Finite element analysis of heave damping plate in the floating type wave power station

Author(s):  
Kun Liu ◽  
Yanjun Liu ◽  
Wei Zhang ◽  
Huaqing Luo
2011 ◽  
Vol 194-196 ◽  
pp. 1982-1985
Author(s):  
Shao Qing Hu ◽  
Yong Li Zhang

According to the characteristics of cooler, the finite element model of air cooler is established using ANSYS f software. The force and moment are acted on nozzles using MPC184 element. The first natural frequency is given. Then the stresses of cooler under normal operating load case and under accidental load case are calculated respectively. The stresses of nozzles and foot were checked according to RCC-M specification and meet the requirements.


2013 ◽  
Author(s):  
Shun Okamoto ◽  
Toru Eshima ◽  
Toshiaki Kanemoto ◽  
Toshihiko Umekage

The authors have invented the unique ocean wave power station, which is composed of the floating type platform with a pair of floats lining up at the interval of one wave pitch and the counter-rotating type wave power unit boarding on the middle position of the platform. Such profiles may make the flow velocity at the runner twice faster than that of the traditional fixed type (OWC). The counter-rotating type wave power unit is composed of the tandem runners submerged in the seawater and the peculiar generator with double rotational armatures. The tandem runners counter-rotate in keeping each rotational direction constant, even at the oscillating flow, where the relative rotational speed is also twice faster than that in the single runner/armature type. It can be expected to make the runner size larger, namely the output higher because the torques are counter balanced in the unit and never act on the platform. At preliminary research, the single stage Wells type runner was boarded on the above platform, while the behavior of the platform and the performance of the power unit were investigated experimentally. The runner works fruitfully in response to the oscillating platform.


2012 ◽  
Vol 614-615 ◽  
pp. 546-549
Author(s):  
Yan Jun Liu ◽  
Xing Wang Sun ◽  
Bo Zheng

The columnof the wave-power generating device is analysed through theoretical analysis using finite element software. The deformation and stress under maximum wave impact force is calculated by harmonic analysis, the result of which indicates that deformation and stress of the maincolumn, which under huge wave impact calculated by Morison theory, is very small. The stress of the column generated by wave load is less than its material yield strength, which indicates that the safety performance meets the requirements.


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