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Effect of liquid water content on blade icing shape of horizontal axis wind turbine by numerical simulation

机译:数值模拟研究液态水含量对水平轴风力发电机叶片结冰形状的影响

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To research the law of the icing accretes on near the tip part of rotating blade of large-scale horizontal axis wind turbine (HAWT) influenced by liquid water content (LWC), the icing distribution on a HAWT rotor with rated power of 1.5 MW was simulated based on a Quasi-3D computation method. About 30% part length of blade from tip along span wise to blade root which are the most serious icing area was selected to research. Eight sections of this 30% part were decided and the ice distribution on each sections were simulated. Five kinds of LWC from 0.2 g/m3 to 1.4 g/m3 and two kinds of temperatures including –6°C and –18°C were selected. The medium volume droplet is 30 mm. Three kinds of icing time were selected to analyze the effects of icing time on ice accretion. The icing shape evaluate method was applied to quantitatively analyze the icing shape obtatined under different conditions. The results show that the icing shapes are all horn icing shape under the different LWC when the temperature is –6°C. The icing shapes change from horn icing shape to streamline icing shape with LWC increasing under the temperature of –18°C. The icing accretes on blade surface layer by layer with icing time increasing. The closer the section blade tip, the more icing accretes. This study can be as reference for the research on anti-icing and de-icing technologies for large-scale HAWT.
机译:为了研究液态水含量(LWC)影响的大型水平轴风力发电机(HAWT)旋转叶片尖端附近结冰的规律,额定功率为1.5 MW的HAWT转子的结冰分布为基于Quasi-3D计算方法进行仿真。从叶片尖端到翼展方向到叶片根部(这是最严重的结冰区域)的大约30%的叶片长度被选择进行研究。决定了这30%的部分中的八个部分,并模拟了每个部分的冰分布。选择了从0.2 g / m3到1.4 g / m3的五种LWC,以及–6°C和–18°C两种温度。中等体积的液滴为30毫米。选择了三种结冰时间来分析结冰时间对积冰的影响。采用结冰形状评价方法对不同条件下结冰的结冰形状进行定量分析。结果表明,当温度为–6°C时,在不同的LWC下,结冰形状均为角形结冰形状。在–18°C的温度下,随着LWC的增加,结冰形状从角形结冰形状变为流线形结冰形状。随着结冰时间的增加,结冰逐层地附着在叶片表面上。切面刀片尖端越近,结冰越多。该研究可为大规模HAWT防冰除冰技术的研究提供参考。

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