Changes
On March 4, 2025 at 10:59:27 AM UTC,
-
Changed the version of ERRA -- an R script for Ensemble Rainfall-Runoff Analysis to 1.0
f | 1 | { | f | 1 | { |
2 | "author": "[{\"given_name\": \"James\", \"name\": \"Kirchner\", | 2 | "author": "[{\"given_name\": \"James\", \"name\": \"Kirchner\", | ||
3 | \"email\": \"kirchner@ethz.ch\", \"data_credit\": []}]", | 3 | \"email\": \"kirchner@ethz.ch\", \"data_credit\": []}]", | ||
4 | "author_email": null, | 4 | "author_email": null, | ||
5 | "creator_user_id": "08d99172-ab7a-4f82-a74a-c252227f6fd4", | 5 | "creator_user_id": "08d99172-ab7a-4f82-a74a-c252227f6fd4", | ||
6 | "date": | 6 | "date": | ||
7 | \":\"created\",\"date\":\"2018-01-01\",\"end_date\":\"2024-09-05\"}]", | 7 | \":\"created\",\"date\":\"2018-01-01\",\"end_date\":\"2024-09-05\"}]", | ||
8 | "doi": "10.16904/envidat.529", | 8 | "doi": "10.16904/envidat.529", | ||
9 | "funding": "[{\"institution\":\"ETH | 9 | "funding": "[{\"institution\":\"ETH | ||
10 | \"grant_number\":\"--\",\"institution_url\":\"https://ethz.ch/en\"}]", | 10 | \"grant_number\":\"--\",\"institution_url\":\"https://ethz.ch/en\"}]", | ||
11 | "groups": [], | 11 | "groups": [], | ||
12 | "id": "84277dcd-ccde-4eaf-a65b-d1ecf6a0385c", | 12 | "id": "84277dcd-ccde-4eaf-a65b-d1ecf6a0385c", | ||
13 | "isopen": true, | 13 | "isopen": true, | ||
14 | "license_id": "cc-by-sa", | 14 | "license_id": "cc-by-sa", | ||
15 | "license_title": "Creative Commons Attribution Share-Alike | 15 | "license_title": "Creative Commons Attribution Share-Alike | ||
16 | (CC-BY-SA)", | 16 | (CC-BY-SA)", | ||
17 | "license_url": "https://creativecommons.org/licenses/by-sa/4.0/", | 17 | "license_url": "https://creativecommons.org/licenses/by-sa/4.0/", | ||
18 | "maintainer": | 18 | "maintainer": | ||
19 | \"kirchner@ethz.ch\",\"given_name\":\"James\",\"name\":\"Kirchner\"}", | 19 | \"kirchner@ethz.ch\",\"given_name\":\"James\",\"name\":\"Kirchner\"}", | ||
20 | "maintainer_email": null, | 20 | "maintainer_email": null, | ||
21 | "metadata_created": "2024-07-18T07:19:53.471516", | 21 | "metadata_created": "2024-07-18T07:19:53.471516", | ||
n | 22 | "metadata_modified": "2024-10-01T13:12:41.219132", | n | 22 | "metadata_modified": "2025-03-04T10:59:27.877163", |
23 | "name": "erra-an-r-script-for-ensemble-rainfall-runoff-analysis", | 23 | "name": "erra-an-r-script-for-ensemble-rainfall-runoff-analysis", | ||
24 | "notes": "ERRA is a data-driven, nonparametric, model-independent | 24 | "notes": "ERRA is a data-driven, nonparametric, model-independent | ||
25 | method for quantifying rainfall-runoff relationships across a spectrum | 25 | method for quantifying rainfall-runoff relationships across a spectrum | ||
26 | of time lags, in systems that may be nonlinear, nonstationary, and | 26 | of time lags, in systems that may be nonlinear, nonstationary, and | ||
27 | spatially heterogeneous.\n\nResearchers using ERRA in published work | 27 | spatially heterogeneous.\n\nResearchers using ERRA in published work | ||
28 | should cite J.W. Kirchner, \"Characterizing nonlinear, nonstationary, | 28 | should cite J.W. Kirchner, \"Characterizing nonlinear, nonstationary, | ||
29 | and heterogeneous hydrologic behavior using Ensemble Rainfall-Runoff | 29 | and heterogeneous hydrologic behavior using Ensemble Rainfall-Runoff | ||
30 | Analysis (ERRA): proof of concept\", Hydrology and Earth System | 30 | Analysis (ERRA): proof of concept\", Hydrology and Earth System | ||
