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Study of a thermal drill head for the exploration of subsurface planetary ice layers

机译:探索地下行星冰层的热钻头的研究

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The recently discovered water vapor plumes on Saturn's moon Enceladus, the polar caps of planet Mars and the possible ice volcanism on the Jovian satellites call for suitable techniques to explore deep ice layers of the solar system bodies. This paper presents a novel approach to deliver scientific probes into deeper layers of planetary ice. Several existing locomotion concepts and techniques for such probes are presented. After studying the mathematical framework of the melting locomotion process, melting tests with different head forms were done to evaluate the influence of the head's geometry on the melting process. This work led to a novel concept of a thermal drill head, using heat and mechanical drill in combination to penetrate the ice. We compare the performance of such a hybrid concept versus the melting penetration alone by a mathematical model and tests in ice with a prototype of the melting drill head.
机译:最近发现的土星月亮土卫二上的水蒸气羽流,火星的两极帽以及木星卫星可能的冰火山作用,要求采用合适的技术来探索太阳系体的深层冰层。本文提出了一种新颖的方法,可以对行星冰的更深层进行科学探测。提出了用于这种探针的几种现有的运动概念和技术。在研究了熔化运动过程的数学框架之后,进行了不同头部形状的熔化测试,以评估头部几何形状对熔化过程的影响。这项工作导致了热钻头的新颖概念,它结合了热钻和机械钻来穿透冰层。我们通过数学模型将这种混合概念的性能与单独的熔深进行了比较,并在冰上使用了融化钻头的原型进行了测试。

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