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NUMERICAL MODELLING OF VERTICAL-AXIS AND TRANSVERSE-FLOW HYDROKINETIC TURBINE IN THE RIVER LOIRE

机译:河卢瓦尔垂直轴和横向流水力汽轮机的数值模型

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Hydrokinetic turbines can recover the kinetic energy of marine or river currents. The HYDROFLUV research and development project (funded by FUI with support from the Tenerrdis, DERBI and DREAM clusters) aims to demonstrate the feasibility and acceptability of vertical-axis and transverse-flow turbines. Members of the HYDROFLUV project - Hydroquest, FOC Transmissions, ERNEO, Biotope, EDF, Artelia and the LEGI laboratory - are working both on improving the machines and on developing a more complete commercial offering (administrative authorizations, impact studies and profitability). Numerical modelling conducted by the LEGI laboratory and Hydroquest has led to the definition of the machine's characteristics and main parameters. The incorporation of these terms in to a larger three-dimensional numerical model has enabled other parameters to be analyzed, such as head loss around the machine (variation in the free surface and current), interactions between machines, and hydrosedimentary impacts. Several academic studies have validated the developments made by comparing the models. The practical application concerns a study of the prototype scheduled to be placed in the river Loire in Orleans at the end of 2014. The model accurately represents the impacts of a machine on its environment and has proved to be highly representative compared to more specific local models, which are for the moment two-dimensional and require longer calculation times.
机译:水力涡轮机可以恢复海洋或河流的动能。 Hydrofluv研究和开发项目(由Fui资助的Tenerrdis,Derbi和Dream集群资助)旨在证明垂直轴和横向流动涡轮机的可行性和可接受性。 Hydrofluv项目的成员 - Hydroquest,Foc传输,Erneo,Biotope,EDF,Artelia和Legi实验室 - 正在改进机器以及开发更完整的商业产品(行政授权,影响研究和盈利能力)。 Legi实验室和Hydroquest进行的数值建模导致了机器特性和主要参数的定义。将这些术语纳入更大的三维数值模型使得能够分析其他参数,例如机器周围的头部损耗(自由表面和电流的变化),机器之间的相互作用和受联络影响。几项学术研究验证了通过比较模型的发展。实际应用涉及预定于2014年底安置在奥尔良河卢瓦尔河的原型的研究。该模型准确地代表了机器对其环境的影响,并被证明与更多特定的本地模型相比具有高度代表性,这是暂时二维的并且需要更长的计算时间。

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