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Simulation-based optimal design approach for rockfall protection walls

机译:基于岩石防护墙的仿真优化设计方法

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This study presents a new design approach which can optimize position and size of a rockfall protection wall with the help of a numerical simulation. In the proposed framework, sufficient numbers of rockfall paths with information of kinematic energy are accumulated by rockfall simulation. A protection wall is then virtually overlapped on the simulated results, and values of a safety function are checked under the different combinations of design parameters. A response surface of the safety function is then approximately constructed, and a cost function is defined to express the penalty in unreasonable situation. Once the two functions are obtained, an optimization problem can be formulated. In order to demonstrate the capability of the proposed optimal design approach, a numerical example is presented in this study. The obtained result indicates that the proposed framework has the possibility of developing optimal design of rockfall protection walls.
机译:本研究提出了一种新的设计方法,可以在数值模拟的帮助下优化岩石保护墙的位置和尺寸。在所提出的框架中,通过岩石模拟累积了具有运动能量信息的足够数量的岩石路径。然后在模拟结果上实际上重叠保护壁,并且在设计参数的不同组合下检查安全功能的值。然后大致构造安全功能的响应表面,并且定义了成本函数以表达在不合理的情况下的惩罚。一旦获得了两个功能,可以配制优化问题。为了证明所提出的最佳设计方法的能力,本研究提出了一个数值例子。所获得的结果表明,所提出的框架具有开发岩石保护墙最佳设计的可能性。

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