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On October 22, 2024, 9:47:06 AM UTC,
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Added resource EDFig4_v20210416.zip to Simple feedback explains complex channel patterns in coastal wetlands (Chapter 3 in PhD thesis Roeland C. van de Vijsel)
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| 2 | "author": null, | 2 | "author": null, | ||
| 3 | "author_email": null, | 3 | "author_email": null, | ||
| 4 | "code": "7b.b.tb", | 4 | "code": "7b.b.tb", | ||
| 5 | "contributor": "NIOZ Royal Netherlands Institute for Sea Research", | 5 | "contributor": "NIOZ Royal Netherlands Institute for Sea Research", | ||
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| 7 | "creators": "[{\"firstname\":\"Roeland C.\",\"lastname\":\"van de | 7 | "creators": "[{\"firstname\":\"Roeland C.\",\"lastname\":\"van de | ||
| 8 | Vijsel\",\"affiliation\":\"Royal Netherlands Institute for Sea | 8 | Vijsel\",\"affiliation\":\"Royal Netherlands Institute for Sea | ||
| 9 | scorrespondingauthor\":true},{\"firstname\":\"Jim\",\"lastname\":\"van | 9 | scorrespondingauthor\":true},{\"firstname\":\"Jim\",\"lastname\":\"van | ||
| 10 | Belzen\",\"affiliation\":\"Royal Netherlands Institute for Sea | 10 | Belzen\",\"affiliation\":\"Royal Netherlands Institute for Sea | ||
| 11 | ddress\":\"\",\"iscorrespondingauthor\":false},{\"firstname\":\"Tjeerd | 11 | ddress\":\"\",\"iscorrespondingauthor\":false},{\"firstname\":\"Tjeerd | ||
| 12 | J.\",\"lastname\":\"Bouma\",\"affiliation\":\"Royal Netherlands | 12 | J.\",\"lastname\":\"Bouma\",\"affiliation\":\"Royal Netherlands | ||
| 13 | Institute for Sea | 13 | Institute for Sea | ||
| 14 | respondingauthor\":false},{\"firstname\":\"Daphne\",\"lastname\":\"van | 14 | respondingauthor\":false},{\"firstname\":\"Daphne\",\"lastname\":\"van | ||
| 15 | der Wal\",\"affiliation\":\"Royal Netherlands Institute for Sea | 15 | der Wal\",\"affiliation\":\"Royal Netherlands Institute for Sea | ||
| 16 | iladdress\":\"\",\"iscorrespondingauthor\":false},{\"firstname\":\"Bas | 16 | iladdress\":\"\",\"iscorrespondingauthor\":false},{\"firstname\":\"Bas | ||
| 17 | W.\",\"lastname\":\"Borsje\",\"affiliation\":\"University of | 17 | W.\",\"lastname\":\"Borsje\",\"affiliation\":\"University of | ||
| 18 | me\":\"Stijn\",\"lastname\":\"Temmerman\",\"affiliation\":\"University | 18 | me\":\"Stijn\",\"lastname\":\"Temmerman\",\"affiliation\":\"University | ||
| 19 | of | 19 | of | ||
| 20 | tname\":\"Loreta\",\"lastname\":\"Cornacchia\",\"affiliation\":\"Royal | 20 | tname\":\"Loreta\",\"lastname\":\"Cornacchia\",\"affiliation\":\"Royal | ||
| 21 | Netherlands Institute for Sea | 21 | Netherlands Institute for Sea | ||
| 22 | rrespondingauthor\":false},{\"firstname\":\"Johan\",\"lastname\":\"van | 22 | rrespondingauthor\":false},{\"firstname\":\"Johan\",\"lastname\":\"van | ||
| 23 | de Koppel\",\"affiliation\":\"Royal Netherlands Institute for Sea | 23 | de Koppel\",\"affiliation\":\"Royal Netherlands Institute for Sea | ||
| 24 | 275\",\"contactemailaddress\":\"\",\"iscorrespondingauthor\":false}]", | 24 | 275\",\"contactemailaddress\":\"\",\"iscorrespondingauthor\":false}]", | ||
| 25 | "dataset_persistent_id": "DOI:10.33591/nioz/7b.b.tb", | 25 | "dataset_persistent_id": "DOI:10.33591/nioz/7b.b.tb", | ||
| 26 | "dates": | 26 | "dates": | ||
| 27 | 21-04-15T22:00:00.000Z\",\"type\":\"collected\",\"information\":\"This | 27 | 21-04-15T22:00:00.000Z\",\"type\":\"collected\",\"information\":\"This | ||
| 28 | is the entire dataset belonging to Chapter 3 of the PhD Thesis of | 28 | is the entire dataset belonging to Chapter 3 of the PhD Thesis of | ||
| 29 | Roeland C. van de Vijsel | 29 | Roeland C. van de Vijsel | ||
| 30 | (https://doi.org/10.33612/diss.160081233).\"}]", | 30 | (https://doi.org/10.33612/diss.160081233).\"}]", | ||
| 31 | "deposit_date": "2021-03-18", | 31 | "deposit_date": "2021-03-18", | ||
| 32 | "depositor": "Roeland van de Vijsel", | 32 | "depositor": "Roeland van de Vijsel", | ||
| 33 | "distribution_date": "2021-03-18", | 33 | "distribution_date": "2021-03-18", | ||
| 34 | "distributor": "Research Data Management(NIOZ Royal Netherlands | 34 | "distributor": "Research Data Management(NIOZ Royal Netherlands | ||
| 35 | Institute for Sea Research)", | 35 | Institute for Sea Research)", | ||
