Modeling the large-scale structure of a barchan dune field
S. Worman, A.B.Murray, R. Littlewood, B. Andreotti, P. Claudin

TL;DR
This paper presents a numerical model demonstrating how simple interactions among barchan dunes can spontaneously produce large-scale field structures, explaining observed patterns without external patterning influences.
Contribution
The study introduces a novel discrete interaction model for barchan dunes that accounts for sand flux, calving, and merging, revealing how these processes generate realistic dune field patterns.
Findings
Dune interactions can produce heterogeneous field structures.
Field characteristics depend on upwind sand flux.
Dune patterns tend to a common state downwind.
Abstract
In nature, barchan dunes typically exist as members of larger fields that display striking, enigmatic structures that cannot be readily explained by examining the dynamics at the scale of single dunes, or by appealing to patterns in external forcing. To explore the possibility that observed structures emerge spontaneously as a collective result of many dunes interacting with each other, we built a numerical model that treats barchans as discrete entities that interact with one another according to simplified rules derived from theoretical and numerical work and from field observations: (1) Dunes exchange sand through the fluxes that leak from the downwind side of each dune and are captured on their upstream sides; (2) when dunes become sufficiently large, small dunes are born on their downwind sides (`calving'); and (3) when dunes collide directly enough, they merge. Results show that…
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Taxonomy
TopicsAeolian processes and effects · Geology and Paleoclimatology Research · Soil erosion and sediment transport
