Changes
On January 14, 2021 at 9:53:53 PM UTC,
-
Added resource rhone_air_temp_details.txt to Data for: Macroinvertebrate recovery to varying hydropeaking frequency: a small hydropower plant experiment
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Added field
datastore_active
to resource pebble_counts.csv in Data for: Macroinvertebrate recovery to varying hydropeaking frequency: a small hydropower plant experiment
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2 | "author": "[\"Aksamit, Claire\", \"Carolli, Mauro\", \"Vanzo, | 2 | "author": "[\"Aksamit, Claire\", \"Carolli, Mauro\", \"Vanzo, | ||
3 | Davide\", \"Weber, Christine\", \"Schmid, Martin\"]", | 3 | Davide\", \"Weber, Christine\", \"Schmid, Martin\"]", | ||
4 | "author_email": null, | 4 | "author_email": null, | ||
5 | "creator_user_id": "064a4293-f097-4005-98d5-65b49b35ccf3", | 5 | "creator_user_id": "064a4293-f097-4005-98d5-65b49b35ccf3", | ||
6 | "extras": [ | 6 | "extras": [ | ||
7 | { | 7 | { | ||
8 | "key": "doi", | 8 | "key": "doi", | ||
9 | "value": "10.25678/0002E4" | 9 | "value": "10.25678/0002E4" | ||
10 | }, | 10 | }, | ||
11 | { | 11 | { | ||
12 | "key": "geographic_name", | 12 | "key": "geographic_name", | ||
13 | "value": "[\"upper Rhone River\", \"Valais\", \"Switzerland\"]" | 13 | "value": "[\"upper Rhone River\", \"Valais\", \"Switzerland\"]" | ||
14 | }, | 14 | }, | ||
15 | { | 15 | { | ||
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25 | "value": "true" | 25 | "value": "true" | ||
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27 | { | 27 | { | ||
28 | "key": "ispublication", | 28 | "key": "ispublication", | ||
29 | "value": "true" | 29 | "value": "true" | ||
30 | }, | 30 | }, | ||
31 | { | 31 | { | ||
32 | "key": "open_data", | 32 | "key": "open_data", | ||
33 | "value": "true" | 33 | "value": "true" | ||
34 | }, | 34 | }, | ||
35 | { | 35 | { | ||
36 | "key": "paper_doi", | 36 | "key": "paper_doi", | ||
37 | "value": "10.3389/fenvs.2020.602374" | 37 | "value": "10.3389/fenvs.2020.602374" | ||
38 | }, | 38 | }, | ||
39 | { | 39 | { | ||
40 | "key": "publicationlink", | 40 | "key": "publicationlink", | ||
41 | "value": "https://doi.org/10.3389/fenvs.2020.602374" | 41 | "value": "https://doi.org/10.3389/fenvs.2020.602374" | ||
42 | }, | 42 | }, | ||
43 | { | 43 | { | ||
44 | "key": "review_level", | 44 | "key": "review_level", | ||
45 | "value": "general" | 45 | "value": "general" | ||
46 | }, | 46 | }, | ||
47 | { | 47 | { | ||
48 | "key": "reviewed_by", | 48 | "key": "reviewed_by", | ||
49 | "value": "[\"redacted\"]" | 49 | "value": "[\"redacted\"]" | ||
50 | }, | 50 | }, | ||
51 | { | 51 | { | ||
52 | "key": "spatial", | 52 | "key": "spatial", | ||
53 | "value": "{ \"type\": \"MultiPoint\", \"coordinates\": | 53 | "value": "{ \"type\": \"MultiPoint\", \"coordinates\": | ||
54 | [[8.360555556, 46.53916667], [8.36222222, 46.5447222222]] }" | 54 | [[8.360555556, 46.53916667], [8.36222222, 46.5447222222]] }" | ||
55 | }, | 55 | }, | ||
56 | { | 56 | { | ||
57 | "key": "status", | 57 | "key": "status", | ||
58 | "value": "complete" | 58 | "value": "complete" | ||
59 | }, | 59 | }, | ||
60 | { | 60 | { | ||
61 | "key": "substances", | 61 | "key": "substances", | ||
62 | "value": "[]" | 62 | "value": "[]" | ||
63 | }, | 63 | }, | ||
64 | { | 64 | { | ||
65 | "key": "substances_generic", | 65 | "key": "substances_generic", | ||
66 | "value": "[]" | 66 | "value": "[]" | ||
67 | }, | 67 | }, | ||
68 | { | 68 | { | ||
69 | "key": "systems", | 69 | "key": "systems", | ||
70 | "value": "[\"alpine river, Upper Rhone River\"]" | 70 | "value": "[\"alpine river, Upper Rhone River\"]" | ||
71 | }, | 71 | }, | ||
72 | { | 72 | { | ||
73 | "key": "tags_string", | 73 | "key": "tags_string", | ||
74 | "value": "field experiment,Macroinvertebrate drift,flexible | 74 | "value": "field experiment,Macroinvertebrate drift,flexible | ||
