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首页> 外文期刊>Icarus: International Journal of Solar System Studies >Thermal model of water and CO activity of Comet C/1995 O1 (Hale-Bopp)
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Thermal model of water and CO activity of Comet C/1995 O1 (Hale-Bopp)

机译:C / 1995 O1彗星(Hale-Bopp)的水和CO活性的热模型

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An investigation of the activity of Comet C/1995 O1 (Hale-Bopp) with a thermophysical nucleus model that does not rely on the existence of amorphous ice is presented. Our approach incorporates recent observations allowing to constrain important parameters that control cometary activity. The model accounts for heat conduction, heat advection, gas diffusion, sublimation, and condensation in a porous ice-dust matrix with moving boundaries. Erosion due to surface sublimation of water ice leads to a moving boundary. The movement of the boundary is modeled by applying a temperature remapping technique which allows us to account for the loss in the internal energy of the eroded surface material. These kind of problems are commonly referred to as Stefan problems. The model takes into account the diurnal rotation of the nucleus and seasonal effects due to the strong obliquity of Hale-Bopp as reported by Jorda et al. (Jorda, L., Rembor, K., Lecacheux, J., Colom, P., Colas, F., Frappa, E., Lara, L.M. [1997]. Earth Moon Planets 77, 167-180). Only bulk sublimation of water and CO ice are considered without further assumptions such as amorphous ices with certain amount of occluded CO gas. Confined and localized activity patterns are investigated following the reports of Lederer and Campins (Lederer, S.M., Campins, H. [2002]. Earth Moon Planets 90, 381-389) about the chemical heterogeneity of Hale-Bopp and of Bockelée-Morvan et al. (Bockelée-Morvan, D., Henry, F., Biver, N., Boissier, J., Colom, P., Crovisier, J., Despois, D., Moreno, R., Wink, J. [2009]. Astron. Astrophys. 505, 825-843) about a strong CO source at a latitude of 20°. The best fit to the observations of Biver et al. (Biver, N. et al. [2002]. Earth Moon Planets 90, 5-14) is obtained with a low thermal conductivity of 0.01Wm-1K-1. This is in agreement with recent results of the Deep Impact mission to 9P/Tempel 1 (Groussin, O., A'Hearn, M.F., Li, J.-Y., Thomas, P.C., Sunshine, J.M., Lisse, C.M., Meech, K.J., Farnham, T.L., Feaga, L.M., Delamere, W.A. [2007]. Icarus 187, 16-25) and with previous thermal simulations (Kührt, E. [1999]. Space Sci. Rev. 90, 75-82). The water production curve matches the production rates well from -4AU pre-perihelion to the outgoing leg while the model does not reproduce so well the water production beyond 4AU pre-perihelion. The CO production curve is a good fit to the measurements of Biver et al. (2002) over the whole measured heliocentric range from -7AU pre- to 15AU post-perihelion.
机译:用不依赖于无定形冰的热物理核模型研究了彗星C / 1995 O1(Hale-Bopp)的活动。我们的方法结合了最近的观察结果,可以限制控制彗星活动的重要参数。该模型考虑了具有移动边界的多孔冰尘基质中的热传导,热对流,气体扩散,升华和冷凝。水冰表面升华引起的侵蚀导致边界移动。边界的移动是通过应用温度重新映射技术建模的,该技术使我们能够解决被腐蚀表面材料内部能量的损失。这些问题通常称为Stefan问题。该模型考虑到了核的昼夜旋转和由于Hale-Bopp的强烈倾角而引起的季节性影响(如Jorda等人所报道)。 (Jorda,L.,Rembor,K.,Lecacheux,J.,Colom,P.,Colas,F.,Frappa,E.,Lara,L.M. [1997]。Earth Moon Planets 77,167-180)。仅考虑了水和一氧化碳冰的整体升华,而没有进一步的假设,例如带有一定量的二氧化碳气体的无定形冰。根据Lederer和Campins(Lederer,SM,Campins,H. [2002]。Earth Moon Planets 90,381-389)关于Hale-Bopp和Bockelée-Morvan等人的化学异质性的报道,研究了局限性和局限性活动模式。等(Bockelée-Morvan,D.,Henry,F.,Biver,N.,Boissier,J.,Colom,P.,Crovisier,J.,Despois,D.,Moreno,R.,Wink,J。[2009] (Astron。Astrophys。505,825-843)围绕20°纬度的强CO源。最符合Biver等人的观察。 (Biver,N. et al。[2002]。Earth Moon Planets 90,5-14)的导热系数仅为0.01Wm-1K-1。这与9P / Tempel 1的“深度影响”任务的最新结果相一致(Groussin,O.,A'Hearn,MF,Li,J.-Y.,Thomas,PC,Sunshine,JM,Lisse,CM,Meech ,KJ,Farnham,TL,Feaga,LM,Delamere,WA [2007]。Icarus 187,16-25)和先前的热模拟(Kührt,E. [1999]。Space Sci。Rev. 90,75-82)。 。产水曲线与从-4AU前扰动到出支的生产率很好地匹配,而该模型不能很好地再现超过4AU前扰动的产水。一氧化碳生产曲线非常适合Biver等人的测量。 (2002年)在整个测量的日心范围内,从前扰动的-7AU到后扰动的15AU。

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