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A Semi-Analytical Approach for the Contact Dynamics of Ancient Columns Modeled as Rigid Blocks

机译:一种半分析方法,用于刚性块模型古柱的接触动力学

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The problem of conservation and protection of architectural heritage against dynamic inputs such as the case of earthquakes has represented for years an important task in the field of structural engineering with the aim of describing and understanding the behaviour of monumental structures. This work deals with monumental structures made of large and heavy stone blocks, simply supported to each other, a typical technology used to build the Greek temples. The plane dynamics of a rigid rectangular block simply supported on a horizontally moving ground, with friction and unilateral constraints at ground contact, is modeled by means of a new semi-analytical approach for non-smooth contact dynamics recently developed by one of the authors [1]. The dynamics - formulated as a contact problem governed by Signorini's and Coulomb's laws - is converted into an equivalent problem of static balance by making use of specific projective techniques in the configurations space. The procedure is then applied to a numerical model, so that a code can be implemented where the dynamics of the block is fully modeled according to the various possible mechanisms considering both phases of smooth and non-smooth contact dynamics, moreover normal and tangential contact reactions during smooth dynamics, and corresponding impulses during non-smooth, are estimated at each step. Either extended or single point contacts are then possible with consequent sliding, rocking or sliding-rocking modes, so as the possibility of impacts and also of free dynamics when contact is lost. Analyses are conduced and then compared to corresponding cases previously treated in literature, in order to validate the proposed numerical method for the rocking mode. Moreover, dynamic evolution of the block is represented graphically in order to observe different configurations at each instant of time. The goal is to understand the dynamic behaviour of the block under several input intensities in order to prevent excessiv- - e sliding or overturning and to localize with sufficient precision the position of the block after the earthquake.
机译:保护和打击动态输入建筑遗产的保护,如地震的情况下,这个问题代表了多年来在结构工程领域与描述和理解不朽结构的行为目的的一项重要任务。这与由大而重的石块砌成的巨大结构工作的交易,简单地支持对方,用来建造希腊神庙的典型技术。刚性矩形块简单地支撑在水平移动地,与摩擦和在地面接触单方面约束的平面动力学,通过最近由作者之一[开发了用于非光滑接触动力学一个新的半分析方法的装置模拟1]。动态 - 配制成通过的Signorini的和库仑定律支配的接触问题 - 通过利用在配置空间中的特定投影技术转化为静力平衡的等效问题。然后该过程被应用到的数值模型,从而使代码可以被实现,其中该块的动态,根据考虑平滑和不平滑的接触动力学,而且正常和切向接触反应的两个阶段的各种可能的机制完全仿照期间平滑动力学,以及在非平滑对应冲动,估计为每一个步骤。无论是延长或单点接触然后与可能随之而来的滑动,摆动,或当接触丢失滑动摆动模式,从而影响的可能性,并且还自由动力学。分析是conduced然后与相应的先前在文献中处理过的情况下,为了验证用于摆动模式的所提议的数值方法。此外,块的动态进化,以便在每个时刻观察不同的配置图形表示。我们的目标是要了解,为了防止excessiv-块的下几个输入强度的动态行为 - 电子滑动或翻倒,以足够的精度进行本地化地震后的块的位置。

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