ARTÍCULO
TITULO

A Coupled Hydrodynamic?Structural Model for Flexible Interconnected Multiple Floating Bodies

Mingsheng Chen    
Mingjun Ouyang    
Hongrui Guo    
Meiyan Zou and Chi Zhang    

Resumen

Evaluating the structural safety and seakeeping performance of very large floating structures (VLFS) using the rigid module flexible connector (RMFC) method remains challenging due to the complexity of the coupled hydrodynamic?structural responses in this system. In this study, a coupled hydrodynamic?structural frequency?time domain model is developed based on the RMFC method employing the planar Euler?Bernoulli beam elements to investigate the dynamic responses of multi-module floating systems. To reveal the dynamic characteristics of the systems, the coupled hydrodynamic?structural responses are investigated using a frequency?time-domain numerical model with viscous correction, in which the mass and stiffness attributes of connectors are incorporated into the system. Given the effects of hydrodynamic interaction, consideration is given to the case of three modular boxes connected by flexible beams aligned in series in shallow water to validate the present model. Higher efficiency and accuracy can be found in the system using viscous correction in potential flow theory and introducing state?space model to replace the convolution terms in the Cummins equation for the time domain. Moreover, this model can be extended to a considerable number of floating modules, which provides possibilities to analyze N-module floating systems.

 Artículos similares

       
 
Yalin Dai, Zhouwei Fan, Jian Xu, You He and Xiongqing Yu    
A special feature of airbreathing hypersonic aircraft is the complex coupling between aerodynamic and propulsive performances. This study presents a rapid analysis methodology for the integration of these two critical aspects in the conceptual design of ... ver más
Revista: Aerospace

 
Dilshan S. P. Amarasinghe Baragamage and Weiming Wu    
A three-dimensional (3D) fully-coupled fluid-structure model has been developed in this study to calculate the impact force of tsunamis on a flexible structure considering fluid-structure interactions. The propagation of a tsunami is simulated by solving... ver más
Revista: Water

 
Md. Khairul Hasan, Mohamed Rasmy, Toshio Koike and Katsunori Tamakawa    
The Sangu River basin significantly contributes to national economy significantly; however, exposures to water-related hazards are frequent. As it is expected that water-related disasters will increase manifold in the future due to global warming, the Go... ver más
Revista: Water

 
Valentina Pintos Andreoli, Hikari Shimadera, Hiroto Yasuga, Yutaro Koga, Motoharu Suzuki and Akira Kondo    
This study developed a coupled atmospheric?marine model using the COAWST model system for the Harima Nada area between spring 2010 and winter 2011 to evaluate the seasonal influence of the Kako River?s discharge in the sea. The Kako River is one of the l... ver más
Revista: Water

 
Yang Lu, Xiaochun Wang, Yijun He, Jiping Liu, Jiangbo Jin, Jian Cao, Juanxiong He, Yongqiang Yu, Xin Gao, Mirong Song and Yiming Zhang    
Two coupled climate models that participated in the CMIP6 project (Coupled Model Intercomparison Project Phase 6), the Earth System Model of Chinese Academy of Sciences version 2 (CAS-ESM2-0), and the Nanjing University of Information Science and Technol... ver más