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EARTH - MARS SIMILARITY CRITERIA FOR EXPLORING MARTIAN VEHICLES

机译:探索火星车辆的地球 - 火星相似标准

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In order to select the most efficient kind of a martian exploring vehicle, the similarity criteria are deduced from the equilibrium movement in the terrestrial and martian conditions. Different invariants have been obtained for the existing (entry capsules, parachutes and rovers) and potential martian exploring vehicles (lighter-than-air vehicle, airplane, helicopter and Mars Jumper). These similarity criteria, as non dimensional numbers, allow to quickly compare if such a kind of vehicles can operate in the martian environment, the movement performances, the necessary geometrical dimensions and the power consumption. Following this way of study it was concluded what vehicle is most suitable for the near soil Mars exploration. "Mars Rover" has less power consumption on Mars, but due to the rugged terrain the performances are weak. A vacuumed rigid airship is possible to fly with high performances and endurance on Mars, versus the impossibility of such a machine on the Earth. Due to very low density and the low Reynolds numbers in the Mars atmosphere, the power consumption for the martian airplane or helicopter, is substantial higher. The most efficient vehicle for the Mars exploration it seems to be a machine using the in-situ non-chemical propellants: the 95% CO2 atmosphere and the weak solar radiation. A small compressor, electrically driven by photovoltaics, compresses the gas in a storage tank, in time. If the gas is expanded through a nozzle, sufficient lift and control forces are obtained for a VTOL flight of kilometers over the martian soil, in comparison with tens of meters of the actual Mars rovers.
机译:为了选择最有效的火星探索车辆,相似标准从地面和火星条件中的均衡运动推导出来。已经为现有的(入场胶囊,降落伞和流浪者)和潜在的火星探索车辆(较轻的车辆,飞机,直升机和火星跳线)获得了不同的不变性。这些相似性标准作为非维数,允许快速比较,如果这样的车辆可以在火星环境中操作,运动性能,必要的几何尺寸和功耗。采用这种研究方式,它的结论是哪种车辆最适合近土壤火星勘探。 “火星流浪者”在火星上的功耗较少,但由于坚固的地形,表演疲软。真空的刚性飞艇可以在火星上具有高性能和耐力,而这种机器在地球上的不可能性。由于MARS气氛中的密度和低雷诺数,火星飞机或直升机的功耗很高。 MARS勘探最有效的车辆似乎是一种使用原位非化学推进剂的机器:95%的CO2气氛和弱的太阳辐射。由光伏电动驱动的小型压缩机,在储罐中压缩气体。如果气体通过喷嘴膨胀,则与Martian土壤上的VTOL千里克的VTOL飞行有足够的提升和控制力,相比之下,与数十米的实际火星群体相比。

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