首页> 外文会议>ASME international conference on energy sustainability >EVALUATING THE IMPACT OF FREE-STREAM TURBULENCE ON CONVECTIVE COOLING OF OVERHEAD CONDUCTORS USING LARGE EDDY SIMULATIONS (LES)
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EVALUATING THE IMPACT OF FREE-STREAM TURBULENCE ON CONVECTIVE COOLING OF OVERHEAD CONDUCTORS USING LARGE EDDY SIMULATIONS (LES)

机译:使用大涡模拟(LES)评估自由流对架空导体对流冷却的影响

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This study uses Large Eddy Simulation in the ANSYS Fluent software to assess the accuracy of the forced cooling term for the overhead conductor codes, IEEE 738 [1] and CIGRE 207 [2], for Real Time Thermal Rating of a wind farm power line. The analysis is done for low wind speed, corresponding to Reynolds Number of 3,000. The primary goal is to calculate Nusselt Number for cylindrical conductors with free-stream turbulence. Calculations showed an increase in convective heat transfer from the low turbulence value by ~ 30 % at turbulence intensity of 21% and length scale to diameter ratio of 0.4; and an increase of ~19 % at turbulence intensity of 8% and length scale to diameter ratio of 0.4.
机译:这项研究在ANSYS Fluent软件中使用了大涡模拟来评估风电场电力线实时热额定值的架空导体代码IEEE 738 [1]和CIGRE 207 [2]的强制冷却项的准确性。分析是针对低风速进行的,对应于雷诺数3,000。主要目标是计算具有自由流湍流的圆柱导体的努塞尔数。计算结果表明,在湍流强度为21%,长径比与直径比为0.4时,低湍流值对流换热增加了约30%。湍流强度为8%,长度尺度与直径之比为0.4时,增加了〜19%。

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