Changes
On August 4, 2023 at 8:46:25 AM UTC, admin:
-
Set author of Areas with low and medium spatial vulnerability to a prototype wind turbine to Julia Thiele (previously Julia Thiele, Julia Wiehe, Christina von Haaren )
f | 1 | { | f | 1 | { |
n | 2 | "author": "Julia Thiele, Julia Wiehe, Christina von Haaren ", | n | 2 | "author": "Julia Thiele", |
3 | "author_email": "thiele@umwelt.uni-hannover.de", | 3 | "author_email": "thiele@umwelt.uni-hannover.de", | ||
4 | "creator_user_id": "17755db4-395a-4b3b-ac09-e8e3484ca700", | 4 | "creator_user_id": "17755db4-395a-4b3b-ac09-e8e3484ca700", | ||
5 | "doi": "10.25835/0072778", | 5 | "doi": "10.25835/0072778", | ||
6 | "doi_date_published": "2021-07-19", | 6 | "doi_date_published": "2021-07-19", | ||
7 | "doi_publisher": "LUIS", | 7 | "doi_publisher": "LUIS", | ||
8 | "doi_status": "true", | 8 | "doi_status": "true", | ||
9 | "domain": "https://data.uni-hannover.de", | 9 | "domain": "https://data.uni-hannover.de", | ||
n | n | 10 | "extra_authors": [ | ||
11 | { | ||||
12 | "extra_author": " Julia Wiehe" | ||||
13 | }, | ||||
14 | { | ||||
15 | "extra_author": " Christina von Haaren " | ||||
16 | } | ||||
17 | ], | ||||
10 | "groups": [], | 18 | "groups": [], | ||
11 | "have_copyright": "Yes", | 19 | "have_copyright": "Yes", | ||
12 | "id": "eae4f7c0-761a-4bf9-b057-898f1d1662e7", | 20 | "id": "eae4f7c0-761a-4bf9-b057-898f1d1662e7", | ||
13 | "isopen": false, | 21 | "isopen": false, | ||
14 | "license_id": "CC-BY-3.0", | 22 | "license_id": "CC-BY-3.0", | ||
15 | "license_title": "CC-BY-3.0", | 23 | "license_title": "CC-BY-3.0", | ||
16 | "maintainer": "Julia Thiele", | 24 | "maintainer": "Julia Thiele", | ||
17 | "maintainer_email": "thiele@umwelt.uni-hannover.de", | 25 | "maintainer_email": "thiele@umwelt.uni-hannover.de", | ||
18 | "metadata_created": "2021-10-14T10:15:56.093605", | 26 | "metadata_created": "2021-10-14T10:15:56.093605", | ||
n | 19 | "metadata_modified": "2023-01-12T13:14:11.405331", | n | 27 | "metadata_modified": "2023-08-04T08:46:25.877235", |
20 | "name": | 28 | "name": | ||
21 | ith-low-and-medium-spatial-vulnerability-to-a-prototype-wind-turbine", | 29 | ith-low-and-medium-spatial-vulnerability-to-a-prototype-wind-turbine", | ||
22 | "notes": "#Fl\u00e4chen mit geringem und mittlerem Raumwiderstand | 30 | "notes": "#Fl\u00e4chen mit geringem und mittlerem Raumwiderstand | ||
23 | gegen\u00fcber einer Prototyp-Windenergieanlage (English version is | 31 | gegen\u00fcber einer Prototyp-Windenergieanlage (English version is | ||
24 | below)\r\n\r\nDie Shapefiles zeigen Fl\u00e4chen mit geringem und | 32 | below)\r\n\r\nDie Shapefiles zeigen Fl\u00e4chen mit geringem und | ||
25 | mittlerem Raumwiderstand gegen\u00fcber einer Windenergieanlage | 33 | mittlerem Raumwiderstand gegen\u00fcber einer Windenergieanlage | ||
26 | (Variante 2, [Thiele et al. | 34 | (Variante 2, [Thiele et al. | ||
27 | 2021](https://www.bfn.de/sites/default/files/2021-09/Skript614.pdf); | 35 | 2021](https://www.bfn.de/sites/default/files/2021-09/Skript614.pdf); | ||
28 | Szenario \u201ehochaufgel\u00f6ste Eingangsdaten\u201d, Thiele et al. | 36 | Szenario \u201ehochaufgel\u00f6ste Eingangsdaten\u201d, Thiele et al. | ||
29 | in press; Szenario \u201eno regret\u201c, Wiehe et al. 2020), die als | 37 | in press; Szenario \u201eno regret\u201c, Wiehe et al. 2020), die als | ||
30 | \u201er\u00e4umliche Fahrrinne\u201c f\u00fcr eine nachhaltige | 38 | \u201er\u00e4umliche Fahrrinne\u201c f\u00fcr eine nachhaltige | ||
31 | Energiewende dienen k\u00f6nnen. Es kann davon ausgegangen werden, | 39 | Energiewende dienen k\u00f6nnen. Es kann davon ausgegangen werden, | ||