31 | Sciences, 2024 (for ERRA itself) and J.W. Kirchner, \"Impulse response | 31 | Sciences, 2024 (for ERRA itself) and J.W. Kirchner, \"Impulse response | ||
32 | functions for nonlinear, nonstationary, and heterogeneous systems, | 32 | functions for nonlinear, nonstationary, and heterogeneous systems, | ||
33 | estimated by deconvolution and de-mixing of noisy time series\", | 33 | estimated by deconvolution and de-mixing of noisy time series\", | ||
34 | Sensors, 22(9), 3291, https://doi.org/10.3390/s22093291, 2022 (for the | 34 | Sensors, 22(9), 3291, https://doi.org/10.3390/s22093291, 2022 (for the | ||
35 | underlying mathematics). \n\nThis data set includes two versions of | 35 | underlying mathematics). \n\nThis data set includes two versions of | ||
36 | the ERRA script written in the open-source programming language R, a | 36 | the ERRA script written in the open-source programming language R, a | ||
37 | detailed user's guide, and sample scripts and source data for all of | 37 | detailed user's guide, and sample scripts and source data for all of | ||
38 | the results in Kirchner (2024). \n\nThese scripts are made publicly | 38 | the results in Kirchner (2024). \n\nThese scripts are made publicly | ||
39 | available under GNU General Public License 3; for details see | 39 | available under GNU General Public License 3; for details see | ||
40 | https://www.gnu.org/licenses/. The data and documentation are made | 40 | https://www.gnu.org/licenses/. The data and documentation are made | ||
41 | available under Creative Commons Attribution Share-Alike | 41 | available under Creative Commons Attribution Share-Alike | ||
42 | CC-BY-SA.\n\nETH Zurich, WSL, and James Kirchner make ABSOLUTELY NO | 42 | CC-BY-SA.\n\nETH Zurich, WSL, and James Kirchner make ABSOLUTELY NO | ||
43 | WARRANTIES OF ANY KIND, including NO WARRANTIES, expressed or implied, | 43 | WARRANTIES OF ANY KIND, including NO WARRANTIES, expressed or implied, | ||
44 | that this software is free of errors or is suitable for any particular | 44 | that this software is free of errors or is suitable for any particular | ||
45 | purpose. Users are solely responsible for determining the suitability | 45 | purpose. Users are solely responsible for determining the suitability | ||
46 | and reliability of this software for their own purposes.", | 46 | and reliability of this software for their own purposes.", | ||
47 | "num_resources": 3, | 47 | "num_resources": 3, | ||
48 | "num_tags": 8, | 48 | "num_tags": 8, | ||
49 | "organization": { | 49 | "organization": { | ||
50 | "approval_status": "approved", | 50 | "approval_status": "approved", | ||
51 | "created": "2019-08-21T09:46:01.602326", | 51 | "created": "2019-08-21T09:46:01.602326", | ||
52 | "description": "Our research explores environmental systems, often | 52 | "description": "Our research explores environmental systems, often | ||
53 | using approaches developed in physics. Environmental systems often | 53 | using approaches developed in physics. Environmental systems often | ||
54 | encompass physical processes and material properties that are complex, | 54 | encompass physical processes and material properties that are complex, | ||
55 | heterogeneous on all scales, and poorly characterized by direct | 55 | heterogeneous on all scales, and poorly characterized by direct | ||
