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国家自然科学基金(51205346)

作品数:2 被引量:18H指数:2
相关作者:李伟张大海林勇刚鲍经纬刘宏伟更多>>
相关机构:浙江大学更多>>
发文基金:国家自然科学基金中国博士后科学基金浙江省自然科学基金更多>>
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基于液压传动的浮力摆式波浪能发电系统稳压恒频控制被引量:9
2013年
将液压传动应用于波浪能转换装置,并提高能量转换稳定性及转换效率是波浪能开发的热点。文中介绍了基于液压传动的独立浮力摆式波浪能发电系统的结构及工作原理,分析了通过蓄能器、负载控制及变量液压马达排量控制提高系统能量俘获效率及能量输出稳定性的原理。在联合仿真环境下建立了系统整机模型进行计算机仿真,然后进行了半物理试验仿真。计算机和半物理试验仿真的结果表明,基于所述调控原理的浮力摆式波浪能发电系统的能量转换效率及能量输出稳定性得到了提高,验证了调控原理的正确性。
鲍经纬李伟张大海林勇刚刘宏伟
关键词:液压传动波浪能
Numerical Modeling on Hydrodynamic Performance of A Bottom-Hinged Flap Wave Energy Converter被引量:9
2013年
The hydrodynamic performance of a bottom-hinged flap wave energy converter (WEC) is investigated through a frequency domain numerical model. The numerical model is verified through a two-dimensional analytic solution, as well as the qualitative analysis on the dynamic response of avibrating system. The concept of "optimum density" of the bottom-hinged flap is proposed, and its analytic expression is derived as well. The frequency interval in which the optimum density exists is also obtained. The analytic expression of the optimum linear damping coefficient is obtained by a bottom-hinged WEC. Some basic dynamic properties involving natural period, excitation moment, pitch amplitude, and optimum damping coefficient are analyzed and discussed in detail. In addition, this paper highlights the analysis of effects on the conversion performance of the device exerted by some important parameters. The results indicate that "the optimum linear damping period of 5.0 s" is the most ideal option in the short wave sea states with the wave period below 6.0 s. Shallow water depth, large flap thickness and low flap density are advised in the practical design of the device in short wave sea states in order to maximize power capture. In the sea state with water depth of 5.0 m and wave period of 5.0 s, the results of parametric optimization suggest a flap with the width of 8.0 m, thickness of 1.6 m, and with the density as little as possible when the optimum power take-off (PTO) damping coefficient is adopted.
赵海涛孙志林郝春玲沈家法
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