75 | power production,physical habitat,pool,riffle" | 75 | power production,physical habitat,pool,riffle" | ||
76 | }, | 76 | }, | ||
77 | { | 77 | { | ||
78 | "key": "taxa", | 78 | "key": "taxa", | ||
79 | "value": "[\"Heptageniidae, Baetidae, Perlodidae, | 79 | "value": "[\"Heptageniidae, Baetidae, Perlodidae, | ||
80 | Chloroperlidae, Capniidae, Leuctra, Taeniopterygidae, Nemouridae, | 80 | Chloroperlidae, Capniidae, Leuctra, Taeniopterygidae, Nemouridae, | ||
81 | Protonemoura, Plecoptera (other), Chironomidae, Simuliidae, | 81 | Protonemoura, Plecoptera (other), Chironomidae, Simuliidae, | ||
82 | Stratiomyidae, Dixidae, Pediciidae, Psychodidae, Blephariceridae, | 82 | Stratiomyidae, Dixidae, Pediciidae, Psychodidae, Blephariceridae, | ||
83 | Limoniidae, Tipulidae, Thaumaleidae, Ceratopogonidae, Empididae, | 83 | Limoniidae, Tipulidae, Thaumaleidae, Ceratopogonidae, Empididae, | ||
84 | Diptera (other), Limnephilidae (cf Drusus group), Rhyacophilidae, | 84 | Diptera (other), Limnephilidae (cf Drusus group), Rhyacophilidae, | ||
85 | Hydracarina, Staphylinidae, Collembola, Oligochaeta, Turbellaria\"]" | 85 | Hydracarina, Staphylinidae, Collembola, Oligochaeta, Turbellaria\"]" | ||
86 | }, | 86 | }, | ||
87 | { | 87 | { | ||
88 | "key": "taxa_generic", | 88 | "key": "taxa_generic", | ||
89 | "value": "[\"benthic macroinvertebrates\"]" | 89 | "value": "[\"benthic macroinvertebrates\"]" | ||
90 | }, | 90 | }, | ||
91 | { | 91 | { | ||
92 | "key": "timerange", | 92 | "key": "timerange", | ||
93 | "value": "[\"[2018-11-08 TO 2018-11-22]\"]" | 93 | "value": "[\"[2018-11-08 TO 2018-11-22]\"]" | ||
94 | }, | 94 | }, | ||
95 | { | 95 | { | ||
96 | "key": "variables", | 96 | "key": "variables", | ||
97 | "value": "[\"electric_conductivity\", \"temperature\", | 97 | "value": "[\"electric_conductivity\", \"temperature\", | ||
98 | \"turbidity\", \"pH\", \"count\", \"waterlevel\", \"velocity\", | 98 | \"turbidity\", \"pH\", \"count\", \"waterlevel\", \"velocity\", | ||
99 | \"dissolved_oygen\", \"grain_size\"]" | 99 | \"dissolved_oygen\", \"grain_size\"]" | ||
100 | } | 100 | } | ||
101 | ], | 101 | ], | ||
102 | "groups": [], | 102 | "groups": [], | ||
103 | "id": "a306ecaf-6adb-41fb-a2f8-1a5c7d85801d", | 103 | "id": "a306ecaf-6adb-41fb-a2f8-1a5c7d85801d", | ||
104 | "isopen": false, | 104 | "isopen": false, | ||
105 | "license_id": null, | 105 | "license_id": null, | ||
106 | "license_title": null, | 106 | "license_title": null, | ||
107 | "maintainer": "Schmid, Martin", | 107 | "maintainer": "Schmid, Martin", | ||
108 | "maintainer_email": "Martin.Schmid@eawag.ch", | 108 | "maintainer_email": "Martin.Schmid@eawag.ch", | ||
109 | "metadata_created": "2021-01-14T21:53:49.878093", | 109 | "metadata_created": "2021-01-14T21:53:49.878093", | ||
110 | "metadata_modified": "2021-01-14T21:53:49.878103", | 110 | "metadata_modified": "2021-01-14T21:53:49.878103", | ||
111 | "name": | 111 | "name": | ||
112 | ertebrate-recovery-to-varying-hydropeaking-frequency-aksamitetal2020", | 112 | ertebrate-recovery-to-varying-hydropeaking-frequency-aksamitetal2020", | ||
113 | "notes": "As the demand for hydroelectricity progresses worldwide, | 113 | "notes": "As the demand for hydroelectricity progresses worldwide, | ||
114 | small hydropower operators are increasingly examining the | 114 | small hydropower operators are increasingly examining the | ||
115 | feasibility\r\nof using existing infrastructure (e.g. desander) in | 115 | feasibility\r\nof using existing infrastructure (e.g. desander) in | ||
116 | run-of-the-river schemes for intermittent power production. Such | 116 | run-of-the-river schemes for intermittent power production. Such | ||
117 | flexible production causes short-term discharge fluctuations | 117 | flexible production causes short-term discharge fluctuations | ||
118 | (hydropeaking) in downstream reaches with potential adverse effects | 118 | (hydropeaking) in downstream reaches with potential adverse effects | ||
