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Qinghai-Xizang Railroad Construction in Permafrost Regions

机译:多年冻土地区的青藏铁路建设

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Construction of the Qinghai-Xizang Railroad (QXR) in permafrost regions presents a number of significant engineering problems. The engineering properties of permafrost can vary greatly, and climate warming, especially warm permafrost with high ice content, must be considered. Permafrost warming could induce ground ice thaw, producing embankment settlement. Consequently, thermal stability is a key consideration for the QXR construction in permafrost regions. In order to ensure permafrost thermal stability under the background of climate warming, ideas of embankment cooling to preventing permafrost change are proposed. Many methods of embankment cooling have been proposed to prevent the thawing of ground ice. For example, block-stone embankment, block and debris slope protected, thermosyphon, and special bridge designs. The amount of engineering practice and observational data testify that measurements of embankment cooling effectively decrease permafrost temperature and heighten the permafrost table beneath embankments.
机译:多年冻土地区青藏铁路的建设提出了许多重大的工程问题。多年冻土的工程特性可能会发生很大变化,因此必须考虑气候变暖,尤其是含冰量高的多年冻土。多年冻土的变暖可能引起地冰融化,从而导致路堤沉降。因此,热稳定性是多年冻土地区QXR构造的关键考虑因素。为了在气候变暖的背景下保证多年冻土的热稳定性,提出了路堤降温防止多年冻土变化的思路。已经提出了许多路堤冷却方法来防止地冰融化。例如,砌块石路堤,砌块和碎石坡度得到保护,热虹吸管和特殊的桥梁设计。工程实践和观测数据的数量证明,路堤冷却的测量有效地降低了永久冻土的温度并提高了路堤下方的永久冻土表。

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