56 | measurement. Thus we often need to try to understand these systems by | 56 | measurement. Thus we often need to try to understand these systems by | ||
57 | cleverly analyzing how they behave, and by probing their inner | 57 | cleverly analyzing how they behave, and by probing their inner | ||
58 | workings using carefully designed experiments. The spatial | 58 | workings using carefully designed experiments. The spatial | ||
59 | heterogeneity and process complexity of environmental systems imply | 59 | heterogeneity and process complexity of environmental systems imply | ||
60 | that any feasible theory will inevitably involve substantial | 60 | that any feasible theory will inevitably involve substantial | ||
61 | simplifications and generalizations. The essential question in | 61 | simplifications and generalizations. The essential question in | ||
62 | environmental science is which simplifications and generalizations are | 62 | environmental science is which simplifications and generalizations are | ||
63 | the right ones. We seek to answer questions such as:\r\n\r\n- How | 63 | the right ones. We seek to answer questions such as:\r\n\r\n- How | ||
64 | does rainfall become runoff?\r\n- How is the chemistry of natural | 64 | does rainfall become runoff?\r\n- How is the chemistry of natural | ||
65 | waters shaped by subsurface transport and mixing, by chemical | 65 | waters shaped by subsurface transport and mixing, by chemical | ||
66 | reactions with soils and rocks, and by biological processes?\r\n- | 66 | reactions with soils and rocks, and by biological processes?\r\n- | ||
67 | Conversely, what can we learn about these processes at the scale of | 67 | Conversely, what can we learn about these processes at the scale of | ||
68 | the whole landscape, by observing the signals that they impart to | 68 | the whole landscape, by observing the signals that they impart to | ||
69 | streams?\r\n- What processes control rates and patterns of physical | 69 | streams?\r\n- What processes control rates and patterns of physical | ||
70 | erosion and chemical weathering? And how do they, in turn, regulate | 70 | erosion and chemical weathering? And how do they, in turn, regulate | ||
71 | the topographic evolution of mountains and valleys, as well as the | 71 | the topographic evolution of mountains and valleys, as well as the | ||
72 | physical and chemical environment in which we (and all other | 72 | physical and chemical environment in which we (and all other | ||
73 | organisms) live?\r\n\r\nWe explore connections between terrestrial and | 73 | organisms) live?\r\n\r\nWe explore connections between terrestrial and | ||
74 | aquatic environments, and linkages between physical, chemical, and | 74 | aquatic environments, and linkages between physical, chemical, and | ||
75 | biological processes. Our work typically combines field observations, | 75 | biological processes. Our work typically combines field observations, | ||
76 | simple mathematical models, and novel analyses of environmental data. | 76 | simple mathematical models, and novel analyses of environmental data. | ||
77 | ", | 77 | ", | ||
78 | "id": "a0f50b59-e5cc-4280-92f7-897a41648742", | 78 | "id": "a0f50b59-e5cc-4280-92f7-897a41648742", | ||
79 | "image_url": | 79 | "image_url": | ||
80 | ww.ites.ethz.ch/_jcr_content/orgLogo.imageformat.logo.1518520524.jpg", | 80 | ww.ites.ethz.ch/_jcr_content/orgLogo.imageformat.logo.1518520524.jpg", | ||
