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Titan's damp ground: Constraints on Titan surface thermal properties from the temperature evolution of the Huygens GCMS inlet

机译:泰坦的潮湿地面:惠更斯GCMS入口的温度变化限制了泰坦表面的热性能

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摘要

A simple thermal model is developed to determine the temperature history of the inlet tube of the Huygens probe gas chromatograph mass spectrometer (GCMS) after its fortuitous emplacement on the surface of Saturn's moon Titan. The model parameters are adjusted to match the recorded temperature history of a nearby heater, taking into account heat losses by conduction to the rest of the probe and to Titan's cold atmosphere. The model suggests that after impact when forced convective cooling ceased, the inlet temperature rose from similar to 110 K to an asymptotic value of only similar to 145 K. This requires that the inlet was embedded in a surface that acted as an effective heat sink, most plausibly interpreted as wet or damp with liquid methane. The data appear inconsistent with a tar or dry, fine-grained surface, and the inlet was not warm enough to devolatilize methane hydrate.
机译:开发了一个简单的热模型,用于确定惠更斯探针气相色谱质谱仪(GCMS)偶然进入土星卫星Titan的入口管的温度历史。调整模型参数以匹配附近加热器记录的温度历史记录,同时考虑到传导到探头其余部分和Titan的冷大气的热量损失。该模型表明,在强制对流冷却停止后的撞击之后,入口温度从近似110 K上升到仅近似于145 K的渐近值。这要求入口被嵌入到充当有效散热器的表面中,最合理地解释为液态甲烷是湿的还是湿的。数据显示与焦油或干燥,细颗粒的表面不一致,并且入口温度不足以使甲烷水合物挥发。

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