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Tension prediction for straight cables based on effective vibration length with a two-frequency approach

机译:基于具有双频方法的有效振动长度的直筒张力预测

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Cost-efficient and theoretically simple vibration-based analyses are widely used to assess the axial forces of tensioned members. In the determination of cable forces, the applicability of an explicit-type formula depends on the suitability of the adopted theories and the accuracy of the known parameters. For straight cables, the sectional rigidity is generally assumed to be a known quantity and the end conditions are presumptive. Nevertheless, given data of these parameters could be vague or unreliable. Methodologies which omit the requirement of a priori data are thus preferable in practice.This paper illustrates an effective methodology for the tension prediction of cables with presumptive end conditions by making use of multiple measured mode frequencies. Simple yet accurate formulas are obtained from the exact expressions based on the Bernoulli beam theory. Due to the fact that this approach does not require the knowledge of the flexural rigidity of the testing cable and it can be performed using only a single sensor, the method is suitable to be implemented in a quick diagnosis scheme. Present research emphasizes developing an analytic basis to effectively correlate the proposed formulas with the concept of the effective vibration lengths. This concept has been widely recognized as a useful idea to interpret the dynamics of cable vibrations.
机译:经济高效和理论上简单的基于振动分析广泛用于评估张紧构件的轴向力。在电缆力的确定中,显式式公式的适用性取决于所采用的理论的适用性和已知参数的准确性。对于直线电缆,通常假设截面刚度是已知的量,并且最终条件是推定的。然而,鉴于这些参数的数据可能是模糊的或不可靠的。省略先验数据要求的方法是优选的。本文通过利用多种测量的模式频率来说明具有推定终端条件的电缆张力预测的有效方法。基于Bernoulli光束理论的精确表达获得简单但精确的公式。由于这种方法不需要测试电缆的弯曲刚度并且可以仅使用单个传感器来执行,该方法适合于快速诊断方案中实现。目前的研究强调开发分析基础,以有效地将所提出的公式与有效振动长度的概念相关联。该概念被广泛认可为解释电缆振动动态的有用主意。

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