81 | "is_organization": true, | 81 | "is_organization": true, | ||
82 | "name": "physics-of-environmental-systems", | 82 | "name": "physics-of-environmental-systems", | ||
83 | "state": "active", | 83 | "state": "active", | ||
84 | "title": "Physics of Environmental Systems", | 84 | "title": "Physics of Environmental Systems", | ||
85 | "type": "organization" | 85 | "type": "organization" | ||
86 | }, | 86 | }, | ||
87 | "owner_org": "a0f50b59-e5cc-4280-92f7-897a41648742", | 87 | "owner_org": "a0f50b59-e5cc-4280-92f7-897a41648742", | ||
88 | "private": false, | 88 | "private": false, | ||
89 | "publication": | 89 | "publication": | ||
90 | "{\"publisher\":\"EnviDat\",\"publication_year\":\"2024\"}", | 90 | "{\"publisher\":\"EnviDat\",\"publication_year\":\"2024\"}", | ||
91 | "publication_state": "published", | 91 | "publication_state": "published", | ||
92 | "related_datasets": "Kirchner, J. W. (2022). Impulse response | 92 | "related_datasets": "Kirchner, J. W. (2022). Impulse response | ||
93 | functions for nonlinear nonstationary and heterogeneous systems. | 93 | functions for nonlinear nonstationary and heterogeneous systems. | ||
94 | EnviDat. https://www.doi.org/10.16904/envidat.312.\n\n", | 94 | EnviDat. https://www.doi.org/10.16904/envidat.312.\n\n", | ||
95 | "related_publications": | 95 | "related_publications": | ||
96 | "https://www.dora.lib4ri.ch/wsl/islandora/object/wsl%3A31086\n", | 96 | "https://www.dora.lib4ri.ch/wsl/islandora/object/wsl%3A31086\n", | ||
97 | "relationships_as_object": [], | 97 | "relationships_as_object": [], | ||
98 | "relationships_as_subject": [], | 98 | "relationships_as_subject": [], | ||
99 | "resource_type": "dataset", | 99 | "resource_type": "dataset", | ||
100 | "resource_type_general": "dataset", | 100 | "resource_type_general": "dataset", | ||
101 | "resources": [ | 101 | "resources": [ | ||
102 | { | 102 | { | ||
103 | "cache_last_updated": null, | 103 | "cache_last_updated": null, | ||
104 | "cache_url": null, | 104 | "cache_url": null, | ||
105 | "created": "2024-10-01T09:14:39.022678", | 105 | "created": "2024-10-01T09:14:39.022678", | ||
106 | "description": "Zip-compressed folder containing two versions of | 106 | "description": "Zip-compressed folder containing two versions of | ||
107 | the ERRA script. ERRA_v1.0.R uses Rcpp to speed up several key | 107 | the ERRA script. ERRA_v1.0.R uses Rcpp to speed up several key | ||
108 | calculations, but requires a C++ compiler. ERRA_v1.0_no_Rcpp.R is a | 108 | calculations, but requires a C++ compiler. ERRA_v1.0_no_Rcpp.R is a | ||
109 | bit slower but does not require a C++ compiler or Rcpp. Public use of | 109 | bit slower but does not require a C++ compiler or Rcpp. Public use of | ||
110 | these scripts is permitted under GNU General Public License 3 (GPL3); | 110 | these scripts is permitted under GNU General Public License 3 (GPL3); | ||
111 | for details see <https://www.gnu.org/licenses/>", | 111 | for details see <https://www.gnu.org/licenses/>", | ||
112 | "doi": "", | 112 | "doi": "", | ||
113 | "format": "ZIP", | 113 | "format": "ZIP", | ||
114 | "hash": "", | 114 | "hash": "", | ||
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116 | "last_modified": "2024-10-01T12:05:19.903000", | 116 | "last_modified": "2024-10-01T12:05:19.903000", | ||
117 | "metadata_modified": "2024-10-01T10:05:20.428749", | 117 | "metadata_modified": "2024-10-01T10:05:20.428749", | ||
