2020
DOI: 10.1016/j.marstruc.2020.102741
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Equivalent design pressure for ship plates subjected to moving slamming impact loads

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Cited by 8 publications
(2 citation statements)
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References 29 publications
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“…Due to the smaller part of the sharp-eagle OSWEC under water, the minimum value of the vertical wave force on the sharp-eagle OSWEC is smaller than that of the flap-type OSWEC, while the maximum vertical wave force on the sharp-eagle OSWEC is much larger than that of the flap-type OSWEC. In addition, the vertical wave forces on the sharp-eagle OSWEC showed slamming force featured, which dramatically increased and decreased, as also shown in references [36,37]. As shown in Figure 12c, the external torque on the sharp-eagle OSWEC about the hinged point is much smaller than that of the flap-type OSWEC.…”
Section: Nonlinear Wave Slamming Forces On Sharp-eagle Oswecsupporting
confidence: 51%
“…Due to the smaller part of the sharp-eagle OSWEC under water, the minimum value of the vertical wave force on the sharp-eagle OSWEC is smaller than that of the flap-type OSWEC, while the maximum vertical wave force on the sharp-eagle OSWEC is much larger than that of the flap-type OSWEC. In addition, the vertical wave forces on the sharp-eagle OSWEC showed slamming force featured, which dramatically increased and decreased, as also shown in references [36,37]. As shown in Figure 12c, the external torque on the sharp-eagle OSWEC about the hinged point is much smaller than that of the flap-type OSWEC.…”
Section: Nonlinear Wave Slamming Forces On Sharp-eagle Oswecsupporting
confidence: 51%
“…Zhao et al [32] proposed a time-domain decomposition method for multiple impact signals of the crankshaft impact as an example, adjusted the design parameters to make it adaptively adjustable, and accurately identified the impact number and impact effect of the vibration signal. Zhu et al [33] have developed an analytical approach to forecast the elastic dynamic response of a rectangular plate subjected to the influence of moving pressure impact loads. The methodology incorporates a dynamic load coefficient to scrutinize the influence of moving velocity on dynamic loads.…”
Section: Introductionmentioning
confidence: 99%