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Effects of Bridge Pile Bent Geometry and Levels of Scour and P Loads on Bent Pushover Loads in Extreme Flood/Scour Events

机译:极端洪水/冲刷事件中桥桩弯曲几何形状和冲刷和P荷载水平对弯曲推覆荷载的影响

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摘要

A common substructure for highway bridges over streams and creeks consists of a group of steel HP piles with a length above ground up to the level of a concrete bent cap, which supports the bridge superstructure. The use of three, four, five, or six such piles in a row with the two end piles battered constitutes a very common bridge bent configuration. In streams subject to significant flooding and scour, a critical load condition for these bents can be a gravity dead and live loading in conjunction with a horizontal flood water loading acting near the top of the bent. Such a loading may cause a pushover failure of the bent and, in turn, failure of the bridge. Pushover loads for such pile bents of various heights, bracing conditions, levels of gravity loading, and levels of scour are presented in this paper. A procedure is also presented for determining the maximum applied flood water loading acting on a bent, for determining the bent's adequacy against a pushover failure.
机译:公路上溪流和小溪的常见下部结构由一组钢HP桩组成,这些桩的桩长比地面高,直到混凝土弯顶的高度,才可以支撑桥的上部结构。连续使用三个,四个,五个或六个这样的桩,将两个末端桩都打桩,这是一种非常常见的桥弯构造。在遭受大量洪水和冲刷的河流中,这些弯头的临界载荷条件可能是重力静载荷和活载荷以及在弯头顶部附近作用的水平洪水载荷。这样的载荷可能导致弯曲的推覆失败,进而导致桥的失败。本文介绍了各种高度,支撑条件,重力载荷水平和冲刷水平的此类桩弯的推覆载荷。还提出了一种程序,用于确定作用在弯头上的最大施加洪水负荷,以确定弯头是否有足够的抗倾覆能力。

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