118 | "mimetype": "application/zip", | 118 | "mimetype": "application/zip", | ||
119 | "mimetype_inner": null, | 119 | "mimetype_inner": null, | ||
120 | "name": "ERRA_scripts.zip", | 120 | "name": "ERRA_scripts.zip", | ||
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128 | "state": "active", | 128 | "state": "active", | ||
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133 | { | 133 | { | ||
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136 | "created": "2024-10-01T09:23:04.740401", | 136 | "created": "2024-10-01T09:23:04.740401", | ||
137 | "description": "Zip-compressed folder containing demonstration | 137 | "description": "Zip-compressed folder containing demonstration | ||
138 | scripts, source data, and output files for the ERRA results shown in | 138 | scripts, source data, and output files for the ERRA results shown in | ||
139 | \"Introduction to ERRA\" and in J.W. Kirchner, \"Characterizing | 139 | \"Introduction to ERRA\" and in J.W. Kirchner, \"Characterizing | ||
140 | nonlinear, nonstationary, and heterogeneous hydrologic behavior using | 140 | nonlinear, nonstationary, and heterogeneous hydrologic behavior using | ||
141 | Ensemble Rainfall-Runoff Analysis (ERRA): proof of concept\", | 141 | Ensemble Rainfall-Runoff Analysis (ERRA): proof of concept\", | ||
142 | Hydrology and Earth System Sciences, 2024.", | 142 | Hydrology and Earth System Sciences, 2024.", | ||
143 | "doi": "", | 143 | "doi": "", | ||
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164 | { | 164 | { | ||
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167 | "created": "2024-10-01T09:37:17.975532", | 167 | "created": "2024-10-01T09:37:17.975532", | ||
168 | "description": "\"An introduction to ERRA\" presents a series of | 168 | "description": "\"An introduction to ERRA\" presents a series of | ||
169 | vignettes that introduce some of the capabilities of the Ensemble | 169 | vignettes that introduce some of the capabilities of the Ensemble | ||
170 | Rainfall-Runoff Analysis (ERRA) script, and that show how to invoke | 170 | Rainfall-Runoff Analysis (ERRA) script, and that show how to invoke | ||
171 | them. This introduction also includes documentation for ERRA function | 171 | them. This introduction also includes documentation for ERRA function | ||
172 | calls, largely reproducing the documentation embedded in the ERRA | 172 | calls, largely reproducing the documentation embedded in the ERRA | ||
173 | script itself.", | 173 | script itself.", | ||
174 | "doi": "", | 174 | "doi": "", | ||
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194 | } | 194 | } | ||
195 | ], | 195 | ], | ||
196 | "spatial": | 196 | "spatial": | ||
197 | 838],[10.49203,47.80838],[10.49203,45.81802],[5.95587,45.81802]]]}]}", | 197 | 838],[10.49203,47.80838],[10.49203,45.81802],[5.95587,45.81802]]]}]}", | ||
198 | "state": "active", | 198 | "state": "active", | ||
199 | "subtitle": "", | 199 | "subtitle": "", | ||
200 | "tags": [ | 200 | "tags": [ | ||
201 | { | 201 | { | ||
202 | "display_name": "ECOHYDROLOGY", | 202 | "display_name": "ECOHYDROLOGY", | ||
203 | "id": "ba7ebeec-bb0a-402e-8281-74816b7e105b", | 203 | "id": "ba7ebeec-bb0a-402e-8281-74816b7e105b", | ||
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206 | "vocabulary_id": null | 206 | "vocabulary_id": null | ||
207 | }, | 207 | }, | ||
208 | { | 208 | { | ||
