Solomon S C, Bullock M A, Grinspoon D H
Department of Terrestrial Magnetism, Carnegie Institution of Washington, 5241 Broad Branch Road, NW, Washington, DC 20015, USA.
Science. 1999 Oct 1;286(5437):87-90. doi: 10.1126/science.286.5437.87.
Tectonics, volcanism, and climate on Venus may be strongly coupled. Large excursions in surface temperature predicted to follow a global or near-global volcanic event diffuse into the interior and introduce thermal stresses of a magnitude sufficient to influence widespread tectonic deformation. This sequence of events accounts for the timing and many of the characteristics of deformation in the ridged plains of Venus, the most widely preserved volcanic terrain on the planet.
金星上的构造运动、火山活动和气候可能紧密相连。预计在全球或近乎全球范围的火山事件之后,地表温度的大幅波动会扩散到内部,并产生足以影响广泛构造变形的热应力。这一系列事件解释了金星上脊状平原(该行星上保存最广泛的火山地形)变形的时间和许多特征。