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首页> 外文期刊>International Journal of Civil Engineering,Transaction A:Civil Engineering >Rheological Characterisation of Foam-Conditioned Sands in EPB Tunneling
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Rheological Characterisation of Foam-Conditioned Sands in EPB Tunneling

机译:EPB隧洞中泡沫砂的流变特性

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摘要

The flow behaviour of soil-foam mixtures, used as support medium in closed-mode tunnelling with Earth pressure balance shield machines, is an essential factor for the operation of the tunnel boring machine (TBM). On the one hand, a rather soft consistency is required providing a homogeneous face support pressure transfer to the tunnel face. High accuracy in face support regulation is crucial for settlement control, especially in sensitive environments, such as urban areas. On the other hand, a rather stiff consistency is preferable concerning transportation and disposal of the excavated ground to avoid additional treatments for landfilling, tipping or sewage management. So far, the flow behaviour of soil-foam mixtures has been investigated by index tests. Most notably, the slump test, known from concrete technology, is widely applied on soil-foam mixtures. However, flow is actually a non-static phenomenon and cannot be expressed by a single parameter, which is derived from an equilibrium-state condition at rest. This contribution focuses on the rheology of soil-foam mixtures aiming at a better understanding of the flow behaviour and of the influences the individual components have on it during the excavation process. Investigating the interaction between soil, water and foam provides optimisation strategies for the TBM performance.
机译:在带土压平衡盾构机的闭式隧道中,用作支撑介质的泡沫土混合物的流动特性是隧道掘进机(TBM)运行的重要因素。一方面,需要相当柔软的稠度,以提供均匀的工作面支撑压力传递至隧道工作面。面部支撑调节的高精度对沉降控制至关重要,特别是在敏感环境(例如市区)中。另一方面,在开挖地面的运输和处置方面,较好的刚性是优选的,以避免对掩埋,倾倒或污水处理进行额外的处理。到目前为止,已经通过指数试验研究了土壤-泡沫混合物的流动行为。最值得注意的是,从混凝土技术中得知的坍落度测试已广泛应用于土壤-泡沫混合物。但是,流动实际上是一种非静态现象,不能用单个参数表示,该参数是从静止状态下的平衡状态得出的。该贡献集中在土壤-泡沫混合物的流变学上,旨在更好地了解开挖过程中的流动特性和各个组成部分对其的影响。研究土壤,水和泡沫之间的相互作用为TBM性能提供了优化策略。

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