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首页> 外文期刊>Journal of Fluids Engineering: Transactions of the ASME >Computational Fluid Dynamics Study of the Effect of Leg Position on Cyclist Aerodynamic Drag
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Computational Fluid Dynamics Study of the Effect of Leg Position on Cyclist Aerodynamic Drag

机译:腿部位置对骑车人空气阻力的影响的计算流体力学研究

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摘要

An experimental and numerical analysis of cycling aerodynamics is presented. The cyclist is modeled experimentally by a mannequin at static crank angle; numerically, the cyclist is modeled using a computer aided design (CAD) reproduction of the geometry. Wind tunnel observation of the flow reveals a large variation of drag force and associated downstream flow structure with crank angle; at a crank angle of 15 deg, where the two thighs of the rider are aligned, a minimum in drag is observed. At a crank angle of 75 deg, where one leg is at full extension and the other is raised close to the torso, a maximum in drag is observed. Simulation of the flow using computational fluid dynamics (CFD) reproduces the observed variation of drag with crank angle, but underpredicts the experimental drag measurements by approximately 15%, probably at least partially due to simplification of the geometry of the cyclist and bicycle. Inspection of the wake flow for the two sets of results reveals a good match in the downstream flow structure. Numerical simulation also reveals the transient nature of the entire flow field in greater detail. In particular, it shows how the flow separates from the body of the cyclist, which can be related to changes in the overall drag.
机译:进行了循环空气动力学的实验和数值分析。骑自行车的人是通过模特在静态曲柄角上进行实验建模的;在数值上,使用几何图形的计算机辅助设计(CAD)复制对骑车人建模。风洞对水流的观察表明,拖曳力和相关的下游水流结构随曲柄角变化很大。在15度的曲柄角(骑手的两个大腿对齐)处,观察到阻力最小。在75度的曲柄角下,一只脚完全伸展,另一只脚靠近躯干,观察到最大阻力。使用计算流体动力学(CFD)对流量进行模拟可再现观察到的阻力随曲柄角的变化,但会低估实验阻力的测量值约15%,这可能至少部分是由于简化了骑车人和自行车的几何形状。对两组结果的尾流检查表明,下游流动结构匹配良好。数值模拟还更详细地揭示了整个流场的瞬态性质。特别是,它显示了气流如何与骑车人的身体分离,这可能与总阻力的变化有关。

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