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Effect of Groundwater Table Rising and Slurry Reduction during Diaphragm Wall Trenching on Stability of Adjacent Piles

机译:地下水位上升和浆料减小在隔膜墙沟期间对相邻桩稳定性的影响

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The process of diaphragm wall trenching normally affects the surrounding environment. The piles near a diaphragm wall trench are commonly affected by the trenching process as well. During trenching the slurry level and the natural groundwater level are assumed to be constant. However flooding may cause damage to the slurry trenches due to the increase of the groundwater table. Another possible scenario for the trench failure is due to reduction of the slurry level. The reduction of the slurry level could be due to the presence of cavities or a very coarse soil layer. Piles located near a trench could be affected greatly if the trench is subjected to reduction of slurry or increase of the groundwater level. This research focuses on studying numerically the stability of piles adjacent to the diaphragm wall during the trenching process, especially in cause of slurry reduction or increase of groundwater level. The slurry reduction were simulated numerically with the finite different analysis and compared with previous laboratory work. The increase of groundwater level is simulated for a case study in Giza, Egypt. Groundwater level was assumed to increase in the area. Piles are generally affected by the trenching process. The behaviour of the pile is related to its position from the slurry trench. The stability of the pile may not be affected greatly by a normal and successful trenching process. However slurry reduction or increase in the groundwater level may cause a great effect on the stability of the nearby piles. Trenching in general causes an increase in pile settlement, horizontal displacement and bending moment. The pile skin friction and end bearing are affected as well. The percentage of the change in slurry or groundwater levels affects piles deflection and bending moment.
机译:隔膜壁沟槽的过程通常影响周围环境。隔膜墙沟附近的桩也经常受到挖沟过程的影响。在挖掘浆料水平期间,假设天然地下水位是恒定的。然而,由于地下水位的增加,洪水可能导致浆料沟槽损坏。沟槽故障的另一个可能的场景是由于减少浆液水平。浆液水平的减少可能是由于存在空腔或非常粗糙的土壤层。位于沟槽附近的桩可能会受到大大影响,如果沟槽遭受浆料的降低或地下水位的增加。本研究侧重于在挖掘过程中对膜片壁附近的桩稳定性的研究,特别是在浆料减少的原因或地下水位的增加。用有限的不同分析进行数值模拟浆料还原,与先前的实验室工作相比。为埃及吉萨的案例研究模拟地下水位的增加。地下水位被认为是该地区的增加。桩通常受到挖沟过程的影响。桩的行为与其从浆料沟槽的位置有关。通过正常和成功的挖沟过程,桩的稳定性可能不会受到大量影响。然而,地下水位的浆料减小或增加可能对附近桩的稳定性产生很大影响。挖沟一般导致桩沉降,水平位移和弯矩的增加。绒毛摩擦和末端轴承也受到影响。浆料或地下水位的变化的百分比影响桩偏转和弯矩。

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