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Experimental and Analytical Investigation of Live-Load Distribution Factors for Double Tee Bridges

机译:双T型桥梁活载分配因子的实验分析调查

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In this study, the Icy Springs Bridge, located in Coalville, Utah, was load-tested to quantify the effects of significant deterioration on its live-load behavior. Visual inspection and load testing of this double tee structure indicated a severely deteriorated deck, undamaged girder stems, and partially effective transverse connections at the longitudinal joints. At the time of testing, the bridge was load-posted at 35.6kN (total gross vehicle weight) with a maximum speed of 8km/h due to conservative rating assumptions. After a detailed analysis, a truck that was 7.5 times the posted weight was used for a load test. A shell-based finite-element model was created that used variable spring elements to model the deteriorated flange-to-flange connections, which accurately replicated the behavior of the bridge from the load test and validated the modeling technique. The model was used to perform a parametric study, using idealized flange-to-flange connections, to compare the calculated girder distribution factors to the finite-element model-estimated girder distribution factors, and poor agreement was found (R2=0.449 and 0.237 for moment and shear, respectively). A multivariable linear regression analysis was used to develop moment and shear girder distribution factor equations for double tee bridges similar to the one investigated in this study, with a much better correlation of R2=0.86 and 0.83 for moment and shear, respectively.
机译:在这项研究中,位于犹他州煤炭维尔的冰冷泉桥被载负载,以量化显着恶化对其活载行为的影响。这种双T恤结构的目视检查和负载测试表明了在纵向接缝处的严重劣化的甲板,未损坏的梁,并且部分有效的横向连接。在测试时,由于保守的评级假设,桥接桥在35.6kN(总粗车总重量)以35.6kN(总粗大的车辆重量)。在详细分析后,将张贴重量的7.5倍的卡车用于负载测试。创建了一种基于壳的有限元模型,该模型使用可变弹簧元素来模拟劣化的法兰到法兰连接,这精确地将桥梁的行为从负载测试中进行了准确地复制并验证了建模技术。该模型用于使用理想化的法兰到法兰连接进行参数研究,将计算的梁分布因子与有限元模型估计的梁分布因子进行比较,并且发现差的协议(R2 = 0.449和0.237片刻和剪切分别)。多变量的线性回归分析用于为类似于本研究研究的双T桥的时刻和剪切梁分布因子方程开发矩和剪切梁分布系数,其片刻和剪切分别具有更好的R2 = 0.86和0.83的相关性。

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