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Hydraulic Darrieus turbines efficiency for free fluid flow conditions versus power farms conditions

机译:达里厄斯(Darrieus)液压涡轮机在自由流体流动条件下与发电厂条件之间的效率

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The present study deals with the efficiency of cross flow water current turbine for free stream conditions versus power farm conditions. In the first part, a single turbine for free fluid flow conditions is considered. The simulations are carried out with a new in house code which couples a Navier-Stokes computation of the outer flow field with a description of the inner flow field around the turbine. The latter is based on experimental results of a Darrieus wind turbine in an unbounded domain. This code is applied for the description of a hydraulic turbine. In the second part, the interest of piling up several turbines on the same axis of rotation to make a tower is investigated. Not only is it profitable because only one alternator is needed but the simulations demonstrate the advantage of the tower configuration for the efficiency. The tower is then inserted into a cluster of several lined up towers which makes a barge. Simulations show that the average barge efficiency rises as the distance between towers is decreased and as the number of towers is increased within the row. Thereby, the efficiency of a single isolated turbine is greatly increased when set both into a tower and into a cluster of several towers corresponding to possible power farm arrangements.
机译:本研究涉及横流水力水轮机在自由水流条件下与发电场条件下的效率。在第一部分中,考虑了用于自由流体流动条件的单个涡轮机。用新的内部代码进行仿真,该代码将外部流场的Navier-Stokes计算与对涡轮机周围内部流场的描述结合在一起。后者基于Darrieus风力涡轮机在无界域中的实验结果。该代码适用于水轮机的描述。在第二部分中,研究了在同一旋转轴上堆叠多个涡轮机以制造塔的兴趣。由于仅需要一台交流发电机,因此不仅有利可图,而且仿真结果证明了塔架配置在效率方面的优势。然后,将塔插入由几排排成一列的塔组成的集群中,从而构成驳船。仿真表明,随着行间塔之间距离的减小和塔数的增加,平均驳船效率也会提高。由此,当既被设置成塔架又被设置成对应于可能的发电站布置的几塔的集群时,单个隔离式涡轮机的效率大大提高。

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