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Numerical and analytical investigation towards performance enhancement of a newly developed rockfall protective cable-net structure (Review)

机译:新型落石防护索网结构性能提高的数值和分析研究(综述)

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In a previous companion paper, we presented a three-tier modelling of a particular type of rockfall protective cable-net structure (barrier), developed newly in Japan. Therein, we developed a three-dimensional, Finite Element based, nonlinear numerical model having been calibrated/back-calculated and verified with the element- and structure-level physical tests. Moreover, using a very simple, lumped-mass, single-degree-of-freedom, equivalently linear analytical model, a global-displacement-predictive correlation was devised by modifying the basic equation - obtained by combining the principles of conservation of linear momentum and energy - based on the back-analysis of the tests on the numerical model. In this paper, we use the developed models to explore the performance enhancement potential of the structure in terms of (a) the control of global displacement - possibly the major performance criterion for the proposed structure owing to a narrow space available in the targeted site, and (b) the increase in energy dissipation by the existing U-bolt-type Friction-brake Devices - which are identified to have performed weakly when integrated into the structure. A set of parametric investigations have revealed correlations to achieve the first objective in terms of the structure's mass, particularly by manipulating the wire-net's characteristics, and has additionally disclosed the effects of the impacting-block's parameters. Towards achieving the second objective, another set of parametric investigations have led to a proposal of a few innovative improvements in the constitutive behaviour (model) of the studied brake device (dissipator), in addition to an important recommendation of careful handling of the device based on the identified potential flaw.
机译:在先前的随附论文中,我们介绍了一种在日本新开发的特殊类型的落石保护缆网结构(屏障)的三层模型。其中,我们开发了基于有限元的三维非线性数值模型,该模型已经过校准/反算并通过元素级和结构级物理测试进行了验证。此外,通过使用一个非常简单的,集总质量,单自由度的等效线性分析模型,通过修改基本方程式(通过结合线性动量守恒原理获得的基本方程式),设计了一个整体位移预测相关性。能量-基于对数值模型的测试的反向分析。在本文中,我们将使用已开发的模型从以下方面探讨结构的性能增强潜力:(a)控制全局位移-由于目标位置中的可用空间有限,可能是拟议结构的主要性能标准, (b)现有的U型螺栓型摩擦制动装置增加了能量的消耗,这些装置在集成到结构中时表现不佳。一组参数研究揭示了相关性,以实现结构质量方面的第一个目标,特别是通过操纵丝网的特性,并且还公开了冲击块参数的影响。为了实现第二个目标,另一组参数研究提出了对所研究的制动装置(耗能器)的本构行为(模型)进行一些创新性改进的建议,此外还建议对基于制动的装置(装置)进行谨慎的处理。识别出的潜在缺陷。

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