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A Methodology for Optimal Layout Design of Pressure Cells for Concrete Faced Rockfill Dams

机译:混凝土面板堆石坝压力传感器最佳布置设计的方法学

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In this study, a methodology for optimal layout design of pressure cells for concrete faced rockfill dams is developed. A representative dimensionless stress distribution model was formed for obtaining the magnitudes and location of different stress zones as a function of dam height. This information enabled development of a procedure for proper location and the number of pressure cells throughout the dam body. A vertical placement algorithm based on error minimization was first developed, which is followed by an approach to find the number and location of pressure cells on a particular elevation of the dam body. The effects of face slab cracking and earthquake are interpreted. Furthermore, the performance of the proposed model was also tested when instruments are installed to different elevations in the dam body than those recommended by the model developed. The proposed optimization scheme provides a basis for economical layout design of pressure cells with sufficient information allowing realistic assessment of the structural behavior. The application of the proposed model is illustrated for some existing dams. It is observed that this algorithm gives satisfactory results.
机译:在这项研究中,开发了一种用于混凝土面板堆石坝压力单元最佳布局设计的方法。形成了一个代表性的无量纲应力分布模型,用于获得不同应力区域的大小和位置,作为坝高的函数。这些信息使得能够开发程序来确定整个坝体的正确位置和压力​​单元的数量。首先开发了基于误差最小化的垂直放置算法,然后是在大坝主体特定高程上找到压力单元的数量和位置的方法。解释了面板破裂和地震的影响。此外,当将仪表安装在坝体上的高度与开发模型建议的高度不同时,还对建议模型的性能进行了测试。所提出的优化方案为压力单元的经济布局设计提供了基础,该信息具有足够的信息,可以对结构行为进行实际评估。提出的模型在一些现有大坝上的应用举例说明。观察到该算法给出令人满意的结果。

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