209 | "display_name": "HYDROLOGY", | 209 | "display_name": "HYDROLOGY", | ||
210 | "id": "349751d2-911c-448a-ab92-e74371696052", | 210 | "id": "349751d2-911c-448a-ab92-e74371696052", | ||
211 | "name": "HYDROLOGY", | 211 | "name": "HYDROLOGY", | ||
212 | "state": "active", | 212 | "state": "active", | ||
213 | "vocabulary_id": null | 213 | "vocabulary_id": null | ||
214 | }, | 214 | }, | ||
215 | { | 215 | { | ||
216 | "display_name": "NONLINEAR DECONVOLUTION", | 216 | "display_name": "NONLINEAR DECONVOLUTION", | ||
217 | "id": "cecdaa4b-e0c8-49fd-b278-2a7ff2cabb00", | 217 | "id": "cecdaa4b-e0c8-49fd-b278-2a7ff2cabb00", | ||
218 | "name": "NONLINEAR DECONVOLUTION", | 218 | "name": "NONLINEAR DECONVOLUTION", | ||
219 | "state": "active", | 219 | "state": "active", | ||
220 | "vocabulary_id": null | 220 | "vocabulary_id": null | ||
221 | }, | 221 | }, | ||
222 | { | 222 | { | ||
223 | "display_name": "NONSTATIONARITY", | 223 | "display_name": "NONSTATIONARITY", | ||
224 | "id": "fe25f5c5-762a-44b4-8c4f-1e5462625da1", | 224 | "id": "fe25f5c5-762a-44b4-8c4f-1e5462625da1", | ||
225 | "name": "NONSTATIONARITY", | 225 | "name": "NONSTATIONARITY", | ||
226 | "state": "active", | 226 | "state": "active", | ||
227 | "vocabulary_id": null | 227 | "vocabulary_id": null | ||
228 | }, | 228 | }, | ||
229 | { | 229 | { | ||
230 | "display_name": "PRECIPITATION", | 230 | "display_name": "PRECIPITATION", | ||
231 | "id": "dba7b369-a028-4ce3-805f-ecbefe796885", | 231 | "id": "dba7b369-a028-4ce3-805f-ecbefe796885", | ||
232 | "name": "PRECIPITATION", | 232 | "name": "PRECIPITATION", | ||
233 | "state": "active", | 233 | "state": "active", | ||
234 | "vocabulary_id": null | 234 | "vocabulary_id": null | ||
235 | }, | 235 | }, | ||
236 | { | 236 | { | ||
237 | "display_name": "RAINFALL-RUNOFF MODELLING", | 237 | "display_name": "RAINFALL-RUNOFF MODELLING", | ||
238 | "id": "5a44820a-1310-42d6-aa74-bceddc4b897f", | 238 | "id": "5a44820a-1310-42d6-aa74-bceddc4b897f", | ||
239 | "name": "RAINFALL-RUNOFF MODELLING", | 239 | "name": "RAINFALL-RUNOFF MODELLING", | ||
240 | "state": "active", | 240 | "state": "active", | ||
241 | "vocabulary_id": null | 241 | "vocabulary_id": null | ||
242 | }, | 242 | }, | ||
243 | { | 243 | { | ||
244 | "display_name": "STREAMFLOW", | 244 | "display_name": "STREAMFLOW", | ||
245 | "id": "86d389e8-3bb0-4d38-80ff-e791f2b7a47c", | 245 | "id": "86d389e8-3bb0-4d38-80ff-e791f2b7a47c", | ||
246 | "name": "STREAMFLOW", | 246 | "name": "STREAMFLOW", | ||
247 | "state": "active", | 247 | "state": "active", | ||
248 | "vocabulary_id": null | 248 | "vocabulary_id": null | ||
249 | }, | 249 | }, | ||
250 | { | 250 | { | ||
251 | "display_name": "TIME SERIES", | 251 | "display_name": "TIME SERIES", | ||
252 | "id": "12734ef1-cbba-4a27-8051-9887596c4d8c", | 252 | "id": "12734ef1-cbba-4a27-8051-9887596c4d8c", | ||
253 | "name": "TIME SERIES", | 253 | "name": "TIME SERIES", | ||
254 | "state": "active", | 254 | "state": "active", | ||
255 | "vocabulary_id": null | 255 | "vocabulary_id": null | ||
256 | } | 256 | } | ||
257 | ], | 257 | ], | ||
258 | "title": "ERRA -- an R script for Ensemble Rainfall-Runoff | 258 | "title": "ERRA -- an R script for Ensemble Rainfall-Runoff | ||
259 | Analysis", | 259 | Analysis", | ||
260 | "type": "dataset", | 260 | "type": "dataset", | ||
t | 261 | "url": null | t | 261 | "url": null, |
262 | "version": "1.0" | ||||
262 | } | 263 | } |