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Effects of slurry on stickiness of excavated clays and clogging of equipment in fluid supported excavations

机译:泥浆对流体支撑基坑中黏土黏性和设备堵塞的影响

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Mechanized excavation of tunnels and fabrication of deep foundation elements in soft ground often requires a fluid support of the temporarily created openings. The supporting fluids are generally mixtures of bentonite with water, enhanced by chemical additives for difficult geological conditions. The properties of the slurries are chosen to guarantee the stability of the excavation, in particular providing sufficient support to the coarse grained soil layers. When these are interlaid with clayey layers, excavation can be hindered by clogging problems, requiring time consuming cleaning works and causing construction delays. Clogging is caused by the stickiness of the excavated clay, which can be affected both by the clay mineralogy and the composition of the supporting slurry. The paper investigates these effects by means of a laboratory experimental study using novel stickiness tests: the mixing test and a model TBM cutter-head test. For bentonite slurries, the stickiness of the excavated soil was found to correlate with the shear resistance of the slurry. Therefore, increased slurry strength, while beneficial for excavations in coarse soils, may lead to increased susceptibility to clogging under mixed face conditions. In contrast, some pure polymer slurries can help to combine high slurry resistance with low clogging potential by protecting clay aggregate surface from penetration of water. (C) 2016 Elsevier Ltd. All rights reserved.
机译:隧道的机械化开挖和软土地基中深层基础构件的制造通常需要临时支撑的开口的流体支撑。支撑液通常是膨润土与水的混合物,在困难的地质条件下可通过化学添加剂增强。选择泥浆的性质以保证挖掘的稳定性,特别是为粗粒土层提供足够的支撑。当这些层与黏土层夹杂时,会因堵塞问题而妨碍开挖,这需要耗时的清洁工作并导致施工延迟。堵塞是由挖掘出的黏土的粘性引起的,黏土的矿物学和支撑浆液的成分都会影响黏性。本文通过使用新型粘性测试的实验室实验研究来调查这些影响:混合测试和模型TBM刀盘测试。对于膨润土泥浆,发掘的土壤的粘性与泥浆的抗剪强度相关。因此,增加的泥浆强度虽然有利于在粗糙的土壤中进行挖掘,但在混合工作面条件下,可能会导致堵塞的可能性增加。相反,某些纯聚合物浆料可以通过保护粘土骨料表面不被水渗透来帮助将高浆料抗性和低堵塞潜力结合起来。 (C)2016 Elsevier Ltd.保留所有权利。

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