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    • 41. 发明授权
    • Process for bringing a body of water into communication with a tunnel
    • 使水体与隧道相通的过程
    • US4440524A
    • 1984-04-03
    • US263384
    • 1981-05-13
    • Louis Le Therisien
    • Louis Le Therisien
    • E02D29/09E21B43/01E21B43/30E21D9/00E21D13/00E21D13/02F16L1/04E21D10/16
    • E21D9/00E02D29/06E21B43/01E21B43/305E21D13/00
    • The invention is concerned with a process for bringing a body of water into communication with a tunnel extending under the bed of the body of water. A cavity is excavated under the end of the tunnel adjacent the body of water, to a depth such that the volume of the cavity is at least equal to the volume of the ground forming the roof of the cavity and between the cavity and the bed of the body of water. The roof of the cavity is then collapsed and is received in the cavity.The invention is particularly useful in the connection of a pipe placed in the tunnel to an installation or pipe which is eventually immersed. For example a pipe may be provided on the bed of the body of water to be connected to a pipe in the tunnel, the connection being made after the cavity roof has been collapsed by introducing a pipe portion between the ends of the immersed and underground pipes.
    • 本发明涉及一种使水体与在水体的床下延伸的隧道相通的方法。 在隧道的靠近水体的端部的下方挖掘一个空腔,其深度使得空腔的体积至少等于形成空腔顶部和空腔与床之间的空间体积 身体的水。 然后,腔的顶部被折叠并且被容纳在空腔中。 本发明在将隧道中放置的管道连接到最终浸入的设备或管道中是特别有用的。 例如,管道可以设置在水体的床上,以连接到隧道中的管道,该连接是通过在浸没和地下管道的端部之间引入管道部分而折叠起来之后进行的 。
    • 43. 发明授权
    • System for the storage of radioactive material
    • 放射性物质储存系统
    • US4189254A
    • 1980-02-19
    • US917410
    • 1978-06-21
    • Bengt A. Akesson
    • Bengt A. Akesson
    • E21D13/00G21F7/00G21F9/34E02D29/00
    • G21F9/34E21D13/00G21F7/00
    • An underground repository for the storage of radioactive material. The repository consists of an inner cavity surrounded by a shell of rock. The shell of rock is surrounded by a shell of clay, and the body formed by the shells of rock and clay is enclosed in an outer underground cavity. A hollow cylindrical member is placed in an upright position inside the inner cavity. The space inside and outside the cylindrical member is filled with spherical bodies of concrete which are provided with through-going openings. Radioactive material formed into rods is accommodated in the openings in those spherical bodies which are placed in the lower part of the interior of the cylindrical member. The heat developed by the decay of the radioactive material causes air or other fluid inside the inner cavity to circulate upwards through the cylindrical member and downwards through the space between the outside of the cylindrical member and the wall of the inner cavity and through the openings in the spherical bodies and the interstices therebetween.
    • 储存放射性物质的地下储存库。 储存库由一个包围岩石的内腔组成。 岩石外壳被粘土壳包围,由岩石和粘土壳体形成的身体被封闭在一个外部地下洞穴中。 中空圆柱形构件被放置在内腔内的直立位置。 圆柱形构件内部和外部的空间填充有设置有贯穿孔的混凝土球形体。 形成为棒状的放射性物质容纳在放置在筒状部件内部的下部的那些球形体的开口内。 由放射性物质的衰变所产生的热量使得内腔内的空气或其它流体向上循环通过圆柱形构件并向下穿过圆柱形构件的外部和内腔的壁之间的空间, 球体和它们之间的间隙。
    • 47. 发明申请
    • BOTTOM-SIDE SEPARATION OF AN OBJECT TO BE CUT OUT OF STONE
    • US20190085689A1
    • 2019-03-21
    • US16075285
    • 2017-01-27
    • Heindl Energy GmbH
    • Gerd Stenzel
    • E21D13/00E21D1/03E21C25/54
    • There are provided a method for the bottom-side separation of a body which is to be worked out of rock (2000), in which a first part of the bottom surface of the body to be worked out of the rock (2000) is separated by removing the rock (2000) situated below the bottom surface, and a second part of the bottom surface is separated by replacing rock (2000) situated below the bottom surface with a layer system (140, 240, 440, 540) which has two unconnected separating layers (141, 142, 241, 242, 441, 442, 541, 542, 1310, 1320), with the result that the body to be worked out of the rock (2000) is supported in the region of this second part of its bottom surface by the layer system (140, 240, 440, 540), and a system (1000), which is suitable for carrying out such a method, for the bottom-side separation of a body to be worked out of a rock (2000), having an advancing unit (1100) for removing a rock layer, a discharge conveying unit (1200) for conveying away rock (2000) removed by the advancing unit (1100), a laying unit (1300) for laying a first separating layer (1310) and a second separating layer (1320) not connected to the first separating layer (1310), and a filling unit (1400) having at least one concrete feeder (1410) for filling the interspace between the bottom (1421) of the space, which is created by the removal of the rock layer, and the first separating layer (1310) with concrete, having at least one concrete feeder (1430) for filling the interspace between the roof (1441) of the space, which is created by the removal of the rock layer, and the second separating layer (1320) with concrete, and having a formwork (1450).