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    • 10. 发明授权
    • Advanced containment system
    • 高级遏制系统
    • US06802670B2
    • 2004-10-12
    • US10411521
    • 2003-04-14
    • Kevin M. KostelnikHideki KawamuraJohn G. RichardsonMasaru Noda
    • Kevin M. KostelnikHideki KawamuraJohn G. RichardsonMasaru Noda
    • B09B100
    • B09B1/00B09C1/002E02D19/185E02D31/006
    • An advanced containment system for containing buried waste and associated leachate. A trench is dug on either side of the zone of interest containing the buried waste so as to accommodate a micro tunnel boring machine. A series of small diameter tunnels are serially excavated underneath the buried waste. The tunnels are excavated by the micro tunnel boring machine at a consistent depth and are substantially parallel to each other. As tunneling progresses, steel casing sections are connected end to end in the excavated portion of the tunnel so that a steel tube is formed. Each casing section has complementary interlocking structure running its length that interlocks with complementary interlocking structure on the adjacent casing section. Thus, once the first tube is emplaced, placement of subsequent tubes is facilitated by the complementary interlocking structure on the adjacent, previously placed, casing sections.
    • 一个包含埋藏废物和相关渗滤液的先进遏制系统。 在包含埋藏废物的感兴趣区域的任一侧上挖掘沟槽,以容纳微型隧道掘进机。 一系列小直径的隧道在埋藏的废物下方串联挖掘。 隧道由微通道掘进机以一致的深度挖掘,并且彼此基本平行。 随着隧道的进行,钢管套管段在隧道的挖掘部分端对端连接,形成钢管。 每个壳体部分具有互补的互锁结构,其长度与相邻壳体部分上的互补互锁结构互锁。 因此,一旦第一管被放置,随后的管的放置由相邻的,预先放置的套管部分上的互补互锁结构来促进。