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On the Flux of Water and Minor Volatiles From the Surface of Comet Nuclei

机译:从彗核表面看水和少量挥发物的通量

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Surface temperature and the available effective energy strongly influence the mass flux of H_2O and minor volatiles from the nucleus. We perform computer simulations to model the gas flux from volatile, icy components in porous ice-dust surfaces, in order to better understand results from observations of comets. Our model assumes a porous body containing dust, one major ice component (H_2O) and up to eight minor components of higher volatility (e. g. CO, CH_4, CH_3OH, HCN, C_2H_2, H_2S). The body's porous structure is modeled as a bundle of tubes with a given tortuosity and an initially constant pore diameter. Heat is conducted by the matrix and carried by the vapors. The model includes radially inward and outward flowing vapor within the body, escape of outward flowing gas from the body, complete depletion of less volatile ices in outer layers, and recondensation of vapor in deeper, cooler layers. From the calculations we obtain temperature profiles and changes in relative chemical abundances, porosity and pore size distribution as a function of depth, and the gas flux into the interior and into the atmosphere for each of the volatiles at various positions of the body in its orbit. In this paper we relate the observed relative molecular abundances in the coma of Comet C/1995 O1 (Hale-Bopp) and of Comet 46P/Wirtanen to molecular fluxes at the surface calculated from our model.
机译:表面温度和可用的有效能量强烈影响H_2O的质量通量和原子核中的少量挥发物。我们执行计算机模拟以模拟来自多孔冰尘表面中挥发性,冰冷成分的气体通量,以便更好地了解彗星观测的结果。我们的模型假设多孔物体包含灰尘,一种主要的冰成分(H_2O)和最多八种较高挥发性的次要成分(例如CO,CH_4,CH_3OH,HCN,C_2H_2,H_2S)。人体的多孔结构被建模为具有给定曲折度和初始恒定孔径的一束管。热量由基体传导并由蒸气携带。该模型包括在体内径向向内和向外流动的蒸气,从体内逸出的向外流动的气体,在外层中完全挥发掉的挥发性较小的冰以及在较深的较冷层中的蒸气再冷凝。从计算中,我们获得温度分布图以及相对化学丰度,孔隙率和孔径分布的变化与深度的关系,以及在其轨道上各个位置处的每种挥发物进入内部和进入大气的气体通量。在本文中,我们将在彗星C / 1995 O1(Hale-Bopp)和彗星46P / Wirtanen彗星中观察到的相对分子丰度与根据我们的模型计算得出的表面分子通量相关。

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