A stochastic model for the polygonal tundra based on Poisson–Voronoi diagrams.

dc.contributor.authorCresto-Aleina, Fabio
dc.contributor.authorBrovkin, Victor
dc.contributor.authorMuster, Sina
dc.contributor.authorBoike, Julia
dc.contributor.authorKutzbach, Lars
dc.contributor.authorSachs, Torsten
dc.contributor.authorZuyev, Sergey
dc.coverage.spatialLATITUDE: 72.373760 * LONGITUDE: 126.488430
dc.date.accessioned2019-11-23T02:00:46Z
dc.date.available2019-11-23T02:00:46Z
dc.date.issued2013-08-22
dc.description.abstractSubgrid processes occur in various ecosystems and landscapes but, because of their small scale, they are not represented or poorly parameterized in climate models. These local heterogeneities are often important or even fundamental for energy and carbon balances. This is especially true for northern peatlands and in particular for the polygonal tundra, where methane emissions are strongly influenced by spatial soil heterogeneities. We present a stochastic model for the surface topography of polygonal tundra using Poisson–Voronoi diagrams and we compare the results with available recent field studies. We analyze seasonal dynamics of water table variations and the landscape response under different scenarios of precipitation income. We upscale methane fluxes by using a simple idealized model for methane emission. Hydraulic interconnectivities and large-scale drainage may also be investigated through percolation properties and thresholds in the Voronoi graph. The model captures the main statistical characteristics of the landscape topography, such as polygon area and surface properties as well as the water balance. This approach enables us to statistically relate large-scale properties of the system to the main small-scale processes within the single polygons.
dc.formattext/tab-separated-values, 4 data points
dc.identifierhttps://doi.pangaea.de/10.1594/PANGAEA.818292
dc.identifierhttps://doi.org/10.1594/PANGAEA.818292
dc.identifier.citationCresto-Aleina, Fabio; Brovkin, Victor; Muster, Sina; Boike, Julia; Kutzbach, Lars; Sachs, Torsten; Zuyev, Sergey (2013): A stochastic model for the polygonal tundra based on Poisson–Voronoi diagrams. Earth System Dynamics, 4(2), 187-198, https://doi.org/10.5194/esd-4-187-2013
dc.identifier.urihttps://repository.geologyscience.ru/handle/123456789/7028
dc.language.isoen
dc.publisherPANGAEA
dc.relationOverview image, distance between polygon centroids (URI: hdl:10013/epic.41957.d003)
dc.rightsCC-BY-3.0: Creative Commons Attribution 3.0 Unported
dc.rightsAccess constraints: unrestricted
dc.sourceSupplement to: Cresto-Aleina, Fabio; Brovkin, Victor; Muster, Sina; Boike, Julia; Kutzbach, Lars; Sachs, Torsten; Zuyev, Sergey (2013): A stochastic model for the polygonal tundra based on Poisson–Voronoi diagrams. Earth System Dynamics, 4(2), 187-198, https://doi.org/10.5194/esd-4-187-2013
dc.subjectAWI_PerDyn
dc.subjectFile content
dc.subjectMULT
dc.subjectPermafrost Research (Periglacial Dynamics) @ AWI
dc.subjectSamoylov_Island_Cresto
dc.subjectSamoylov Island, Lena Delta, Siberia
dc.subjectUniform resource locator/link to file
dc.titleA stochastic model for the polygonal tundra based on Poisson–Voronoi diagrams.
dc.title.alternativeWet tundra polygon centers and distance between polygon centroids on Samoylov Island, Lena Delta, Siberia, Russia, with links to shape files
dc.typeDataset

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