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首页> 外文期刊>Journal of Biomechanics >Computational fluid dynamics analysis of drag and convective heat transfer of individual body segments for different cyclist positions.
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Computational fluid dynamics analysis of drag and convective heat transfer of individual body segments for different cyclist positions.

机译:针对不同骑车人位置的单个身体部分的阻力和对流换热的计算流体力学分析。

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This study aims at investigating drag and convective heat transfer for cyclists at a high spatial resolution. Such an increased spatial resolution, when combined with flow-field data, can increase insight in drag reduction mechanisms and in the thermo-physiological response of cyclists related to heat stress and hygrothermal performance of clothing. Computational fluid dynamics (steady Reynolds-averaged Navier-Stokes) is used to evaluate the drag and convective heat transfer of 19 body segments of a cyclist for three different cyclist positions. The influence of wind speed on the drag is analysed, indicating a pronounced Reynolds number dependency on the drag, where more streamlined positions show a dependency up to higher Reynolds numbers. The drag and convective heat transfer coefficient (CHTC) of the body segments and the entire cyclist are compared for all positions at racing speeds, showing high drag values for the head, legs and arms and high CHTCs for the legs, arms, hands and feet. The drag areas of individual body segments differ markedly for different cyclist positions whereas the convective heat losses of the body segments are found to be less sensitive to the position. CHTC-wind speed correlations are derived, in which the power-law exponent does not differ significantly for the individual body segments for all positions, where an average value of 0.84 is found. Similar CFD studies can be performed to assess drag and CHTCs at a higher spatial resolution for applications in other sport disciplines, bicycle equipment design or to assess convective moisture transfer.
机译:这项研究旨在研究高空间分辨率下自行车骑手的阻力和对流传热。当与流场数据结合使用时,这种提高的空间分辨率可以增加对减阻机理以及与衣物的热应力和湿热性能有关的骑车人的热生理反应的了解。计算流体动力学(稳定的雷诺平均Navier-Stokes)用于评估三个不同骑车人位置的骑车人19个身体部位的阻力和对流传热。分析了风速对风阻的影响,表明雷诺数对风阻有明显的依赖性,其中流线型的位置越多,对雷诺数的依赖性就越大。比较了赛车速度下所有位置的身体部位和整个骑车人的阻力和对流传热系数(CHTC),显示出头部,腿部和手臂的阻力高,而腿部,手臂,手和脚的阻力高。 。对于不同的骑车人位置,各个身体部分的阻力区域明显不同,而发现身体部分的对流热损失对位置的敏感性较低。得出CHTC-风速相关性,其中在所有位置的各个身体段的幂律指数均无显着差异,平均值为0.84。可以进行类似的CFD研究,以更高的空间分辨率评估阻力和CHTC,以用于其他体育学科,自行车装备设计或评估对流水分传递。

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