119 | for the sensitive fauna and flora in alpine streams. In a field | 119 | for the sensitive fauna and flora in alpine streams. In a field | ||
120 | experiment on a previously unregulated section of the upper Rhone | 120 | experiment on a previously unregulated section of the upper Rhone | ||
121 | River (Switzerland), we measured density and composition of | 121 | River (Switzerland), we measured density and composition of | ||
122 | macroinvertebrate drift in two habitats (riffle, pool) following a | 122 | macroinvertebrate drift in two habitats (riffle, pool) following a | ||
123 | 15-minute hydropeaking wave. The experimental hydropeaking was | 123 | 15-minute hydropeaking wave. The experimental hydropeaking was | ||
124 | replicated five times over 14 days with decreasing recovery times | 124 | replicated five times over 14 days with decreasing recovery times | ||
125 | between peaks (8 days, 3 days, 2 days, and 24 hours) and drift | 125 | between peaks (8 days, 3 days, 2 days, and 24 hours) and drift | ||
126 | measurements were compared with kick samples for the benthic | 126 | measurements were compared with kick samples for the benthic | ||
127 | community. Results from the kick sampling showed that benthic | 127 | community. Results from the kick sampling showed that benthic | ||
128 | macroinvertebrate abundance and composition did not significantly | 128 | macroinvertebrate abundance and composition did not significantly | ||
129 | change between the experimental peaks. There were habitat specific | 129 | change between the experimental peaks. There were habitat specific | ||
130 | reactions in macroinvertebrate drift to hydropeaking, with the pool | 130 | reactions in macroinvertebrate drift to hydropeaking, with the pool | ||
131 | experiencing more pronounced drift abundances than the riffle. We | 131 | experiencing more pronounced drift abundances than the riffle. We | ||
132 | observed that drift abundance was not significantly correlated with | 132 | observed that drift abundance was not significantly correlated with | ||
133 | recovery time but results indicate a reaction of some taxa to | 133 | recovery time but results indicate a reaction of some taxa to | ||
134 | decreasing recovery times. This research may support water policy | 134 | decreasing recovery times. This research may support water policy | ||
135 | decision-makers to better understand the ecological impact of flexible | 135 | decision-makers to better understand the ecological impact of flexible | ||
136 | power production in small hydropower plants, and advocates for the | 136 | power production in small hydropower plants, and advocates for the | ||
137 | importance of completing more in-situ field experiments.", | 137 | importance of completing more in-situ field experiments.", | ||
n | 138 | "num_resources": 3, | n | 138 | "num_resources": 4, |
139 | "num_tags": 6, | 139 | "num_tags": 6, | ||
140 | "organization": { | 140 | "organization": { | ||
141 | "approval_status": "approved", | 141 | "approval_status": "approved", | ||
142 | "created": "2019-09-18T14:11:50.002176", | 142 | "created": "2019-09-18T14:11:50.002176", | ||
143 | "description": "The research group Applied System Analysis aims at | 143 | "description": "The research group Applied System Analysis aims at | ||
144 | investigating interactions between physical forcing, geochemical | 144 | investigating interactions between physical forcing, geochemical | ||
145 | cycling, and ecology in aquatic ecosystems. The work is focused on | 145 | cycling, and ecology in aquatic ecosystems. The work is focused on | ||
146 | identifying, quantifying and predicting human impacts on these | 146 | identifying, quantifying and predicting human impacts on these | ||
147 | systems. For this purpose, specifically acquired datasets as well as | 147 | systems. For this purpose, specifically acquired datasets as well as | ||
