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Planetary Reorientation

机译:行星定向

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摘要

Planetary bodies can undergo reorientation due to mass redistribution associated with internal or external processes such as convection or impacts. Mass redistribution produces perturbations to the inertia tensor, and the planet must reorient to adjust to the new orientation of themaximum principal axis. The amount of reorientation depends on the competing sizes of the applied load and the remnant bulge. For tidally deformed satellites in synchronous rotation, the slow rotation and correspondingly small remnant bulge makes them prone to reorientation. Reorientation can generate gravity and topography perturbations and large tectonic stresses. Observational constraints based on gravity, tectonic, and paleomagnetic data suggest that many Solar System bodies appear to have undergone significant reorientation.
机译:由于与对流或撞击等内部或外部过程相关的质量重新分布,行星体可能会发生重新定向。质量重新分布会对惯性张量产生扰动,行星必须重新定向以适应最大主轴的新方向。重新定向的数量取决于所施加载荷和残余凸起的竞争尺寸。对于同步旋转的潮汐变形卫星,缓慢的旋转以及相应较小的残余凸起使它们易于重新定向。重新定向会产生重力和地形扰动以及较大的构造应力。基于重力,构造和古磁数据的观测约束表明,许多太阳系物体似乎已经历了重大的重新定向。

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