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首页> 外文期刊>Journal of ocean engineering and marine energy >A DMST-based tool to establish the best aspect ratio, solidity and rotational speed for tidal turbines in real sea conditions
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A DMST-based tool to establish the best aspect ratio, solidity and rotational speed for tidal turbines in real sea conditions

机译:DMST-based工具建立最好的方面比、可靠性和潮汐的转速发电机在实际海洋环境

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摘要

A Double Multiple Stream Tube (DMST) routine to predict the performance of cross-flow hydrokinetic turbines in real environments is presented, along with a site assessment application to identify the most efficient turbine aspect ratio, solidity and configuration (single, or paired) for a selected area of the Northern Adriatic Sea. The peculiarity of this DMST tool is its 3D character, since it allows to reproduce the vertical distribution of the torque generated by the turbine. To this end, correlations for fluid dynamic phenomena, based on high-fidelity fully CFD simulations, were implemented. The marine circulation code SHYFEM is adopted to obtain velocity profiles for a half lunar cycle period. The sites with the highest mean kinetic power were identified. The DMST routine is equipped with an iterative process able to establish which rotational speed maximizes the power output. Indeed, a spatially non-uniform velocity profile requires to determine the flow velocity more suitable to obtain the rotational speed via Tip Speed Ratio (TSR) definition. To this end, the section of the blades working at optimal TSR varies from top to bottom, until the maximum power is reached. It works as a virtual Maximum Power Point Tracking system able to adapt the turbine operating conditions for the different turbine geometries, and for changes in flow conditions. The results show that for the case study, the performance curve shape influences the optimal TSR blade section: the latter is often located in the upper part of the turbine for the low solidity, whereas, for high solidity turbines, in the bottom half part.
机译:双多流管(DMST)例程预测错流的性能流体动力的发电机在实际环境中,随着网站的评估应用程序来识别最有效的涡轮长宽比、可靠性和配置(单个或成对的)的选择区域亚得里亚海北部。DMST工具是它的3 d角色,因为它允许繁殖的垂直分布扭矩生成的涡轮机。基于流体动力学现象的相关性,在高保真完全CFD模拟,实现的。采用获得速度资料一半吗月球循环周期。平均动能权力被确定。常规配备了一个迭代的过程能够建立转速最大化的输出功率。非均匀速度剖面需要确定流速更合适获得通过涡轮转速比例(TSR)定义。叶片工作在最佳TSR变化从上到下底,直到达到最大功率。是一个虚拟的最大功率点跟踪系统能够适应涡轮操作条件不同涡轮的几何图形,和流量的变化状况。案例研究表明,性能最优TSR叶片曲线形状的影响部分:后者通常是位于上层汽轮机的可靠性低,一部分然而,高可靠性的涡轮机,在下半部分。

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