A theoretical framework for robust implementation of in situ measurements of ocean currents and waves in dynamics of mooring systems

IF 4.1 2区 工程技术 Q1 MECHANICS Physics of Fluids Pub Date : 2024-09-09 DOI:10.1063/5.0221879
Ulises Torres-Herrera, Alireza Keramat, Huan-Feng Duan
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Abstract

We develop an approximated method to solve analytically the equations of motion that describe mooring line dynamics in a one-dimensional model. For the first time, we derive integral closed-form expressions to compute dynamic properties of mooring lines subject to ocean currents and waves of arbitrary time and spatial dependence, in terms of modified Bessel functions. This is done by decomposing the mooring line in three regions where different approximations and mathematical techniques of solution are carried out. Our analytical results provide a robust framework to simulate and analyze extreme realistic oceanic events when data from in situ ocean observation systems are available, regardless of the resolution or coarseness of subsurface measurements and even for long acquisition times. In order to prove the advantages of this approach, we have processed data from two stations in the National Data Buoy Center of the National Oceanic and Atmospheric Administration. From simulations with ocean currents data, we have gained insights into the coupling of the spatial modulation of ocean currents with the characteristic wavelengths of elastic lines. From simulations with ocean waves data, we have defined a scheme to analyze wave data and identify the contribution of each subset of frequency peaks to the net fluctuation of mooring line tension. This could be useful for classification of irregular waves based on their impact on mooring line tension. The development of better tools that integrate theoretical and experimental findings is necessary for the assessment of marine structures under the environmental conditions associated with climate change.
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在系泊系统动力学中稳健实施洋流和海浪现场测量的理论框架
我们开发了一种近似方法,用于分析求解描述一维模型中系泊管动态的运动方程。我们首次推导出积分闭式表达式,用修正贝塞尔函数计算受任意时间和空间依赖性洋流和波浪影响的系泊线的动态特性。这是通过将系泊线分解为三个区域来实现的,在这三个区域中采用了不同的近似方法和数学求解技术。我们的分析结果为模拟和分析极端现实海洋事件提供了一个稳健的框架,在有原位海洋观测系统数据的情况下,无论次表层测量的分辨率或粗糙度如何,甚至在采集时间较长的情况下也是如此。为了证明这种方法的优势,我们处理了美国国家海洋和大气管理局国家数据浮标中心两个站点的数据。通过模拟洋流数据,我们深入了解了洋流空间调制与弹性线特征波长之间的耦合关系。通过模拟海洋波浪数据,我们确定了一种分析波浪数据的方案,并确定了每个频率峰值子集对系泊线张力净波动的贡献。这有助于根据不规则波浪对系泊线张力的影响对其进行分类。要评估气候变化环境条件下的海洋结构,就必须开发更好的工具,将理论和实验结果结合起来。
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来源期刊
Physics of Fluids
Physics of Fluids 物理-力学
CiteScore
6.50
自引率
41.30%
发文量
2063
审稿时长
2.6 months
期刊介绍: Physics of Fluids (PoF) is a preeminent journal devoted to publishing original theoretical, computational, and experimental contributions to the understanding of the dynamics of gases, liquids, and complex or multiphase fluids. Topics published in PoF are diverse and reflect the most important subjects in fluid dynamics, including, but not limited to: -Acoustics -Aerospace and aeronautical flow -Astrophysical flow -Biofluid mechanics -Cavitation and cavitating flows -Combustion flows -Complex fluids -Compressible flow -Computational fluid dynamics -Contact lines -Continuum mechanics -Convection -Cryogenic flow -Droplets -Electrical and magnetic effects in fluid flow -Foam, bubble, and film mechanics -Flow control -Flow instability and transition -Flow orientation and anisotropy -Flows with other transport phenomena -Flows with complex boundary conditions -Flow visualization -Fluid mechanics -Fluid physical properties -Fluid–structure interactions -Free surface flows -Geophysical flow -Interfacial flow -Knudsen flow -Laminar flow -Liquid crystals -Mathematics of fluids -Micro- and nanofluid mechanics -Mixing -Molecular theory -Nanofluidics -Particulate, multiphase, and granular flow -Processing flows -Relativistic fluid mechanics -Rotating flows -Shock wave phenomena -Soft matter -Stratified flows -Supercritical fluids -Superfluidity -Thermodynamics of flow systems -Transonic flow -Turbulent flow -Viscous and non-Newtonian flow -Viscoelasticity -Vortex dynamics -Waves
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