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首页> 外文期刊>Journal of Power and Energy >The importance of flow and turbulence characteristics for hydrokinetic energy development on the Tanana River at Nenana, Alaska
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The importance of flow and turbulence characteristics for hydrokinetic energy development on the Tanana River at Nenana, Alaska

机译:流量和湍流特性对阿拉斯加内纳纳塔那纳河上水动力能源开发的重要性

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摘要

The site selection for the installation of hydrokinetic devices along a river reach is an issue of fundamental importance. While it is acknowledged that multiple factors such as accessibility, navigation, safety, and hydraulics, among many others, must be considered in the final decision, this article focuses on the influence of river morphology on turbulence flow parameters. Specifically, continuous high-resolution velocity measurements from a hydrokinetic resource assessment on the Tanana River near Nenana in the interior of Alaska are analysed to estimate, kinetic energy (KE), turbulent kinetic energy (TKE) as well as KE partition at particular locations. To accomplish these tasks, two different methods used to rotate the coordinate systems into the main flow direction are correlated and compared in order to extract the turbulent parameters from the main flow. The coordinate system methods include the streamline coordinate rotation and the extraction of statistical fluctuations from the average flow. The streamline coordinate rotation method is chosen to extract the TKE in temporal series. The calculated TKE was up to 30 per cent of the total flow KE in measurements located in pools and dissipated downstream, beyond the highly turbulent locations of bathymetric depressions and river bends. The overall KE increased over a bed free of major macro-obstacles and reduced depth, where the TKE fraction accounted for only 2 per cent of the total KE. The visualizations of the KE and TKE are compared with the river morphology, leading to identification of helical flow, flow separation, and turbulent flow structures along the river bend and in pools to help the decision-making process in hydrokinetic planning.
机译:沿河段安装水动力装置的选址是一个至关重要的问题。尽管公认的最终决定中必须考虑多种因素,例如可及性,导航,安全性和水力等,但本文着重研究河流形态对湍流参数的影响。具体而言,分析了阿拉斯加内部Nenana附近的塔纳纳河上水动力资源评估中的连续高分辨率速度测量结果,以估算动能(KE),湍动能(TKE)以及在特定位置的KE分配。为了完成这些任务,将用于将坐标系旋转到主流方向的两种不同方法进行了关联和比较,以便从主流中提取湍流参数。坐标系方法包括流线型坐标旋转和从平均流量中提取统计波动。选择流线坐标旋转法提取时间序列中的TKE。计算得出的TKE高达位于池中并消散到下游的测量值中的总流量KE的30%,超出了深测深处和河道的高度湍流位置。在没有主要宏观障碍且深度减小的床上,整体KE有所增加,其中TKE分数仅占总KE的2%。将KE和TKE的可视化与河流形态进行比较,从而识别出沿河弯处和水池中的螺旋流,水流分离和湍流结构,从而有助于水动力规划的决策过程。

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    《Journal of Power and Energy》 |2012年第2期|p.283-299|共17页
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