| 36 | "doi_date_published": "2023-11-22", | 36 | "doi_date_published": "2023-11-22", | ||
| 37 | "funding_references": "[{\"name\":\"Netherlands Organisation for | 37 | "funding_references": "[{\"name\":\"Netherlands Organisation for | ||
| 38 | Scientific Research | 38 | Scientific Research | ||
| 39 | (NWO)\",\"awardnumber\":\"869.15.003\",\"awardtitle\":\"The New | 39 | (NWO)\",\"awardnumber\":\"869.15.003\",\"awardtitle\":\"The New | ||
| 40 | Delta\"},{\"name\":\"Vlaams-Nederlandse Scheldecommissie | 40 | Delta\"},{\"name\":\"Vlaams-Nederlandse Scheldecommissie | ||
| 41 | (VNSC)\",\"awardnumber\":\"3109 1805\",\"awardtitle\":\"Vegetation | 41 | (VNSC)\",\"awardnumber\":\"3109 1805\",\"awardtitle\":\"Vegetation | ||
| 42 | modelling HPP\"}]", | 42 | modelling HPP\"}]", | ||
| 43 | "groups": [], | 43 | "groups": [], | ||
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| 51 | "name": "7bbtb", | 51 | "name": "7bbtb", | ||
| 52 | "notes": "Spatial patterns are omnipresent in nature | 52 | "notes": "Spatial patterns are omnipresent in nature | ||
| 53 | (Rodriguez-Iturbe and Rinaldo, 1997; Kondo, 2002; Meinhardt, 2003; | 53 | (Rodriguez-Iturbe and Rinaldo, 1997; Kondo, 2002; Meinhardt, 2003; | ||
| 54 | Rietkerk and van de Koppel, 2008; Petit and Anfodillo, 2009) and | 54 | Rietkerk and van de Koppel, 2008; Petit and Anfodillo, 2009) and | ||
| 55 | directly affect the functioning and resilience of the (eco)systems in | 55 | directly affect the functioning and resilience of the (eco)systems in | ||
| 56 | which they manifest themselves (Rietkerk et al., 2004; van de Koppel | 56 | which they manifest themselves (Rietkerk et al., 2004; van de Koppel | ||
| 57 | et al., 2005; Weerman et al., 2010; Liu et al., 2014b). | 57 | et al., 2005; Weerman et al., 2010; Liu et al., 2014b). | ||
| 58 | Scale-dependent feedback, which typically is positive nearby and | 58 | Scale-dependent feedback, which typically is positive nearby and | ||
| 59 | negative further away, provides a widely accepted explanation for the | 59 | negative further away, provides a widely accepted explanation for the | ||
| 60 | formation of simple, single-scale patterns (Meinhardt, 2003; Rietkerk | 60 | formation of simple, single-scale patterns (Meinhardt, 2003; Rietkerk | ||
| 61 | and van de Koppel, 2008; Petit and Anfodillo, 2009). However, it is | 61 | and van de Koppel, 2008; Petit and Anfodillo, 2009). However, it is | ||
| 62 | unclear whether the more complex, multi-scale patterns that | 62 | unclear whether the more complex, multi-scale patterns that | ||
| 63 | characterize many natural systems can be explained by equally generic | 63 | characterize many natural systems can be explained by equally generic | ||
| 64 | mechanisms. As a model system, we here study the tidal channels that | 64 | mechanisms. As a model system, we here study the tidal channels that | ||
| 65 | characterize coastal wetlands (Hughes, 2012), as these channels | 65 | characterize coastal wetlands (Hughes, 2012), as these channels | ||
| 66 | constitute patterns that vary greatly in geometry, ranging from simple | 66 | constitute patterns that vary greatly in geometry, ranging from simple | ||
| 67 | parallel channels (Temmerman et al., 2007; Weerman et al., 2010; van | 67 | parallel channels (Temmerman et al., 2007; Weerman et al., 2010; van | ||
| 68 | de Vijsel et al., 2020) to complexly branching networks | 68 | de Vijsel et al., 2020) to complexly branching networks | ||
| 69 | (Rodriguez-Iturbe and Rinaldo, 1997; Rinaldo et al., 1999), with | 69 | (Rodriguez-Iturbe and Rinaldo, 1997; Rinaldo et al., 1999), with | ||
| 70 | direct consequences for the functioning and resilience of valuable | 70 | direct consequences for the functioning and resilience of valuable | ||
| 71 | wetland ecosystems. We reveal that the broad spectrum of geometries | 71 | wetland ecosystems. We reveal that the broad spectrum of geometries | ||
| 72 | typical for tidal channel patterns can be explained by one | 72 | typical for tidal channel patterns can be explained by one | ||
| 73 | scale-dependent feedback. This is a biogeomorphic feedback that | 73 | scale-dependent feedback. This is a biogeomorphic feedback that | ||
