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Heated-Atmosphere Airship for the Titan Environment: Thermal Analysis

机译:泰坦环境中的热大气飞艇: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由飞艇来进行。已经研究了几种比大气轻的气体飞艇和被动漂移的热大气气球设计,但是热大气飞艇可以兼具两者的最佳特性。这项工作分析了这种加热大气飞行器的热设计,并将结果与​​比大气(氢气)轻的飞艇设计进行了比较。创建了一种设计工具,可以通过加热大气飞艇的不同设计参数(直径,层数和绝缘气袋厚度)进行迭代,并评估最终飞艇的可行性。基线加热大气飞艇的直径设计为6 m(外径为6.2 m),材料为3层,每层之间的隔热气穴厚度为0.05 m。大气加热飞艇的质量为161.9千克。使用充氢飞艇的类似任务将需要直径4.3 m和质量约200 kg。对于长期任务,加热大气飞艇似乎更适合。但是,对于任务寿命不足180天的情况,不太复杂的氢气飞艇可能是一个更好的选择。

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