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首页> 外文期刊>Planetary and space science >Interfacial Tension-Driven Differentiation-(ITDD) may result in a low-density central region inside kilometer-sized bodies
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Interfacial Tension-Driven Differentiation-(ITDD) may result in a low-density central region inside kilometer-sized bodies

机译:界面张力驱动微分(ITDD)可能会导致千米大小的物体内部出现低密度的中心区域

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Interfacial Tension-Driven Differentiation, (ITDD), and its possible significance with regards to the interior structures of kilometer-sized bodies is discussed. Using a simple physical and geometrical model, an analytical expression for the conditions in which ITDD can occur is derived. It is shown that ITDD coupled with internal convection can lead to a counterintuitive result: that central regions may be less dense than outer regions in km-sized, initially melted bodies. ITDD offers an alternative explanation to the formation of microporosity inside of small bodies, (e.g. Churyumov-Gerasimenko-like objects), as well as macroporosity, which is suggested to occur in the interior of Mars' larger satellite Phobos, without recourse to rubble-pile models. Depending on the development of the velocity boundary layer at the solidification front, ITDD allows not just the possibility of central porosity, but also more complex scenarios, such as the formation of internal porosity rings. (c) 2016 Elsevier Ltd. All rights reserved.
机译:讨论了界面张力驱动的微分法(ITDD)及其对千米大小物体内部结构的可能意义。使用简单的物理和几何模型,可以得出可能发生ITDD的条件的解析表达式。结果表明,ITDD与内部对流耦合会导致反直觉的结果:在km大小的最初熔化的物体中,中心区域的密度可能小于外部区域。 ITDD为小物体(例如Churyumov-Gerasimenko之类的物体)内部的微孔形成以及大孔提供了另一种解释,这种大孔被建议发生在火星较大的卫星火卫一内部,而无需借助瓦砾。桩模型。取决于凝固前沿速度边界层的发展,ITDD不仅允许出现中心孔隙,而且还允许更复杂的情况,例如内部孔隙环的形成。 (c)2016 Elsevier Ltd.保留所有权利。

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