| 74 | roughly follows Turing\u2019s activator-inhibitor principle (Rietkerk | 74 | roughly follows Turing\u2019s activator-inhibitor principle (Rietkerk | ||
| 75 | and van de Koppel, 2008) and results from flow deflection and channel | 75 | and van de Koppel, 2008) and results from flow deflection and channel | ||
| 76 | incision around biotically (biofilms, algae, plants) stabilized | 76 | incision around biotically (biofilms, algae, plants) stabilized | ||
| 77 | sediment (Temmerman et al., 2007; Weerman et al., 2010; van de Vijsel | 77 | sediment (Temmerman et al., 2007; Weerman et al., 2010; van de Vijsel | ||
| 78 | et al., 2020). Using a mathematical model, we now show that as the | 78 | et al., 2020). Using a mathematical model, we now show that as the | ||
| 79 | biogeomorphic feedback gets stronger, complex multi-scale patterns | 79 | biogeomorphic feedback gets stronger, complex multi-scale patterns | ||
| 80 | emerge due to self-induced recursion of the scale-dependent feedback, | 80 | emerge due to self-induced recursion of the scale-dependent feedback, | ||
| 81 | which results in nesting of regular channel patterns at successively | 81 | which results in nesting of regular channel patterns at successively | ||
| 82 | finer scales. This recursive mechanism provides an explanation for | 82 | finer scales. This recursive mechanism provides an explanation for | ||
| 83 | poorly understood geometric properties of real-world tidal networks | 83 | poorly understood geometric properties of real-world tidal networks | ||
| 84 | (Rinaldo et al., 1999). We further find that increased network | 84 | (Rinaldo et al., 1999). We further find that increased network | ||
| 85 | complexity directly translates to enhanced drainage efficiency, | 85 | complexity directly translates to enhanced drainage efficiency, | ||
| 86 | sediment accretion rates and ecosystem productivity. These results | 86 | sediment accretion rates and ecosystem productivity. These results | ||
| 87 | highlight the vital importance of network complexity for the | 87 | highlight the vital importance of network complexity for the | ||
| 88 | functioning of coastal wetlands, ultimately determining their | 88 | functioning of coastal wetlands, ultimately determining their | ||
| 89 | resilience to sea level rise (Kirwan and Megonigal, 2013) and storm | 89 | resilience to sea level rise (Kirwan and Megonigal, 2013) and storm | ||
| 90 | surge buffering capacity (Temmerman et al., 2013), and with that their | 90 | surge buffering capacity (Temmerman et al., 2013), and with that their | ||
| 91 | potential to mitigate the effects of global change that threaten | 91 | potential to mitigate the effects of global change that threaten | ||
| 92 | densely populated coastal lowlands worldwide.", | 92 | densely populated coastal lowlands worldwide.", | ||
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| 140 | "tags": [ | 162 | "tags": [ | ||
| 141 | { | 163 | { | ||
| 142 | "display_name": "Coastal wetlands tidal flat tidal marsh tidal | 164 | "display_name": "Coastal wetlands tidal flat tidal marsh tidal | ||
| 143 | channel networks self-organization complexity mathema", | 165 | channel networks self-organization complexity mathema", | ||
| 144 | "id": "0b2abfbd-2173-4c2d-a5fa-fd948cb5e086", | 166 | "id": "0b2abfbd-2173-4c2d-a5fa-fd948cb5e086", | ||
| 145 | "name": "Coastal wetlands tidal flat tidal marsh tidal channel | 167 | "name": "Coastal wetlands tidal flat tidal marsh tidal channel | ||
| 146 | networks self-organization complexity mathema", | 168 | networks self-organization complexity mathema", | ||
| 147 | "state": "active", | 169 | "state": "active", | ||
| 148 | "vocabulary_id": null | 170 | "vocabulary_id": null | ||
| 149 | } | 171 | } | ||
| 150 | ], | 172 | ], | ||
| 151 | "title": "Simple feedback explains complex channel patterns in | 173 | "title": "Simple feedback explains complex channel patterns in | ||
| 152 | coastal wetlands (Chapter 3 in PhD thesis Roeland C. van de Vijsel)", | 174 | coastal wetlands (Chapter 3 in PhD thesis Roeland C. van de Vijsel)", | ||
| 153 | "type": "dataset", | 175 | "type": "dataset", | ||
| 154 | "url": "https://dataportal.nioz.nl/doi/10.33591/nioz/7b.b.tb", | 176 | "url": "https://dataportal.nioz.nl/doi/10.33591/nioz/7b.b.tb", | ||
| 155 | "version": "1" | 177 | "version": "1" | ||
| 156 | } | 178 | } |