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When Plates Were Paving Stones 当盘子还是铺路石的时候
Pub Date : 2018-10-09 DOI: 10.1201/9780429498282-12
R. Parker
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引用次数: 0
From Continental Drift to Plate Tectonics 从大陆漂移到板块构造
Pub Date : 2018-10-09 DOI: 10.1201/9780429498282-1
N. Oreskes
SINCE THE l6TH CENTURY, CARTOGRAPHERS HAVE NOTICED THE jigsaw-puzzle fit of the continental edges. Since the 19th century, geologists have known that some fossil plants and animals are extraordinarily similar across the globe, and some sequences of rock formations in distant continents are also strikingly alike. At the turn of the 20th century, Austrian geologist Eduard Suess proposed the theory of Gondwanaland to account for these similarities: that a giant supercontinent had once covered much or all of Earth's surface before breaking apart to form continents and ocean basins. A few years later, German meteorologist Alfred Wegener suggested an alternative explanation: continental drift. The paleontological patterns and jigsaw-puzzle fit could be explained if the continents had migrated across the earth's surface, sometimes joining together, sometimes breaking apart. Wegener argued that for several hundred million years during the late Paleozoic and Mesozoic eras (200 million to 300 million years ago), the continents were united into a supercontinent that he labeled Pangea—all Earth. Continental drift would also explain paleoclimate change, as continents drifted through different climate zones and ocean circulation was altered by the changing distribution of land and sea, while the interactions of rifting and drifting land masses provided a mechanism for the origins of mountains, volcanoes, and earthquakes. Continental drift was not accepted when first proposed, but in the 1960s it became a cornerstone of the new global theory of plate tectonics. The motion of land masses is now explained as a consequence of moving "plates"—large fragments of the earth's surface layer in which the continents are embedded. These plates comprise the upper 45 to 60
自16世纪以来,制图师已经注意到大陆边缘的拼板。自19世纪以来,地质学家已经知道,一些植物和动物化石在全球范围内非常相似,而在遥远的大陆上,一些岩层序列也惊人地相似。在20世纪之交,奥地利地质学家爱德华·苏斯提出了冈瓦纳兰理论来解释这些相似之处:在分裂成大陆和海洋盆地之前,一个巨大的超大陆曾经覆盖了地球的大部分或全部表面。几年后,德国气象学家阿尔弗雷德·韦格纳提出了另一种解释:大陆漂移。如果大陆在地球表面上移动过,有时连在一起,有时分开,那么古生物学模式和拼图游戏就可以得到解释。韦格纳认为,在古生代晚期和中生代(2亿到3亿年前)的几亿年间,大陆联合成一个超大陆,他称之为泛大陆——全地球。大陆漂移也可以解释古气候变化,因为大陆漂移穿过不同的气候带,海洋环流被陆地和海洋分布的变化所改变,而裂谷和漂移大陆块的相互作用为山脉、火山和地震的起源提供了一种机制。大陆漂移最初被提出时并没有被接受,但在20世纪60年代,它成为新的全球板块构造理论的基石。陆地块的运动现在被解释为“板块”运动的结果——板块是地球表层的大块,大陆嵌在其中。这些板块包括上面的45到60
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引用次数: 0
The Zebra Pattern 斑马图案
Pub Date : 2018-10-09 DOI: 10.1201/9780429498282-4
Lawrence W. Morkey
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引用次数: 2
Plate Tectonics: A Martian View 板块构造:火星人的观点
Pub Date : 2018-10-09 DOI: 10.1201/9780429498282-18
D. Sandwell
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引用次数: 0
Locating Earthquakes and Plate Boundaries 定位地震和板块边界
Pub Date : 2018-10-09 DOI: 10.1201/9780429498282-9
B. Bolt
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引用次数: 1
When the Plate Tectonic Revolution Met Western North America 板块构造革命与北美西部相遇
Pub Date : 2018-10-09 DOI: 10.1201/9780429498282-15
T. Atwater
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引用次数: 1
Stripes on the Sea Floor 海底的条纹
Pub Date : 2018-10-09 DOI: 10.1201/9780429498282-2
R. Mason
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引用次数: 2
Heat Flow Under the Oceans 海洋下的热流
Pub Date : 2018-10-09 DOI: 10.1201/9780429498282-8
J. Sclater
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引用次数: 0
Plate Tectonics and Geology, 1965 to Today 板块构造与地质学,1965年至今
Pub Date : 2018-10-09 DOI: 10.1201/9780429498282-14
J. Dewey
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引用次数: 1
On Board the Eltanin-19 在Eltanin-19上
Pub Date : 2018-10-09 DOI: 10.1201/9780429498282-5
Walter Pitman
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引用次数: 0
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Plate Tectonics
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