32 | dass vor allem auf den Fl\u00e4chen mit geringem Raumwiderstand der | 40 | dass vor allem auf den Fl\u00e4chen mit geringem Raumwiderstand der | ||
33 | Ausbau von Windenergie an Land weitgehend konfliktfrei gelingen | 41 | Ausbau von Windenergie an Land weitgehend konfliktfrei gelingen | ||
34 | sollte. \r\n\r\nDie verwendeten **Grundlagendaten** und ihre | 42 | sollte. \r\n\r\nDie verwendeten **Grundlagendaten** und ihre | ||
35 | Einordnung in Raumwiderstandsklassen k\u00f6nnen aus Wiehe et al. | 43 | Einordnung in Raumwiderstandsklassen k\u00f6nnen aus Wiehe et al. | ||
36 | (2020) und [Thiele et al. | 44 | (2020) und [Thiele et al. | ||
37 | (2021)](https://www.bfn.de/sites/default/files/2021-09/Skript614.pdf) | 45 | (2021)](https://www.bfn.de/sites/default/files/2021-09/Skript614.pdf) | ||
38 | entnommen werden: GeoBasis-DE/BKG 2017; GeoBasis-DE/BKG 2018 | 46 | entnommen werden: GeoBasis-DE/BKG 2017; GeoBasis-DE/BKG 2018 | ||
39 | (Nutzungsbedingungen: | 47 | (Nutzungsbedingungen: | ||
40 | https://sg.geodatenzentrum.de/web_public/nutzungsbedingungen.pdf); | 48 | https://sg.geodatenzentrum.de/web_public/nutzungsbedingungen.pdf); | ||
41 | BNetzA 2016; Daten zu Schutzgebieten vom BfN; Atlas Deutscher | 49 | BNetzA 2016; Daten zu Schutzgebieten vom BfN; Atlas Deutscher | ||
42 | Brutvogelarten 2014; Corine Land Cover 2018. Die Grundlagendaten | 50 | Brutvogelarten 2014; Corine Land Cover 2018. Die Grundlagendaten | ||
43 | wurden in Raster mit einer Aufl\u00f6sung von 50 m \u00d7 50 m | 51 | wurden in Raster mit einer Aufl\u00f6sung von 50 m \u00d7 50 m | ||
44 | umgewandelt, um die Fl\u00e4chen der Raumwiderstandsklassen zu | 52 | umgewandelt, um die Fl\u00e4chen der Raumwiderstandsklassen zu | ||
45 | ermitteln. Das resultierende Raster je Raumwiderstandsklasse wurde in | 53 | ermitteln. Das resultierende Raster je Raumwiderstandsklasse wurde in | ||
46 | ein Shapefile umgewandelt.\r\n\r\n**English version**\r\n\r\nThe | 54 | ein Shapefile umgewandelt.\r\n\r\n**English version**\r\n\r\nThe | ||
47 | shapefiles display areas with low and medium spatial vulnerability to | 55 | shapefiles display areas with low and medium spatial vulnerability to | ||
48 | a prototype wind turbine (variant 2, Thiele et al. 2021; scenario | 56 | a prototype wind turbine (variant 2, Thiele et al. 2021; scenario | ||
49 | \u201chochaufgel\u00f6ste Eingangsdaten\u201c, Thiele et al. in press; | 57 | \u201chochaufgel\u00f6ste Eingangsdaten\u201c, Thiele et al. in press; | ||
50 | scenario \u201cno regret\u201d, Wiehe et al. 2020), which can serve as | 58 | scenario \u201cno regret\u201d, Wiehe et al. 2020), which can serve as | ||
51 | a \"spatial fairway\" for a sustainable energy transition. It can be | 59 | a \"spatial fairway\" for a sustainable energy transition. It can be | ||
52 | assumed that the expansion of onshore wind energy can be implemented | 60 | assumed that the expansion of onshore wind energy can be implemented | ||
53 | in a predominantly conflict-free way, if restricted to areas with low | 61 | in a predominantly conflict-free way, if restricted to areas with low | ||
54 | spatial vulnerability.\r\nBasic data (Wiehe et al. 2020, Thiele et al. | 62 | spatial vulnerability.\r\nBasic data (Wiehe et al. 2020, Thiele et al. | ||
55 | 2021): GeoBasis-DE/BKG 2017; GeoBasis-DE/BKG 2018 (Conditions of use: | 63 | 2021): GeoBasis-DE/BKG 2017; GeoBasis-DE/BKG 2018 (Conditions of use: | ||
56 | https://sg.geodatenzentrum.de/web_public/nutzungsbedingungen.pdf); | 64 | https://sg.geodatenzentrum.de/web_public/nutzungsbedingungen.pdf); | ||
