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Related papers: Transverse instability of dunes

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Most terrestrial sand seas form at `horse' latitudes, where the wind direction exhibits seasonal variation. Here, we extend the two-dimensional linear stability analysis of a flat sand bed associated with a unidirectional wind to the…

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

Many complex aspects are involved in the morphodynamics of crescent-shaped dunes, known as barchans. One of them concerns the trajectories of individual grains over the dune, and how they affect its shape. In the case of subaqueous…

Fluid Dynamics · Physics 2019-10-11 Carlos Azael Alvarez , Erick de Moraes Franklin

Barchans are isolated mobile dunes often organized in large dune fields. Dune fields seem to present a characteristic dune size and spacing, which suggests a cooperative behavior based on dune interaction. In Duran et al. (2009), we propose…

Soft Condensed Matter · Physics 2011-05-20 Orencio Durán , Veit Schwämmle , Pedro G. Lind , Hans J. Herrmann

The engineering interest about dune fields is dictated by the their interaction with a number of human infrastructures in arid environments. Sand dunes dynamics is dictated by wind and its ability to induce sand erosion, transport and…

Fluid Dynamics · Physics 2015-02-05 Luca Bruno , Davide Fransos

We use FLUENT to calculate the wind profile over barchans and transverse dunes. The form of the streamlines of flow separation at the lee side of the dunes is determined for a symmetric barchan dune in three dimensions, and for the height…

Statistical Mechanics · Physics 2007-05-23 H. J. Herrmann , J. S. Andrade , V. Schatz , G. Sauermann , E. J. R. Parteli

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

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…

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…

Barchan dunes --- crescent-shaped dunes that form in areas of unidirectional winds and low sand availability --- commonly display an asymmetric shape, with one limb extended downwind. Several factors have been identified as potential causes…

Soft Condensed Matter · Physics 2013-12-03 Eric J. R. Parteli , Orencio Durán , Mary C. Bourke , Haim Tsoar , Thorsten Poeschel , Hans J. Herrmann

We inquire into the morphodynamics of barchans under seasonal flows. For that, we carried out grain-scale numerical computations of a subaqueous barchan exposed to two-directional flows, and we varied the angle and frequency of…

We demonstrate the feasibility of studying dunes in a laboratory experiment. It is shown that an initial sand pile, under a wind flow carrying sand, flattens and gets a shape recalling barchan dunes. An evolution law is proposed for the…

Condensed Matter · Physics 2009-11-07 O. Dauchot , F. Lechenault , C. Gasquet , F. Daviaud

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

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

We present in this paper a simplification of the dune model proposed by Sauermann et al. which keeps the basic mechanisms but allows analytical and parametric studies. Two kinds of purely propagative two dimensional solutions are exhibited:…

Condensed Matter · Physics 2015-06-24 Bruno Andreotti , Philippe Claudin

The dependence of the barchan dune dynamics on the size of the grains involved is investigated experimentally. Downsized barchan dune slices are observed in a narrow water flow tube. The relaxation time from an initial symmetric triangular…

Pattern Formation and Solitons · Physics 2015-05-13 C. Groh , N. Aksel , I. Rehberg , C. Kruelle

Avalanche experiments on an erodible substrate are treated in the framework of ``partial fluidization'' model of dense granular flows. The model identifies a family of propagating soliton-like avalanches with shape and velocity controlled…

Soft Condensed Matter · Physics 2009-11-11 Igor S. Aranson , Florent Malloggi , Eric Clement

In zones of loose sand, wind-blown sand dunes emerge due the linear instability of a flat sedimentary bed. This instability has been studied in experiments and numerical models but rarely in the field, due to the large time and length…

In landscape-scale experiments at the edge of the Gobi desert, we show that various dune types develop simultaneously under natural wind conditions. Using 4 years of high-resolution topographic data, we demonstrate that, depending on sand…

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