首页> 外文会议>International Conference on Offshore Mechanics and Arctic Engineering >COMPARING ENERGY YIELDS FROM FIXED AND YAWING HORIZONTAL AXIS MARINE CURRENT TURBINES IN THE ENGLISH CHANNEL
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COMPARING ENERGY YIELDS FROM FIXED AND YAWING HORIZONTAL AXIS MARINE CURRENT TURBINES IN THE ENGLISH CHANNEL

机译:将能源收益率从英式频道中的固定和横摆水平轴上船用涡轮机进行比较

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At some sites with high tidal stream velocities there is an appreciable change in flow direction ('swing') away from 180 degrees between the two maxima of flow speed. In order to assess the performance of horizontal axis marine current turbines in non rectilinear currents, measurements of a model rotor have been made in a towing tank. Curve fits have been calculated as a function of the cosine of the yaw angle squared and the thrust as cosine of the yaw angle. The curve fits have been used in a case study to investigate the impact of fixed-orientation or yawing rotor designs on average annual energy output, at three locations in the English Channel. All three sites are of the type where flow is accelerated around a headland or cape, but their tidal streams vary in deviation from rectilinearity. For two of the sites -^sPortland Bill (Dorset, UK), Race of Alderney (Alderney, Channel Islands/Normandy, France) and St. Catherine's Point (Isle of Wight, UK) - available data consisted of tidal stream diamonds printed on Admiralty navigational charts. These rely on local tidal elevations for interpolation of tidal streams. At the other site -^sSt. Catherine's Point, Isle of Wight, Hampshire - current meter measurements of duration one month were available from the British Oceanographic Data Centre (BODC) at the location of a tidal diamond, allowing a direct tidal analysis. For the three sites, the available data were analyzed into harmonic constituents and then extrapolated into the future. For each year's worth of predictions, the cubed speeds as a function of time were sorted into bins to form a histogram. The annual power output for each design of turbine was then calculated using the known performance at each value of cubed speed. This process was repeated for each year over an 18.6-year lunar nodal cycle in order to ascertain the inter-annual variation in power output.
机译:在具有高潮汐流速度的一些网站上,流量方向(“摆动”)在两个最大的流速之间远离180度的有明显的变化。为了评估非直线电流中水平轴海洋电流涡轮机的性能,在牵引箱中制造了模型转子的测量。已经计算为横摆角平方的余弦的函数和作为横摆角的余弦的函数来计算曲线。在案例研究中已经使用了曲线,以研究定向或偏航转子设计对平均年能输出的影响,在英语通道中的三个位置。所有三个地点都是流动在岬角或斗篷周围加速的类型,但它们的潮汐流偏离直线性时变化。对于两个网站 - ^ Sportland Bill(奥特雷特,英国),奥尔德尼比赛(Alderney,Channels Islands / Normandy,France)和圣凯瑟琳的点(伊斯勒,英国岛) - 可用数据包括印刷的潮流钻石海军部导航图。这些依赖于局部潮汐升高,用于插入潮汐流。在其他网站 - ^ SST。 Catherine的点,怀特岛,汉普郡 - 当前仪表的持续时间测量为一个月,在潮汐钻石的位置,允许直接潮汐分析。对于三个站点,分析了可用的数据,然后将其推成了谐波成分,然后推断到未来。对于每年的预测值,随着时间的函数的速度速度被分类为垃圾箱,以形成直方图。然后使用在立方速度的每个值下的已知性能计算每个涡轮机的每种设计的年功率输出。每年重复该过程超过18.6年的月球节点周期,以确定电力输出的年间变化。

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