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A Shear-Slip Mesh Update - Immersed Boundary Finite Element model for computational simulations of material transport in EPB tunnel boring machines

机译:剪切滑移网格更新-浸入边界有限元模型,用于EPB隧道掘进机中物料传输的计算模拟

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摘要

Earth Pressure Balance (EPB) machines are widely used in mechanized tunneling operations in soft soils in a variety of soil conditions. In contrast to slurry shield machines, the pressure distribution at the tunnel face is not well defined. This paper proposes a computational model for the numerical simulation of the material transport inside the pressure chamber of EPB machines. The governing equations of the soil flow are discretized by using the Finite Element (FE) method and the Fractional Step (FS) scheme. A pressure-dependent viscoplastic fluid is adopted to model the behavior of the soil paste, which is assumed to be a compressible homogeneous mixture. The flow behavior along the boundaries of the chamber wall and the cutterhead rotators is described by the Navier slip law. The moving boundaries associated with the rotators and the mixing arms inside the pressure chamber are imposed in the numerical model by means of the Shear-Slip Mesh Update (SSMU) method. The description of the rotating screw in the conveyor system is enabled by using the Immersed Boundary (IB) method. The combination of the two methods enables to exploit the advantages and to mutually compensate for the disadvantages associated with each of the two methods. The numerical components in the model are presented and verified by several numerical benchmark examples. The setup for the chamber model is presented in detail. Selected results from the simulation of a pressure chamber of a tunnel boring machine are shown and some important observations and remarks are discussed.
机译:土压力平衡(EPB)机器广泛用于各种土壤条件下的软土中的机械化隧道作业。与泥浆盾构机相反,隧道面的压力分布不明确。本文提出了一种用于EPB机器压力腔内物料输送数值模拟的计算模型。利用有限元(FE)法和分数步(FS)法离散化了土壤流的控制方程。采用与压力有关的粘塑性流体来模拟泥浆的行为,假定该泥浆是可压缩的均质混合物。沿着腔壁和刀盘旋转器边界的流动行为由Navier滑动定律描述。通过剪切滑移网格更新(SSMU)方法在数值模型中强加了与压力室内的旋转器和混合臂相关的运动边界。可以使用浸入边界(IB)方法对输送机系统中的旋转螺杆进行描述。两种方法的组合使得能够利用优点并相互补偿与两种方法中的每一种相关的缺点。通过几个数值基准示例,介绍并验证了模型中的数值分量。详细介绍了腔室模型的设置。显示了隧道掘进机压力室​​模拟的部分结果,并对一些重要的观察和评论进行了讨论。

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