148 | datasets available in literature and online databases are analyzed | 148 | datasets available in literature and online databases are analyzed | ||
149 | using analytical and statistical methods. Models of varying | 149 | using analytical and statistical methods. Models of varying | ||
150 | complexity, ranging from simple box models to three-dimensional | 150 | complexity, ranging from simple box models to three-dimensional | ||
151 | numerical simulations, are developed and applied. Recent consulting | 151 | numerical simulations, are developed and applied. Recent consulting | ||
152 | projects include impacts of pumped-storage operations, heat pumps, and | 152 | projects include impacts of pumped-storage operations, heat pumps, and | ||
153 | methane extraction facilities on lakes.", | 153 | methane extraction facilities on lakes.", | ||
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157 | "is_organization": true, | 157 | "is_organization": true, | ||
158 | "name": "applied-system-analysis", | 158 | "name": "applied-system-analysis", | ||
159 | "state": "active", | 159 | "state": "active", | ||
160 | "title": "Applied System Analysis", | 160 | "title": "Applied System Analysis", | ||
161 | "type": "organization" | 161 | "type": "organization" | ||
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259 | "display_name": "field experiment", | 286 | "display_name": "field experiment", | ||
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261 | "name": "field experiment", | 288 | "name": "field experiment", | ||
262 | "state": "active", | 289 | "state": "active", | ||
263 | "vocabulary_id": null | 290 | "vocabulary_id": null | ||
264 | }, | 291 | }, | ||
265 | { | 292 | { | ||
266 | "display_name": "flexible power production", | 293 | "display_name": "flexible power production", | ||
267 | "id": "3d46fe80-24b6-4a05-b019-d3174d1b58fe", | 294 | "id": "3d46fe80-24b6-4a05-b019-d3174d1b58fe", | ||
268 | "name": "flexible power production", | 295 | "name": "flexible power production", | ||
269 | "state": "active", | 296 | "state": "active", | ||
270 | "vocabulary_id": null | 297 | "vocabulary_id": null | ||
271 | }, | 298 | }, | ||
272 | { | 299 | { | ||
273 | "display_name": "physical habitat", | 300 | "display_name": "physical habitat", | ||
274 | "id": "b3fe96e5-f384-4e9c-9089-e96119c78187", | 301 | "id": "b3fe96e5-f384-4e9c-9089-e96119c78187", | ||
275 | "name": "physical habitat", | 302 | "name": "physical habitat", | ||
276 | "state": "active", | 303 | "state": "active", | ||
277 | "vocabulary_id": null | 304 | "vocabulary_id": null | ||
278 | }, | 305 | }, | ||
279 | { | 306 | { | ||
280 | "display_name": "pool", | 307 | "display_name": "pool", | ||
281 | "id": "48b3da86-64af-44cf-bcf1-e9191416dc75", | 308 | "id": "48b3da86-64af-44cf-bcf1-e9191416dc75", | ||
282 | "name": "pool", | 309 | "name": "pool", | ||
283 | "state": "active", | 310 | "state": "active", | ||
284 | "vocabulary_id": null | 311 | "vocabulary_id": null | ||
285 | }, | 312 | }, | ||
286 | { | 313 | { | ||
287 | "display_name": "riffle", | 314 | "display_name": "riffle", | ||
288 | "id": "1f7333fd-0c5e-4440-839e-8160b083f3dd", | 315 | "id": "1f7333fd-0c5e-4440-839e-8160b083f3dd", | ||
289 | "name": "riffle", | 316 | "name": "riffle", | ||
290 | "state": "active", | 317 | "state": "active", | ||
291 | "vocabulary_id": null | 318 | "vocabulary_id": null | ||
292 | } | 319 | } | ||
293 | ], | 320 | ], | ||
294 | "title": "Data for: Macroinvertebrate recovery to varying | 321 | "title": "Data for: Macroinvertebrate recovery to varying | ||
295 | hydropeaking frequency: a small hydropower plant experiment", | 322 | hydropeaking frequency: a small hydropower plant experiment", | ||
296 | "type": "dataset", | 323 | "type": "dataset", | ||
297 | "url": "https://doi.org/10.25678/0002E4/", | 324 | "url": "https://doi.org/10.25678/0002E4/", | ||
298 | "version": null | 325 | "version": null | ||
299 | } | 326 | } |