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Articulated Concrete Block Stability Assessment for Channelized Flow

机译:铰接式混凝土砌块渠道水流稳定性评估

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A moment stability analysis method which computes a safety factor using shear stress and flow velocity was previously developed for assessing the stability of articulated concrete block (ACB) systems during overtopping flow. The present study used the shear and velocity stability assessment (SVSA) method to derive safety factor equations for evaluating channelized flow. The stability analysis method for channelized flow excludes several assumptions used in previous methods, including calculating the rotation angle for movement and using a ratio of the boundary shear stress to critical shear stress to account for all hydrodynamic forces. The SVSA channelized flow equations provide a reliable stability assessment approach for ACB systems. Performance of the SVSA method for channelized flow was evaluated using a database that included overtopping tests for three ACB systems with varying embankment slopes and lengths, and channelized tests for one ACB system. The previous design methodology predicted stability for 71% of the tests and the instability threshold for 50% of the installations. The SVSA approach predicted stability for 92% of the tests and the instability threshold for 83% of the installations. Therefore, the SVSA method provides an enhancement for predicting stability of ACB systems in channelized flow conditions.
机译:以前已经开发出一种矩稳定性分析方法,该方法利用剪切应力和流速计算安全系数,以评估铰接式混凝土砌块(ACB)系统在顶覆流动期间的稳定性。本研究使用剪切和速度稳定性评估(SVSA)方法来推导安全系数方程式,以评估通道流。通道化流的稳定性分析方法不包括先前方法中使用的几个假设,包括计算运动的旋转角度以及使用边界剪应力与临界剪应力之比来考虑所有流体动力。 SVSA通道化流量方程为ACB系统提供了可靠的稳定性评估方法。使用数据库评估了SVSA方法对通道化流的性能,该数据库包括对三个路堤坡度和长度不同的ACB系统进行的覆盖测试和对一个ACB系统的通道化测试。先前的设计方法预测71%的测试具有稳定性,而50%的安装具有不稳定阈值。 SVSA方法可预测92%的测试的稳定性,以及83%的安装的不稳定阈值。因此,SVSA方法为预测ACB系统在通道化流动条件下的稳定性提供了增强。

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