Science. 1981 Jul 3;213(4503):62-76. doi: 10.1126/science.213.4503.62.
The style and evolution of tectonics on the terrestrial planets differ substantially. The style is related to the thickness of the lithosphere and to whether the lithosphere is divided into distinct, mobile plates that can be recycled into the mantle, as on Earth, or is a single spherical shell, as on the moon, Mars, and Mercury. The evolution of a planetary lithosphere and the development of plate tectonics appear to be influenced by several factors, including planetary size, chemistry, and external and internal heat sources. Vertical tectonic movement due to lithospheric loading or uplift is similar on all of the terrestrial planets and is controlled by the local thickness and rheology of the lithosphere. The surface of Venus, although known only at low resolution, displays features both similar to those on Earth (mountain belts, high plateaus) and similar to those on the smaller planets (possible impact basins). Improved understanding of the tectonic evolution of Venus will permit an evaluation of the relative roles of planetary size and chemistry in determining evolutionary style.
类地行星的构造样式和演化有很大的不同。这种样式与岩石圈的厚度以及岩石圈是否分为明显的、可移动的板块有关,这些板块可以像在地球上一样被循环到地幔中,或者像在月球、火星和水星上那样是一个单一的球形壳。行星岩石圈的演化和板块构造的发展似乎受到几个因素的影响,包括行星的大小、化学性质以及外部和内部热源。由于岩石圈的加载或抬升而导致的垂直构造运动在所有类地行星上都是相似的,并且受到岩石圈的局部厚度和流变学的控制。金星的表面,尽管只是在低分辨率下被了解,但其显示出与地球相似的特征(山脉带、高原)和与较小行星相似的特征(可能的撞击盆地)。金星构造演化的深入了解将允许评估行星大小和化学在确定演化样式方面的相对作用。