Direct Displacement Control of Deformed Double Layer Dome

Najmadeen Mohammed Saeed, Shna Jabar Abdulkarim, Hawkar Ali Haji
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引用次数: 3

Abstract

Space structures such as double layer dome is light and active structural system that used for various structural application, for instance structural covers large areas such as exhibition halls, stadium and concert halls. They are aesthetically pleasing in appearance as well as the architectural requirement, in which tolerances of structural shape under changing service conditions are very significant, which high appearance accuracy is requested in some applications. Due to many reasons such as loading, these type of structures may suffer from a noticeable deflection, which leads to a significant potential undesired appearance of the shape. In this situation, the displacements may need to be reduced or eliminated. In this study, by applying the shape adjustment technique that its scheme is depend on the linear force method, shape restoration is performed to the double layer dome model in three different cases corresponding to the directions of loadings were considered. The improvement of controlling nodal displacement can be achieved through using a rather simple and direct method, due to calculating necessary length of actuators by applying a single formulation. It is found that if the number of provided actuators are satisfactory, controlling of all the displaced joints could be performed by a very small percentage of discrepancy, even if the controlled joints connection is not direct with the adjustable members. The technique of shape adjustment is very efficient for double layer dome model, and it can roughly eliminate the displacement of definite joints (Exterior joints only) by simply changing the length of certain bars by eo amount
变形双层穹顶的直接位移控制
双层穹顶等空间结构是一种轻型、主动的结构体系,用于各种结构应用,如结构覆盖大面积的展览馆、体育场、音乐厅等。它们具有美观的外观和建筑要求,其中结构形状在不断变化的使用条件下的公差非常大,在某些应用中要求很高的外观精度。由于许多原因,如负载,这些类型的结构可能遭受明显的偏转,这导致一个重要的潜在的不希望的形状外观。在这种情况下,排水量可能需要减少或消除。本文采用基于线性力法的形状调整技术,在考虑荷载方向的三种不同情况下对双层穹顶模型进行形状恢复。由于采用单一公式计算执行器的必要长度,可以通过使用一种相当简单和直接的方法来改进控制节点位移。研究发现,如果提供的执行器数量令人满意,即使被控制的关节与可调节构件不直接连接,也可以通过很小的误差百分比来控制所有位移关节。形状调整技术对于双层穹顶模型是非常有效的,它可以通过简单地改变某些杆的长度来大致消除某些节点(仅外节点)的位移
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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