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Unsteady fluid mechanics effects in water based human locomotion

机译:非稳态流体力学对水基人体运动的影响

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Computational fluid mechanics (CFD) has made substantial progress on modelling a variety of important problems in industry. However, there is still lack of reliable methods to model the motion of the body in water. This is a central issue in understanding animal and human propulsion in water not only to advance science but to explore the possibility of utilising such propulsion modes for man made vehicles. The presented work identified the added mass effect as the prime contributor to propulsive force generation. The use of boundary element method (BEM) proved very successful as it allowed reducing this dynamic problem to a quasi-static one without sacrificing accuracy in the model. The comparison between the experimental data and the simulation result was in the range of 95% (average accuracy) suggesting that the added mass effect and dynamic lift and drag are the most significant physical phenomena in propulsive force generation despite the fact that there is undoubtedly and the presence of turbulent effects that were not considered.
机译:计算流体力学(CFD)在建模行业中的许多重要问题方面取得了实质性进展。但是,仍然缺乏可靠的方法来模拟人体在水中的运动。这是理解水中动物和人类推进力的中心问题,这不仅是为了推动科学发展,而且是探索将这种推进模式用于人造车辆的可能性。提出的工作确定了增加的质量效应是推动力产生的主要因素。边界元法(BEM)的使用非常成功,因为它可以将这一动态问题简化为准静态问题,而又不牺牲模型的准确性。实验数据与模拟结果之间的比较在95%(平均精度)范围内,这表明,尽管存在以下事实,但附加的质量效应和动态升力和阻力是推进力产生中最重要的物理现象。存在未考虑的湍流效应。

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