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陆丰海洋基地码头工程防波堤平面布置
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作者 彭于轩 严晨宇 +1 位作者 王世俊 冯海波 《水运工程》 北大核心 2020年第3期55-62,91,共9页
为保障泊稳条件、减轻工程对周边岸线的影响、合理降低工程投资,对陆丰海洋基地码头工程防波堤平面布置进行研究。结合波浪和潮流观测资料、遥感影像历史资料,运用波浪、潮流泥沙及岸滩演变数值模拟手段,分析陆丰海洋基地所在地水文特性... 为保障泊稳条件、减轻工程对周边岸线的影响、合理降低工程投资,对陆丰海洋基地码头工程防波堤平面布置进行研究。结合波浪和潮流观测资料、遥感影像历史资料,运用波浪、潮流泥沙及岸滩演变数值模拟手段,分析陆丰海洋基地所在地水文特性,厘清不同防波堤平面布置方案下泊稳条件、波浪荷载、流场变化、泥沙运动及岸滩演变特点,探讨工程平面布置方案的优劣。经对比分析,考虑预留更多的扩建空间及分期建设的便利性,建议采用东北开口方案,暂不延长防波堤,并对受影响岸段辅以相应的岸滩整治措施。 展开更多
关键词 陆丰海洋基地 水文特性 数值模拟 防波堤 泊稳条件 工程影响
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Numerical Investigation of Flow Motion and Performance of A Horizontal Axis Tidal Turbine Subjected to A Steady Current 被引量:8
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作者 李林娟 郑金海 +2 位作者 彭于轩 张继生 吴修广 《China Ocean Engineering》 SCIE EI CSCD 2015年第2期209-222,共14页
Horizontal axis tidal turbines have attracted more and more attentions nowadays, because of their convenience and low expense in construction and high efficiency in extracting tidal energy. The present study numerical... Horizontal axis tidal turbines have attracted more and more attentions nowadays, because of their convenience and low expense in construction and high efficiency in extracting tidal energy. The present study numerically investigates the flow motion and performance of a horizontal axis tidal turbine with a supporting vertical cylinder under steady current. In the numerical model, the continuous equation and incompressible Reynolds-averaged Navier-Stokes equations are solved, and the volume of fluid method is employed to track free surface motion. The RNG k-ε model is adopted to calculate turbulence transport while the fractional area/volume obstacle representation method is used to describe turbine characteristics and movement. The effects of installation elevation of tidal turbine and inlet velocity on the water elevation, and current velocity, rotating speed and resultant force on turbine are discussed. Based on the comparison of the numerical results, a better understanding of flow structure around horizontal axis tidal turbine and turbine performance is achieved. 展开更多
关键词 horizontal axis tidal turbine numerical simulation turbine performance flow motion steady current marine renewable energy
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