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LOAD FACTORS FOR CONCRETE WALL PIPE PENETRATIONS WITH A WALL MOUNTED WELDED PLATE

机译:带壁装焊接板的混凝土管桩穿透的载荷因子

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The bending moments imposed on welded plate anchors that are part of embedded pipe wall penetrations are often overestimated in the structural evaluations of these penetrations. For this type of restraint, the pipe is embedded in a concrete wall penetration with a welded plate mounted on the surface of the wall. This penetration is typically modeled with a single 6 degree of freedom (DOF) restraint at the plate in the pipe stress analysis. This approach can lead to overestimated loads on the welded plate and the mounting anchor bolts because no credit is taken for reaction on the embedded portion of the pipe. A significant portion of the bending moments from piping on both sides of the penetration is transferred directly to the concrete wall by the normal reaction on a fully grouted pipe, thus reducing loads on the steel plate and the mounting anchored bolts. The objective of this study is to determine load factors for bending moments from both sides of the pipe penetration on the anchored steel plate. A parametric study is performed using ANS YS models of a pipe fully embedded in a concrete wall penetration with a welded plate mounted on one side of the wall by anchor bolts. Various pipe diameters, concrete wall thicknesses and plate thicknesses are considered. For each model, the loading on the plate is compared to the loading applied at the free end of the pipe. Load factors are developed for use in the structural evaluation of the welded plate and the mounting anchor bolts. The maximum compressive bearing pressure at the concrete wall is also calculated for use in the structural evaluation of these types of pipe supports.
机译:在埋入式管壁穿孔的一部分中,施加在焊接板锚上的弯矩通常在这些穿孔的结构评估中被高估了。对于这种类型的约束,将管子嵌入混凝土墙穿入孔中,并在墙体表面安装一块焊接板。在管道应力分析中,通常使用板上的单个6自由度(DOF)约束来模拟此穿透。这种方法会导致高估焊接板和安装锚固螺栓的负载,因为没有考虑到管道埋入部分的反应。贯穿孔两侧管道的弯矩的很大一部分通过完全注浆管上的正常反应直接传递到混凝土墙,从而减少了钢板和安装锚固螺栓上的载荷。这项研究的目的是确定锚固钢板上从管道穿通两侧的弯矩的荷载因子。使用ANS YS模型进行参数研究,该模型完全嵌入混凝土墙穿入管中,并通过地脚螺栓将焊接板安装在墙的一侧。考虑各种管径,混凝土壁厚和板厚。对于每个模型,将板上的载荷与管道自由端施加的载荷进行比较。开发了载荷因子,用于焊接板和安装地脚螺栓的结构评估。还计算了混凝土墙的最大压缩承载压力,以用于这些类型的管道支架的结构评估。

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