57 | BNetzA 2016; BfN data; Atlas of German Breeding Birds; Corine Land | 65 | BNetzA 2016; BfN data; Atlas of German Breeding Birds; Corine Land | ||
58 | Cover 2018. The basic data was converted into grids with a resolution | 66 | Cover 2018. The basic data was converted into grids with a resolution | ||
59 | of 50 m \u00d7 50 m in order to calculate areas of the spatial | 67 | of 50 m \u00d7 50 m in order to calculate areas of the spatial | ||
60 | vulnerability classes. The resulting grid per spatial vulnerability | 68 | vulnerability classes. The resulting grid per spatial vulnerability | ||
61 | class was converted into a shapefile. \r\n\r\n**Projected Coordinate | 69 | class was converted into a shapefile. \r\n\r\n**Projected Coordinate | ||
62 | System:** ETRS_1989_UTM_Zone_32N_8stellen | 70 | System:** ETRS_1989_UTM_Zone_32N_8stellen | ||
63 | (EPSG:4647)\r\n\r\n**Referenzen / References:**\r\n\r\n* Thiele, J.; | 71 | (EPSG:4647)\r\n\r\n**Referenzen / References:**\r\n\r\n* Thiele, J.; | ||
64 | Wiehe, J.; Gauglitz, P.; Lohr, C.; Bensmann, A.; Hanke-Rauschenbach, | 72 | Wiehe, J.; Gauglitz, P.; Lohr, C.; Bensmann, A.; Hanke-Rauschenbach, | ||
65 | R.; Haaren, C. von (in press): EE100 in Deutschland: Kann der | 73 | R.; Haaren, C. von (in press): EE100 in Deutschland: Kann der | ||
66 | Energiebedarf 2050 mensch- und naturvertr\u00e4glich gedeckt werden? | 74 | Energiebedarf 2050 mensch- und naturvertr\u00e4glich gedeckt werden? | ||
67 | In: Natur und Landschaft.\r\n\r\n* Thiele, J.; Wiehe, J.; Gauglitz, | 75 | In: Natur und Landschaft.\r\n\r\n* Thiele, J.; Wiehe, J.; Gauglitz, | ||
68 | P.; Pape, C.; Lohr, C.; Bensmann, A. et al. (2021): Konkretisierung | 76 | P.; Pape, C.; Lohr, C.; Bensmann, A. et al. (2021): Konkretisierung | ||
69 | von Ansatzpunkten einer naturvertr\u00e4glichen Ausgestaltung der | 77 | von Ansatzpunkten einer naturvertr\u00e4glichen Ausgestaltung der | ||
70 | Energiewende, mit Blick auf strategische Stellschrauben. | 78 | Energiewende, mit Blick auf strategische Stellschrauben. | ||
71 | \u201eNaturvertr\u00e4gliche Ausgestaltung der Energiewende\u201c | 79 | \u201eNaturvertr\u00e4gliche Ausgestaltung der Energiewende\u201c | ||
72 | (EE100-konkret). Bonn (BfN-Skripten, 614). Online verf\u00fcgbar unter | 80 | (EE100-konkret). Bonn (BfN-Skripten, 614). Online verf\u00fcgbar unter | ||
73 | https://www.bfn.de/sites/default/files/2021-09/Skript614.pdf, zuletzt | 81 | https://www.bfn.de/sites/default/files/2021-09/Skript614.pdf, zuletzt | ||
74 | gepr\u00fcft am 08.11.2021. DOI: 10.19217/skr614\r\n\r\n* Wiehe, J.; | 82 | gepr\u00fcft am 08.11.2021. DOI: 10.19217/skr614\r\n\r\n* Wiehe, J.; | ||
75 | Thiele, J.; Walter, A.; Hashemifarzad, A.; Zum Hingst, J.; Haaren, C. | 83 | Thiele, J.; Walter, A.; Hashemifarzad, A.; Zum Hingst, J.; Haaren, C. | ||
76 | von (2020): Nothing to regret: Reconciling renewable energies with | 84 | von (2020): Nothing to regret: Reconciling renewable energies with | ||
77 | human wellbeing and nature in the German Energy Transition. In: | 85 | human wellbeing and nature in the German Energy Transition. In: | ||
78 | International Journal of Energy Research 45 (1), S. 745\u2013758. DOI: | 86 | International Journal of Energy Research 45 (1), S. 745\u2013758. DOI: | ||
79 | 10.1002/er.5870.\r\n\r\n\r\n**F\u00f6rderung / Funding:**\r\nDer | 87 | 10.1002/er.5870.\r\n\r\n\r\n**F\u00f6rderung / Funding:**\r\nDer | ||
80 | Datensatz resultiert aus dem Forschungsprojekt \u201eKonkretisierung | 88 | Datensatz resultiert aus dem Forschungsprojekt \u201eKonkretisierung | ||
81 | von Ansatzpunkten einer naturvertr\u00e4glichen Ausgestaltung der | 89 | von Ansatzpunkten einer naturvertr\u00e4glichen Ausgestaltung der | ||
