Through the earth’s crust
✏️[Exercise] 📖[Classic Textbook] 📝[Notes]




Satellites orbiting round the earth have provided scientists with a vast amount of information about conditions in outer space. By comparison, relatively little is known about the internal structure of the earth. It has proved easier to go up than to go down. The deepest hole ever to be bored on land went down 25,340 feet-- considerably less than the height of Mount Everest. Drilling a hole under the sea has proved to be even more difficult. The deepest hole bored under sea has been about 20,000 feet. Until recently, scientists have been unable to devise a drill which would be capable of cutting through hard rock at great depths. This problem has now been solved. Scientists have developed a method which sounds surprisingly simple. A new drill which is being tested at Leona Valley Ranch in Texas is driven by a turbine engine which is propelled by liquid mud pumped into it from the surface. As the diamond tip of the drill revolves, it is lubricated by mud. Scientists have been amazed to find that it can cut through the hardest rock with great ease. The drill has been designed to bore through the earth to a depth of 35,000 feet. It will enable scientists to obtain samples of the mysterious layer which lies immediately below the earth's crust. This layer is known as the Mohorovicic Discontinuity, but is commonly referred to as 'the Moho'.

Before it is possible to drill this deep hole, scientists will have to overcome a number of problems. Geological tests will be carried out to find the point at which the earth's crust is thinnest. The three possible sites which are being considered are all at sea: two in the Atlantic Ocean and one in the Pacific. Once they have determined on a site, they will have to erect a drilling vessel which will not be swept away by ocean currents. The vessel will consist of an immense platform which will rise to 70 feet above the water. It will be supported by six hollow columns which will descend to a depth of 60 feet below the ocean surface where they will be fixed to a huge float. A tall steel tower rising to a height of nearly 200 feet will rest on the platform. The drill will be stored in the tower and will have to be lowered through about 15,000 feet of water before operations can begin. Within the tower, there will be a laboratory, living accommodation and a helicopter landing station. Keeping the platform in position at sea will give rise to further problems. To do this, scientists will have to devise methods using radar and underwater television. If, during the operations the drill has to be withdrawn, it must be possible to re-insert it. Great care will therefore have to be taken to keep the platform steady and make it strong enough to withstand hurricanes. If the project is successful, scientists will not only learn a great deal about the earth, but possibly about the nature of the universe itself.

Translation

环绕地球运行的卫星为科学家提供了大量有关外层空间状况的信息。相比之下,对地球内部结构的了解相对较少。事实证明,上升比下降容易。陆地上有史以来钻的最深的洞深约25340英尺,远低于珠穆朗玛峰的高度。事实证明,在海底钻一个洞更加困难。在海底钻的最深的洞深约20000英尺。直到最近,科学家们还无法设计出一种能够在很深的地方钻穿坚硬岩石的钻头。这个问题现在已经解决了。科学家们已经开发出一种听起来非常简单的方法。德克萨斯州利昂纳山谷牧场正在测试的一种新钻机由涡轮发动机驱动,涡轮发动机由从地面泵入的液体泥浆推动。当钻头的金刚石尖端旋转时,它由泥浆润滑。科学家们惊奇地发现它能轻而易举地穿过最坚硬的岩石。该钻机的设计目的是钻入地面35000英尺以下的深度。这将使科学家们能够获得地壳正下方神秘层的样本。该层被称为莫霍不连续面,但通常被称为“莫霍面”。

在钻这个深孔之前,科学家们必须克服许多问题。将进行地质测试以找到地壳最薄的点。正在考虑的三个可能地点都在海上:两个在大西洋,一个在太平洋。一旦他们确定了地点,他们将不得不建造一艘不会被洋流冲走的钻井船。该船将由一个巨大的平台组成,平台将高出水面70英尺。它将由六根空心立柱支撑,这些立柱将下降到海面以下60英尺的深度,并固定在一个巨大的浮子上。一座高达近200英尺的钢塔将停在平台上。钻孔机将储存在塔中,在开始作业之前,必须将其降低到约15000英尺的水中。塔内将有一个实验室、起居室和一个直升机降落站。保持平台在海上的位置将产生进一步的问题。要做到这一点,科学家们必须设计出使用雷达和水下电视的方法。如果在操作过程中必须取出钻头,则必须能够重新插入。因此,必须非常小心地保持平台稳定,使其足够坚固,能够抵御飓风。如果这个项目成功,科学家们不仅会对地球有很多了解,而且可能会对宇宙本身的性质有很多了解。

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