H
Huajun Li
Researcher at Ocean University of China
Publications - 153
Citations - 2055
Huajun Li is an academic researcher from Ocean University of China. The author has contributed to research in topics: Modal analysis & Modal. The author has an hindex of 20, co-authored 143 publications receiving 1512 citations.
Papers
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H2 active vibration control for offshore platform subjected to wave loading
TL;DR: In this paper, the authors developed a proper procedure on applying H2 control algorithm for controlling the lateral vibration of a jacket-type offshore platform by using an active mass damper.
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Cross-model cross-mode method for model updating
TL;DR: A direct, physical property adjustment model updating method, named as cross-model cross-mode (CMCM) method, capable of updating the mass and stiffness matrices simultaneously based on very limited measured mode shapes and modal frequencies is developed.
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A new analytical solution for wave scattering by a submerged horizontal porous plate with finite thickness
Yong Liu,Huajun Li,Yucheng Li +2 more
TL;DR: In this article, a new analytical solution for water wave scattering by a submerged horizontal porous plate breakwater with finite thickness was given in the context of linear potential theory, where the original velocity potential was split into a symmetric part and an antisymmetric part.
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Using incomplete modal data for damage detection in offshore jacket structures
TL;DR: In this article, the authors applied the cross-model cross-mode (CMCM) method for damage detection that is capable of identifying the damage to individual members of offshore jacket platforms, when limited, spatially incomplete modal data is available.
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Blended wind fields for wave modeling of tropical cyclones in the South China Sea and East China Sea
TL;DR: Wang et al. as mentioned in this paper proposed a blended TC wind model combining two datasets, which shows good capacity of the TC wind simulation, and applied the blended wind model is applied in TC wave simulations in the South China Sea and East China Sea (ECS) of 4 years (2011-2014).