TABAKALI ZEMİNLERDE TÜNEL AÇMANIN KAZIKLI TEMEL ÜZERİNDEKİ ETKİSİ

Hossein ZORİYEH ALİGHOLİ, Onur Yavan
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Abstract

It is believed that tunnel construction will have significant and intricate effects on structures supported by piles. One of the most popular approaches to research is numerical modeling. This study looked into how tunnel placement affected piled foundation systems in layered soil. In sixteen models utilizing PLAXIS 2D finite element analysis, a square foundation with dimensions of 26×26×2 meters and a load of 200 kPa was applied to the soil profile representing Istanbul's Avcilar district. In the 11×7 formation, two groups of piles were created, each with a fixed spacing of 2.4 meters and varying diameters of 0.8, 1.2 with 30 meters in length. The piles were placed 4 meters out of the plane and 1 meter from the edges. For every pile group, a 10-meter-diameter tunnel was examined at two various Z⁄D and four various X⁄D from the foundation's center to determine the influence of the tunnel location. According to the results, the surface total settlement values decrease, and the differential settlements increase as the tunnel is positioned farther in the x direction from the foundation center axis. The pile's bending moment slightly decreases as the tunnel's horizontal location gets farther away from it. The tunnel's effect decreases with increasing distance within the influence zone. Tunnel settlement cannot be significantly reduced by deepening the tunnel or increasing the pile's diameter.
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在分层土中开挖隧道对桩基的影响
人们认为,隧道施工将对由桩支撑的结构产生重大而复杂的影响。最常用的研究方法之一是数值建模。本研究探讨了隧道布置如何影响分层土壤中的桩基系统。在利用 PLAXIS 2D 有限元分析的 16 个模型中,一个尺寸为 26×26×2 米的正方形地基和 200 kPa 的荷载被施加到代表伊斯坦布尔阿夫西拉区的土壤剖面上。在 11×7 的地层中,创建了两组桩,每组桩的固定间距为 2.4 米,直径分别为 0.8、1.2 和 30 米。桩放置在平面外 4 米处,距离边缘 1 米。在每组桩中,从地基中心的两个不同的 Z⁄D 和四个不同的 X⁄D 处检查了一个直径为 10 米的隧道,以确定隧道位置的影响。结果表明,随着隧道在 X 方向上距离地基中心轴线越远,地表总沉降值越小,差异沉降值越大。当隧道水平位置离桩较远时,桩的弯矩略有减小。隧道的影响随影响区内距离的增加而减小。加深隧道或增大桩的直径并不能显著减少隧道沉降。
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