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GENERATION OF WAVE-FIELD TIME HISTORIES BY THE MODULATED DISCRETE FOURIER TRANSFORMATION

机译:通过调制离散的傅里叶变换产生波场时历史的产生

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In the time domain simulation of the response of an offshore structure under random waves, the time histories of the wave field should be generated as the input to the dynamic equations. Herein the wave field is the wave surface elevation, the water particle velocities and accelerations at structural members. The generated time histories should be able to match the given wave-field spectral descriptions, to trace the structural member motions if it is a compliant offshore structure, and be numerically efficient. Most frequently used generation methods are the direct summation of a limited number of cosine functions, the Fast Fourier Transformation, and the digital filtering model. However, none of them can really satisfy all the above requirements. A novel technique, called the Modulated Discrete Fourier Transformation, has been developed. Under this method, the wave time histories at each time instant is a summation of a few time-varying complex functions. The simulated time histories have continuous spectral density functions, and the motions of the structural members are well included. This method seems to be superior to all the conventional methods in terms of the above mentioned three requirements.
机译:在随机波下近海结构的响应的时域模拟中,应该生成波场的时间历史作为动态方程的输入。这里的波场是波浪表面升高,水颗粒速度和结构构件的加速度。生成的时间历史应该能够匹配给定的波场谱描述,以跟踪结构成员运动如果是兼容的近海结构,并且是数值有效的。最常使用的生成方法是有限数量的余弦功能,快速傅里叶变换和数字滤波模型的直接求和。但是,他们都无法真正满足上述所有要求。已经开发出一种称为调制离散傅里叶变换的新技术。在该方法下,每次即时的波时间历史是几个时变复合功能的总和。模拟时间历史具有连续的光谱密度函数,并且结构构件的运动很好。这种方法似乎优于所有传统方法,就上述三种要求而言。

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