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海峡内最大可开发潮流能计算 被引量:2
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作者 杨忠良 许雪峰 施伟勇 《太阳能学报》 EI CAS CSCD 北大核心 2017年第6期1706-1710,共5页
根据海峡内潮流能的来源和构成,推导最大可开发潮流能的理论公式,并进一步得到潮流能可开发率的计算式,得出一种数学上更为严谨的潮流能评估计算方法。由数学表达式可见,潮流能最大可开发率仅与曼宁粗糙系数和水深有关。经选取舟山北侧... 根据海峡内潮流能的来源和构成,推导最大可开发潮流能的理论公式,并进一步得到潮流能可开发率的计算式,得出一种数学上更为严谨的潮流能评估计算方法。由数学表达式可见,潮流能最大可开发率仅与曼宁粗糙系数和水深有关。经选取舟山北侧海峡建立二维潮流数值模型,将模型计算得到的海峡两侧水头值代入理论公式,得到该海峡最大可开发潮流能为8.14×10~4k W,仅约为实测潮流能总量的30%。 展开更多
关键词 潮流能计算方法 潮流能公式 舟山 潮流能功率
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基于FVCOM模型的潮流能发电装置输入能量计算 被引量:2
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作者 董宇航 王项南 +2 位作者 白志刚 贾宁 夏海南 《海洋技术学报》 2021年第5期86-91,共6页
近年来,我国潮流能发电技术发展迅速,对潮流能发电装置进行测评的需求日益迫切,电能转换效率是评价发电装置的重要指标,而准确得到发电装置输入流速特性是其中的关键。本文基于FVCOM模型,对潮流能发电装置所处海域进行潮流数值模拟,并... 近年来,我国潮流能发电技术发展迅速,对潮流能发电装置进行测评的需求日益迫切,电能转换效率是评价发电装置的重要指标,而准确得到发电装置输入流速特性是其中的关键。本文基于FVCOM模型,对潮流能发电装置所处海域进行潮流数值模拟,并通过与实测数据的对比对模拟结果进行验证,得到发电装置处的流速特性,对潮流能发电机组的潮流能输入值进行计算,为计算该潮流能发电装置的电能转换效率,评价该发电装置的功率特性提供了有效的方法。 展开更多
关键词 FVCOM 潮流能 潮流能发电 潮流能计算 功率特性
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Performance and Internal Flow of a Counter-rotating Type Tidal Stream Turbine 被引量:1
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作者 Bin Huang Toshiaki Kanemoto 《Journal of Thermal Science》 SCIE EI CAS CSCD 2015年第5期410-416,共7页
In the past decade, the tidal energies have caused worldwide concern as it can provide regular and predictable re- newable energy resource for power generation. The majority of technologies for exploiting the tidal st... In the past decade, the tidal energies have caused worldwide concern as it can provide regular and predictable re- newable energy resource for power generation. The majority of technologies for exploiting the tidal stream energy are based on the concept of the horizontal axis propellers, which can be derived from the design and operation of wind turbines. However, there are some peculiar features such as the propeller working in the seawater with free surface and the possible occurrence of cavitation as compared with wind turbines. Especially, for a coun- ter-rotating type tidal stream power turbine, it is difficult to accurately predict the interaction between the front and rear blades at the design stage by blade element momentum theory. As a result, CFD shows its advantage to predict the performance of counter-rotating type propellers of the tidal stream turbi^le. In order to improve the accuracy of CFD predictions, the predicted results must be verified with experimental values. In this paper, a CFD model using block-structured grid was set up and experimental test was performed in a water tunnel for a tidal stream turbine with counter-rotating type propellers. The comparison between CFD predictions and experimental data shows quite good agreement on the power coefficients, which provides an evidence of validation of the CFD model. Such results offer the necessary confidence in the accuracy of the set up CFD model for the coun- ter-rotating type tidal stream turbine. 展开更多
关键词 COUNTER-ROTATING tidal stream turbine internal flow CFD experimental validation
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