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Application of Hagstrom-Warburton high-order truncation boundary condition on time harmonic analysis of concrete arch dam-reservoir systems

机译:Hagstrom - Warburton高阶截断边界条件在混凝土拱坝水库系统时谐波分析的应用

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PurposeSubsequently, the response of idealized Morrow Point arch dam is studied due to stream, vertical and cross-stream ground motions for reservoir bottom/sidewalls conditions of both fully reflective and absorptive. For each combination, different orders of Hagstrom-Warburton (HW) condition are evaluated from accuracy point of view by comparing them against exact solutions. It should be emphasized that normalized length of reservoir near-field region is taken as a very low value of L/H = 0.2 during this process which makes it a very challenging test for any kind of truncation boundary condition.Design/methodology/approachIn present study, dynamic analysis of concrete arch dam-reservoir systems is formulated by FE-(FE-TE) approach [i.e. finite element-(finite element-truncation element)]. In this technique, dam and reservoir are discretized by solid and fluid finite elements. Moreover, the HW high-order condition imposed at the reservoir truncation boundary. This task is formulated by employing a truncation element at that boundary. It is emphasized that reservoir far-field is excluded from the discretized model. The formulation is initially explained in details.FindingsThe trend in gaining accuracy with increase in order of HW condition were basically the same for all three types of excitations under both full reflective and absorptive reservoir bottom/sidewalls conditions. The only exception was for cross-stream excitation response which was showing less accurate results near the first major peak for moderate orders of HW (e.g. O3-2) in comparison to what was observed for responses due to symmetric excitations (stream and vertical). This is mainly attributed to the selection of evanescent-type parameters of HW condition which is based on the first symmetric mode of reservoir. However, it is noted that error diminishes even for cross-stream excitation as order increases. High orders of HW condition, such as O5-5 considered herein, generate highly accurate responses for all three possible excitations under both types of full reflective and absorptive reservoir bottom/sidewalls conditions. It is such that responses are hardly distinguishable from corresponding exact responses. This reveals that proposed FE-(FE-TE) analysis technique based on HW condition is quite successful, and one may fully rely on that for accurate and efficient analysis of concrete arch dam-reservoir systems.Originality/valueDynamic analysis of concrete arch dam-reservoir system is formulated by new method. HW high-order condition is applied for a very low and challenging reservoir length. Different orders are evaluated against exact solution with excellent agreement. Generalized matrices of truncation element are derived for FEM programmers. The method is discussed for all types of excitation and reservoir base conditions.
机译:目前,由于完全反射和吸收的储层底部/侧壁条件的流,垂直和交叉流接地运动,研究了理想化的明天点拱坝的响应。对于每个组合,通过将它们与精确解决方案进行比较来评估不同秩序的Hagstrom-Warburton(HW)条件。应该强调的是,在此过程中,将储层近场区域的归一化长度作为L / H = 0.2的非常低的值,这使其对任何类型的截断边界条件进行了非常具有挑战性的测试.design/methodology/approcin存在研究,用Fe-(Fe-Te)方法制定了混凝土拱坝水库系统的动态分析[即有限元(有限元截断元素)]。在该技术中,通过固体和流体有限元件离散化坝和储液。此外,在储存器截断边界处施加的HW高阶条件。通过在该边界处使用截断元素来配制此任务。强调,水库远场被排除在离散模式之外。最初详细说明了制剂。在全部反射和吸收储存器底部/侧壁条件下,HW条件的顺序增长的趋势随着HW条件的增加而增加的趋势。唯一的例外是用于交叉流激发响应,其在与对称激发(流和垂直)引起的响应所观察到的响应相比,在第一主要峰值附近显示较低的准确结果。这主要归因于基于第一对称模式的HW条件的渐致型参数的选择。但是,应注意,随着订单增加,误差甚至可以减少跨流励磁。在本文中考虑的HW条件(例如O5-5)的高次数,对所有三种可能的激励产生高度准确的反应,这些类型的全部反射和吸收储存器底部/侧壁条件。这使得与相应的确切反应几乎不区分响应。这表明,基于HW条件的提出的Fe-(Fe-TE)分析技术非常成功,可以完全依赖于对混凝土拱坝水库系统的准确有效分析。混凝土拱坝的宽度/缬因亮分析 - 储层系统由新方法制定。 HW高阶状况适用于极低且充满挑战的储层长度。针对具有良好协议的精确解决方案评估不同的订单。截断元素的广义矩阵用于FEM程序员。讨论了所有类型的激励和储层基础条件的方法。

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