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Barchan dunes emerge as a collective phenomena involving the generation of thousands of them in so called barchan dune fields. By measuring the size and position of dunes in Moroccan barchan dune fields, we find that these dunes tend to…

Soft Condensed Matter · Physics 2011-03-29 Orencio Durán , Veit Schwämmle , Pedro G. Lind , Hans J. Herrmann

Barchans are crescentic dunes propagating on a solid ground. They form dune fields in the shape of elongated corridors in which the size and spacing between dunes are rather well selected. We show that even very realistic models for…

Condensed Matter · Physics 2009-11-10 P. Hersen , K. H. Andersen , H. Elbelrhiti , B. Andreotti , P. Claudin , S. Douady

Crescent shaped barchan dunes are highly mobile dunes that are usually presented as a prototypical model of sand dunes. Although they have been theoretically shown to be unstable when considered separately, it is well known that they form…

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…

Soft Condensed Matter · Physics 2013-07-15 S. Worman , A. B. Murray , R. Littlewood , B. Andreotti , P. Claudin

Beautiful dune patterns can be found in deserts and along coasts due to the instability of a plain sheet of sand under the action of the wind. Barchan dunes are highly mobile aeolian dunes found in areas of low sand availability and…

Other Condensed Matter · Physics 2009-11-10 O. Duran , V. Schwaemmle , H. Herrmann

Corridors of size-selected crescent-shaped dunes, known as barchans, are commonly found in water, air, and other planetary environments. The growth of barchans results from the interplay between a fluid flow and a granular bed, but their…

Geophysics · Physics 2021-08-24 Willian Righi Assis , Erick de Moraes Franklin

Barchan dunes are found where sand availability is low and wind direction quite constant. The two dimensional shear stress of the wind field and the sand movement by saltation and avalanches over a barchan dune are simulated. The resulting…

Condensed Matter · Physics 2007-05-23 V. Schwaemmle , H. Herrmann

We apply a mean-field model of interactions between migrating barchan dunes, the CAFE model, which includes spontaneous calving, aggregation, fragmentation, and mass-exchange, yielding a steady-state size distribution that can be resolved…

Geophysics · Physics 2022-08-23 Dominic T Robson , Alessia Annibale , Andreas CW Baas

Barchan dunes, or simply barchans, are crescent-shaped dunes found in diverse environments such as the bottom of rivers, Earth's deserts and the surface of Mars. In a recent paper [Phys. Rev. E 101, 012905 (2020)], we investigated the…

Geophysics · Physics 2021-01-26 Carlos Azael Alvarez Zambrano , Erick de Moraes Franklin

Barchan dunes were found to transform into parabolic dunes and vice versa when the amount of vegetation on and around them changes. This work presents the first numerical simulation of this effect. We propose a continuum model for the…

Other Condensed Matter · Physics 2007-05-23 O. Duran , V. Schatz , H. J. Herrmann , H. Tsoar

Three dimensional dunes of crescentic shape, called barchans, are commonly found on Earth and other planetary environments. In the great majority of cases, barchans are organized in large fields in which corridors of size-selected barchans…

Barchans are dunes of crescentic shape found on Earth, Mars and other celestial bodies, growing usually on polydisperse granular beds. In this Letter, we investigate experimentally the growth of subaqueous barchans consisting of bidisperse…

Barchans are dunes of high mobility which have a crescent shape and propagate under conditions of unidirectional wind. However, sand dunes only appear above a critical size, which scales with the saturation distance of the sand flux [P.…

Other Condensed Matter · Physics 2007-05-23 Eric J. R. Parteli , Orencio Duran , Hans J. Herrmann

Barchans are crescent-shaped sand dunes forming in aride regions with unidirectional wind and limited sand supply. We report analytical and numerical results for dune shapes under different environmental conditions as obtained from the…

Soft Condensed Matter · Physics 2009-11-11 Klaus Kroy , Sebastian Fischer , Benedikt Obermayer

The structure of the barchan field located between Tarfaya and Laayoune (Atlantic Sahara, Morocco) is quantitatively investigated and compared to that in La Pampa de la Joya (Arequipa, Peru). On the basis of field measurements, we show how…

Soft Condensed Matter · Physics 2008-03-10 Hicham Elbelrhiti , Bruno Andreotti , Philippe Claudin

The collision processes of two crescentic dunes called barchans are systematically studied using a simple computer simulation model. The simulated processes, coalescence, ejection and reorganization, qualitatively correspond to those…

Soft Condensed Matter · Physics 2009-11-10 Atsunari Katsuki , Hiraku Nishimori , Noritaka Endo , Keisuke Taniguchi

Barchans are eolian dunes of crescent shape found on Earth, Mars and other celestial bodies. Among the different types of barchan-barchan interaction, there is one, known as chasing, in which the dunes remain close but without touching each…

We investigate the behavior of subaqueous barchans reaching dune-size obstacles by carrying out experiments where we varied the obstacle shape and size, the flow strength, and the grains' properties. We found that a subaqueous barchan can…

Almost fifty years of investigations of barchan dunes morphology and dynamics is reviewed, with emphasis on the physical understanding of these objects. The characteristics measured on the field (shape, size, velocity) and the physical…

Condensed Matter · Physics 2009-11-07 Bruno Andreotti , Philippe Claudin , Stéphane Douady

The dune skeleton model is a reduced model to describe the formation process and dynamics of characteristic types of dunes emerging under unidirectional steady wind. Using this model, we study the dependency of the morphodynamics of…

Pattern Formation and Solitons · Physics 2016-09-09 H. Niiya , A. Awazu , H. Nishimori
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