82 | Energiewende, mit Blick auf strategische Stellschrauben | 90 | Energiewende, mit Blick auf strategische Stellschrauben | ||
83 | (EE100-konkret)\u201c, das vom Bundesamt f\u00fcr Naturschutz aus | 91 | (EE100-konkret)\u201c, das vom Bundesamt f\u00fcr Naturschutz aus | ||
84 | Mitteln des Bundesumweltministeriums gef\u00f6rdert wurde (FKZ 3515 82 | 92 | Mitteln des Bundesumweltministeriums gef\u00f6rdert wurde (FKZ 3515 82 | ||
85 | 4300).\r\nThe dataset resulted from the research project | 93 | 4300).\r\nThe dataset resulted from the research project | ||
86 | \"Konkretisierung von Ansatzpunkten einer naturvertr\u00e4glichen | 94 | \"Konkretisierung von Ansatzpunkten einer naturvertr\u00e4glichen | ||
87 | Ausgestaltung der Energiewende, mit Blick auf strategische | 95 | Ausgestaltung der Energiewende, mit Blick auf strategische | ||
88 | Stellschrauben (EE100-konkret)\". The project was funded by the | 96 | Stellschrauben (EE100-konkret)\". The project was funded by the | ||
89 | Federal Agency for Nature Conservation (BfN) with funds from the | 97 | Federal Agency for Nature Conservation (BfN) with funds from the | ||
90 | Federal Ministry for the Environment, Nature Conservation and Nuclear | 98 | Federal Ministry for the Environment, Nature Conservation and Nuclear | ||
91 | Safety (BMU) (FKZ: 3517 86 0100).\r\n", | 99 | Safety (BMU) (FKZ: 3517 86 0100).\r\n", | ||
92 | "num_resources": 2, | 100 | "num_resources": 2, | ||
93 | "num_tags": 5, | 101 | "num_tags": 5, | ||
94 | "organization": { | 102 | "organization": { | ||
95 | "approval_status": "approved", | 103 | "approval_status": "approved", | ||
96 | "created": "2021-10-14T10:15:56.030250", | 104 | "created": "2021-10-14T10:15:56.030250", | ||
97 | "description": "Institute of Environmental | 105 | "description": "Institute of Environmental | ||
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102 | "is_organization": true, | 110 | "is_organization": true, | ||
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104 | "state": "active", | 112 | "state": "active", | ||
105 | "title": "Institut f\u00fcr Umweltplanung ", | 113 | "title": "Institut f\u00fcr Umweltplanung ", | ||
106 | "type": "organization" | 114 | "type": "organization" | ||
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111 | "relationships_as_subject": [], | 119 | "relationships_as_subject": [], | ||
112 | "repository_name": "Leibniz University Hannover", | 120 | "repository_name": "Leibniz University Hannover", | ||
113 | "resources": [ | 121 | "resources": [ | ||
114 | { | 122 | { | ||
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186 | { | 195 | { | ||
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191 | "vocabulary_id": null | 200 | "vocabulary_id": null | ||
192 | }, | 201 | }, | ||
193 | { | 202 | { | ||
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197 | "state": "active", | 206 | "state": "active", | ||
198 | "vocabulary_id": null | 207 | "vocabulary_id": null | ||
199 | } | 208 | } | ||
200 | ], | 209 | ], | ||
201 | "terms_of_usage": "Yes", | 210 | "terms_of_usage": "Yes", | ||
202 | "title": "Areas with low and medium spatial vulnerability to a | 211 | "title": "Areas with low and medium spatial vulnerability to a | ||
203 | prototype wind turbine", | 212 | prototype wind turbine", | ||
204 | "type": "vdataset", | 213 | "type": "vdataset", | ||
205 | "url": | 214 | "url": | ||
206 | ith-low-and-medium-spatial-vulnerability-to-a-prototype-wind-turbine", | 215 | ith-low-and-medium-spatial-vulnerability-to-a-prototype-wind-turbine", | ||
207 | "version": "1.0" | 216 | "version": "1.0" | ||
208 | } | 217 | } |