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Heated-Atmosphere Airship for the Titan Environment: Thermal Analysis

机译:泰坦环境的加热气氛飞艇:热分析

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Future exploration of Saturn's moon Titan can be carried out by airships. Several lighter-than-atmosphere gas airships and passive drifting heated-atmosphere balloon designs have been studied, but a heated-atmosphere airship could combine the best characteristics of both. This work analyses the thermal design of such a heated-atmosphere vehicle, and compares the result with a lighter-than-atmosphere (hydrogen) airship design. A design tool was created to enable iteration through different design parameters of a heated-atmosphere airship (diameter, number of layers, and insulating gas pocket thicknesses) and evaluate the feasibility of the resulting airship. A baseline heated-atmosphere airship was designed to have a diameter of 6 m (outer diameter of 6.2 m), 3 layers of material, and an insulating gas pocket thickness of 0.05 m between each layer. The heated-atmosphere airship has a mass of 161.9 kg. A similar mission making use of a hydrogen-filled airship would require a diameter of 4.3 m and a mass of about 200 kg. For a long-duration mission, the heated-atmosphere airship appears better suited. However, for a mission lifetime under 180 days, the less complex hydrogen airship would likely be a better option.
机译:土星的卫星土卫六的未来探索可以通过飞艇进行。几个比大气轻的气体飞艇和被动漂流加热大气气球的设计进行了研究,但加热大气飞艇可以结合两者的最佳特性。这项工作分析这样的加热气氛车辆的热设计,并且将结果与比气氛轻的(氢)飞艇设计进行比较。设计工具的建立是为了使通过加热气氛的飞艇不同的设计参数(直径,层的绝缘气体口袋厚度号码,和)迭代和评价所得到的飞艇的可行性。基线加热气氛飞艇被设计为具有的直径为6米(6.2米外径),材料的3层,并且每一层之间0.05米绝缘气体口袋厚度。被加热的气氛飞艇具有161.9公斤的质量。类似的任务利用氢填充的飞艇的需要的直径为4.3微米,约200kg的质量。对于一个长时间的任务,加热大气飞艇似乎更适合。然而,在180天的使命寿命,不太复杂的氢气飞艇将可能是一个更好的选择。

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