It is well documented that Mars is totally engulfed in huge dust storms nearly each Martian year. Dust elevated in these global dust storms, or in any of the numerous local dust storms could settle on photovoltaic surfaces and seriously hamper photovoltaic power system performance. Using a recently developed technique to uniformly dust simulated photovoltaic surfaces, samples were subjected to Martian-like winds in an attempt to determine whether natural aeolian processes on Mars would sweep off the settled dust. The effects of wind velocity, angle of attack, height off the Martian surface, and surface coating material were investigated. Principles which can help to guide the design of photovoltaic arrays bound for the Martian surface were ...
The environment on the surface of Mars is different in several critical ways from the orbital enviro...
Solar energy is likely to be an important power source for surface-based operation on Mars. Photovol...
International audienceThe degradation in electrical output of solar arrays on Mars landers and rover...
Dust elevated in local or global dust storms on the Martian surface could settle on photovoltaic (PV...
Photovoltaic (PV) coverslip material was subjected to Maritan dust storm conditions using basaltic d...
Glass coverglass and SiO2 covered and uncovered silicon photovoltaic (PV) cells were subjected to co...
Missions to Mars will require electric power. A leading candidate for providing power is solar power...
Simulated radiator surfaces made of arc-textured Cu and Nb-1 percent-Zr and ion beam textured graphi...
Here we investigate the effects of erosion and weathering that occur on III-V cover-glass interconne...
Mars is a dusty planet. Will dust accumulation on solar arrays be a problem for large solar power sy...
Aeolian processes are important in modifying the surface of Mars at present, and appear to have been...
The Materials Adherence Experiment on the Mars Pathfinder mission measured an obscuration of the sol...
A photovoltaic power source for surface-based operation on Mars can offer many advantages. Detailed ...
An artificial mineral of the approximate elemental composition of Martian soil was manufactured, cru...
Aeolian activity was predicted for Mars from earth based observations of changing surface patterns t...
The environment on the surface of Mars is different in several critical ways from the orbital enviro...
Solar energy is likely to be an important power source for surface-based operation on Mars. Photovol...
International audienceThe degradation in electrical output of solar arrays on Mars landers and rover...
Dust elevated in local or global dust storms on the Martian surface could settle on photovoltaic (PV...
Photovoltaic (PV) coverslip material was subjected to Maritan dust storm conditions using basaltic d...
Glass coverglass and SiO2 covered and uncovered silicon photovoltaic (PV) cells were subjected to co...
Missions to Mars will require electric power. A leading candidate for providing power is solar power...
Simulated radiator surfaces made of arc-textured Cu and Nb-1 percent-Zr and ion beam textured graphi...
Here we investigate the effects of erosion and weathering that occur on III-V cover-glass interconne...
Mars is a dusty planet. Will dust accumulation on solar arrays be a problem for large solar power sy...
Aeolian processes are important in modifying the surface of Mars at present, and appear to have been...
The Materials Adherence Experiment on the Mars Pathfinder mission measured an obscuration of the sol...
A photovoltaic power source for surface-based operation on Mars can offer many advantages. Detailed ...
An artificial mineral of the approximate elemental composition of Martian soil was manufactured, cru...
Aeolian activity was predicted for Mars from earth based observations of changing surface patterns t...
The environment on the surface of Mars is different in several critical ways from the orbital enviro...
Solar energy is likely to be an important power source for surface-based operation on Mars. Photovol...
International audienceThe degradation in electrical output of solar arrays on Mars landers and rover...