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Structural damage detection of space frame structures with semi-rigid connections

机译:半刚性连接的空间框架结构的结构损伤检测

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摘要

The accurate modeling of connection joints for civil engineering structures is challenging. The conventional approaches generally assume that the joints are either pinned or rigid, while real joints are semi-rigid in practice. Most existing damage detection methods do not consider the semi-rigidity of the joints, and thus may lead to false or inaccurate identification results. Moreover, the joints are more vulnerable to damage compared to other members of the structure. However, only limited studies have focused on the detection of the joint damage, and few have studied the damage in structural members and joints simultaneously for space structures. In this regard, a two-step damage detection method for space frame structures with semi-rigid connections is developed in this study. Rotational springs with some flexibility are used to model the mechanical behavior of the joints, which enables identification of damage in the bar elements as well as in joints. The first step determines the existence and location of the damaged elements using the l(1) regularization technique. In the second step, the damage locations and severities are then identified within the suspicious damaged elements only that are detected in the first step. This process progressively reduces the number of unknown parameters and thus alleviates the instability and divergence problems to improve the damage identification accuracy. An experimental 3D space structure is utilized to demonstrate the effectiveness of the proposed damage detection method. The results show that damage in structural elements and joints can be correctly located and quantified progressively. The numerical investigation shows that the sensitivity of the modal properties with respect to joint damage is much smaller than to damage in bar elements.
机译:土木工程结构连接关节的准确建模是具有挑战性的。传统方法通常假设关节要么固定或刚性,而实际关节在实践中是半刚性的。大多数现有的损伤检测方法不考虑关节的半刚性,因此可能导致错误或不准确的鉴定结果。此外,与结构的其他成员相比,关节更容易受损。然而,只有有限的研究专注于检测联合损伤,并且很少有人研究了结构构件和关节的损坏,同时进行空间结构。在这方面,在该研究中开发了一种具有半刚性连接的空间框架结构的两步损伤检测方法。具有一些柔韧性的旋转弹簧用于模拟接头的机械特性,这使得能够识别条形元件以及关节中的损坏。第一步使用L(1)正则化技术确定损坏元件的存在和位置。在第二步中,然后在第一步中检测到的可疑损坏元件内识别损坏位置和严重程度。该过程逐渐减少了未知参数的数量,从而减轻了不稳定性和发散问题,以提高损坏识别准确性。实验3D空间结构用于证明所提出的损伤检测方法的有效性。结果表明,结构元素和关节中的损坏可以逐步地定位和量化。数值研究表明,模态特性相对于关节损伤的敏感性远小于条形元素的损坏。

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