Wind on Mars is a significant agent of contemporary surface change, yet the absence of in situ meteorological data hampers the understanding of surface–atmospheric interactions. Airflow models at length scales relevant to landform size now enable examination of conditions that might activate even small-scale bedforms (ripples) under certain contemporary wind regimes. Ripples have the potential to be used as modern ‘wind vanes’ on Mars. Here we use 3D airflow modelling to demonstrate that local dune topography exerts a strong influence on wind speed and direction and that ripple movement likely reflects steered wind direction for certain dune ridge shapes. The poor correlation of dune orientation with effective sand-transporting winds sugges...
In recent years aeolian bedforms across the surface of Mars have been monitored, however, the bounda...
As a result of weathering and aeolian processes a fine-grained dark material is distributed all over...
Wind is currently the dominant geological agent acting on the surface of Mars. A study of Martian ae...
Large ripples form striking patterns on the slopes of martian sand dunes which can be mapped and tra...
Wind blowing over sand on Earth produces decimeter-wavelength ripples and hundred-meter– to kilomete...
Active aeolian systems are present across the martian surface, with active dune fields commonly foun...
Active aeolian systems are present across the martian surface, with active dune fields commonly foun...
Change detection analyses of aeolian bedforms (dunes and ripples), using multitemporal images acquir...
In this work, we perform an analysis of large dark dunes within Moreux Crater and Herschel Crater on...
International audienceDunes have similar morphologies on the Earth and Mars. The main differences be...
Strong and sustained winds on Mars have been considered rare, on the basis of surface meteorology me...
Imagery from several Martian orbiters was analyzed in an attempt to discern movement of Martian sand...
Earth's sandy deserts host two main types of bedforms - decimeter-scale ripples and larger dunes. Ye...
Aeolian modification has been a fundamental surface process on Mars throughout the Amazonian. Orient...
Wind has been an enduring geologic agent throughout the history of Mars, but it is often unclear whe...
In recent years aeolian bedforms across the surface of Mars have been monitored, however, the bounda...
As a result of weathering and aeolian processes a fine-grained dark material is distributed all over...
Wind is currently the dominant geological agent acting on the surface of Mars. A study of Martian ae...
Large ripples form striking patterns on the slopes of martian sand dunes which can be mapped and tra...
Wind blowing over sand on Earth produces decimeter-wavelength ripples and hundred-meter– to kilomete...
Active aeolian systems are present across the martian surface, with active dune fields commonly foun...
Active aeolian systems are present across the martian surface, with active dune fields commonly foun...
Change detection analyses of aeolian bedforms (dunes and ripples), using multitemporal images acquir...
In this work, we perform an analysis of large dark dunes within Moreux Crater and Herschel Crater on...
International audienceDunes have similar morphologies on the Earth and Mars. The main differences be...
Strong and sustained winds on Mars have been considered rare, on the basis of surface meteorology me...
Imagery from several Martian orbiters was analyzed in an attempt to discern movement of Martian sand...
Earth's sandy deserts host two main types of bedforms - decimeter-scale ripples and larger dunes. Ye...
Aeolian modification has been a fundamental surface process on Mars throughout the Amazonian. Orient...
Wind has been an enduring geologic agent throughout the history of Mars, but it is often unclear whe...
In recent years aeolian bedforms across the surface of Mars have been monitored, however, the bounda...
As a result of weathering and aeolian processes a fine-grained dark material is distributed all over...
Wind is currently the dominant geological agent acting on the surface of Mars. A study of Martian ae...