首页> 外文会议>International conference on ocean, offshore and arctic engineering;OMAE2011 >A METHODOLOGY FOR ASSESSMENT OF INTERNAL FLOW-INDUCED VIBRATION (FIV) IN SUBSEA PIPING SYSTEMS
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A METHODOLOGY FOR ASSESSMENT OF INTERNAL FLOW-INDUCED VIBRATION (FIV) IN SUBSEA PIPING SYSTEMS

机译:浅埋管道系统内部流动引起的振动(FIV)评估方法

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A methodology is presented for assessing internal flow-induced vibrations (FIV) in subsea piping systems. Finite Element (FE) models are constructed for the subject piping systems, including insulation, internal hydrocarbon weight and added mass of the surrounding sea water. Operating vibration data are measured using ROV-deployable accelerometer loggers clamped directly to the piping systems. The measured data are processed, analyzed and used for two purposes: model verification and dynamic response correlation. Modal parameters are extracted from the measured data and compared to the modal parameters computed from the structural FE model. The model is refined until the frequencies and mode shape errors are within the desired tolerance. The measured data are then used to derive a representative forcing function for use with frequency-domain random response analysis. The forcing function is derived such that the properties of the predicted vibration spectrum match those of the measured vibration spectrum for all measurement locations. The method presented herein provides a novel semi-empirical technique for calibrating FE models to make fatigue life predictions for subsea piping systems using measured vibration data.
机译:提出了一种方法,用于评估海底管道系统中的内部流致振动(FIV)。针对主题管道系统构建了有限元(FE)模型,包括绝缘,内部碳氢化合物重量和周围海水的附加质量。使用可固定在管道系统上的可部署ROV的加速度计记录仪测量运行振动数据。对测量数据进行处理,分析并用于两个目的:模型验证和动态响应关联。从测量数据中提取模态参数,并将其与从结构有限元模型计算出的模态参数进行比较。优化模型,直到频率和模式形状误差在所需的公差范围内。然后,将测得的数据用于推导代表性的强迫函数,以用于频域随机响应分析。得出强制函数,以便对于所有测量位置,预测的振动谱的属性与测量的振动谱的属性匹配。本文介绍的方法提供了一种新颖的半经验技术,用于校准FE模型,以使用测得的振动数据对海底管道系统进行疲劳寿命预测。

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