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Maximum Stress Estimation Model for Multi-Span Waler Beams with Deflections at the Supports Using Average Strains

机译:使用平均应变的支座挠度多跨度Waler梁的最大应力估算模型

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摘要

The safety of a multi-span waler beam subjected simultaneously to a distributed load and deflections at its supports can be secured by limiting the maximum stress of the beam to a specific value to prevent the beam from reaching a limit state for failure or collapse. Despite the fact that the vast majority of accidents on construction sites occur at waler beams in retaining wall systems, no safety monitoring model that can consider deflections at the supports of the beam is available. In this paper, a maximum stress estimation model for a waler beam based on average strains measured from vibrating wire strain gauges (VWSGs), the most frequently used sensors in construction field, is presented. The model is derived by defining the relationship between the maximum stress and the average strains measured from VWSGs. In addition to the maximum stress, support reactions, deflections at supports, and the magnitudes of distributed loads for the beam structure can be identified by the estimation model using the average strains. Using simulation tests on two multi-span beams, the performance of the model is evaluated by estimating maximum stress, deflections at supports, support reactions, and the magnitudes of distributed loads.
机译:通过将梁的最大应力限制在特定值以防止梁达到破坏或坍塌的极限状态,可以确保同时承受分布载荷和支座挠度的多跨度梁的安全性。尽管在建筑工地上发生的绝大多数事故都发生在挡土墙系统的横梁上,但尚无可考虑横梁支撑变形的安全监控模型。本文提出了一种基于横梁的最大应力估计模型,该模型基于从振动线应变仪(VWSG)(建筑领域最常用的传感器)测得的平均应变。通过定义最大应力与从VWSG测得的平均应变之间的关系来得出模型。除了最大应力,还可以通过使用平均应变的估算模型来确定支撑反作用力,支撑处的挠度以及梁结构的分布载荷的大小。通过在两个多跨梁上进行模拟测试,可以通过估计最大应力,支座挠度,支座反作用力和分布载荷的大小来评估模型的性能。

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