Hengxu Liu
Harbin Engineering University
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Publication
Featured researches published by Hengxu Liu.
Polish Maritime Research | 2016
Wanchao Zhang; Hengxu Liu; Xuewei Zhang; Liang Zhang
Abstract In order to effectively extract and maximize the energy from ocean waves, a new kind of oscillating-body WEC (wave energy converter) with moon pool has been put forward. The main emphasis in this paper is placed on inserting the damping into the equation of heaving motion applied for a complex wave energy converter and expressions for velocity potential added mass, damping coefficients associated with exciting forces were derived by using eigenfunction expansion matching method. By using surface-wave hydrodynamics, the exact theoretical conditions were solved to allow the maximum energy to be absorbed from regular waves. To optimize the ability of the wave energy conversion, oscillating system models under different radius-ratios are calculated and comparatively analyzed. Numerical calculations indicated that the capture width reaches the maximum in the vicinity of the natural frequency and the new kind of oscillating-body WEC has a positive ability of wave energy conversion.
Polish Maritime Research | 2016
Wanchao Zhang; Hengxu Liu; Xuewei Zhang; Liang Zhang; Muhammad Ashraf
Abstract An array of floating point-absorbing wave energy converters (WECs) is usually employed for extracting efficiently ocean wave energy. For deep water environment, it is more feasible and convenient to connect the absorbers array with a floating body, such as a semi-submersible bottom-moored disk, whose function is to act as the virtual seabed. In the present work, an array of identical floating symmetrically distributed cylinders in a coaxial moored disk as a wave energy device is proposed The power take-off (PTO) system in the wave energy device is assumed to be composed of a linear/nonlinear damper activated by the buoys heaving motion. Hydrodynamic analysis of the examined floating system is implemented in frequency domain. Hydrodynamic interferences between the oscillating bodies are accounted for in the corresponding coupled equations. The array layouts under the constraint of the disk, incidence wave directions, separating distance between the absorbers and the PTO damping are considered to optimize this kind of WECs. Numerical results with regular waves are presented and discussed for the axisymmetric system utilizing heave mode with these interaction factors, in terms of a specific numbers of cylinders and expected power production.
Polish Maritime Research | 2017
Ming Liu; Hengxu Liu; Xiongbo Zheng; Hailong Chen; Liquan Wang; Liang Zhang
Abstract The wave energy, as a clean and non-pollution renewable energy sources, has become a hot research topic at home and abroad and is likely to become a new industry in the future. In this article, to effectively extract and maximize the energy from ocean waves, a vertical axisymmetric wave energy converter (WEC) was presented according to investigating of the advantages and disadvantages of the current WEC. The linear and quadratic equations in frequency-domain for the reactive controlled single-point converter property under regular waves condition are proposed for an efficient power take-off (PTO). A method of damping coefficients, theoretical added mass and exciting force are calculated with the analytical method which is in use of the series expansion of eigen functions. The loads of optimal reactive and resistive, the amplitudes of corresponding oscillation, and the width ratios of energy capture are determined approximately and discussed in numerical results.
China Ocean Engineering | 2016
Wanchao Zhang; Hengxu Liu; Liang Zhang; Xuewei Zhang
Journal of Marine Science and Technology | 2017
Hengxu Liu; Wenping Zhang; Xiongbo Zheng; Liang Zhang; Xuewei Zhang; L. Cui
China Ocean Engineering | 2017
Xiongbo Zheng; Yong Ma; Liang Zhang; Jin Jiang; Hengxu Liu
Ocean Engineering | 2018
Hengxu Liu; Liang Zhang; Hailong Chen; Wanchao Zhang; Ming Liu
Journal of Marine Science and Technology | 2018
Z. Y. Zhang; Hengxu Liu; Liang Zhang; Wenping Zhang; Qingwei Ma
Archive | 2017
Ming Liu; Hengxu Liu; Yuanchao Chai; Liquan Wang; Zhiyang Zhang
China Ocean Engineering | 2017
Hengxu Liu; Hai-long Chen; Liang Zhang; Wanchao Zhang; Ming Liu