { | ||
130 | "display_name": "liquid metal", | 139 | "display_name": "liquid metal", | ||
131 | "id": "ce3943bd-50fe-4b62-8040-abbbe6eef958", | 140 | "id": "ce3943bd-50fe-4b62-8040-abbbe6eef958", | ||
132 | "name": "liquid metal", | 141 | "name": "liquid metal", | ||
133 | "state": "active", | 142 | "state": "active", | ||
134 | "vocabulary_id": null | 143 | "vocabulary_id": null | ||
135 | }, | 144 | }, | ||
136 | { | 145 | { | ||
137 | "display_name": "low Prandtl number fluid", | 146 | "display_name": "low Prandtl number fluid", | ||
138 | "id": "7dd683ea-035d-4d17-a706-8aa26b2069cb", | 147 | "id": "7dd683ea-035d-4d17-a706-8aa26b2069cb", | ||
139 | "name": "low Prandtl number fluid", | 148 | "name": "low Prandtl number fluid", | ||
140 | "state": "active", | 149 | "state": "active", | ||
141 | "vocabulary_id": null | 150 | "vocabulary_id": null | ||
142 | } | 151 | } | ||
143 | ], | 152 | ], | ||
144 | "title": "Heat transfer and pressure drop data of a turbulent tube | 153 | "title": "Heat transfer and pressure drop data of a turbulent tube | ||
145 | flow of water and gainsn with azimuthally inhomogeneous heat flux", | 154 | flow of water and gainsn with azimuthally inhomogeneous heat flux", | ||
146 | "type": "vdataset", | 155 | "type": "vdataset", | ||
147 | "url": "https://doi.org/10.35097/1421" | 156 | "url": "https://doi.org/10.35097/1421" | ||
148 | } | 157 | } |