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首页> 外文期刊>Journal of Wind Engineering and Industrial Aerodynamics: The Journal of the International Association for Wind Engineering >Examination of the physical assumptions of a quasi-steady vector model using the integral momentum equation
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Examination of the physical assumptions of a quasi-steady vector model using the integral momentum equation

机译:用积分动量方程检查准稳态矢量模型的物理假设

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摘要

Quasi-Steady (QS) vector models have served as a convenient and effective tool for wind load estimations for low-rise buildings in the wind engineering community. In order to understand the applicability for practice, the physical assumptions of a QS vector model are investigated in this paper. The derivation is done through algebraic manipulation of the time-averaged integral momentum equation, which is used to relate mean, area-averaged, roof surface pressures to the mean flow and turbulence field above a roof. The two main assumptions of the QS model are revealed through this process: (i) The streamlines of an instantaneous flow near the roof are assumed to be the mean streamlines so that the instantaneous direction of the flow measured at the reference point is equivalent to the mean direction; (ii) The magnitude of the instantaneous flow is obtained by amplifying the magnitude of the mean flow at a spatially uniform rate such that the amplified magnitude of mean velocity is equivalent to the instantaneous magnitude measured at the reference point. Missing terms in the QS model are used to develop correction terms to improve QS model performance.
机译:准稳态(QS)矢量模型已成为风力工程社区低层建筑的风负荷估计的方便有效工具。为了了解实践的适用性,本文研究了QS矢量模型的物理假设。通过对时间平均的整体动量方程的代数操纵来完成衍生,其用于将平均值,面积平均,屋顶表面压力与屋顶上方的平均流动和湍流场进行相关联。通过该过程揭示了QS模型的两个主要假设:(i)假设屋顶附近的瞬时流动的流线是平均流线,使得在参考点处测量的流程的瞬时方向等同于平均方向; (ii)通过以空间均匀的速率放大平均流量的大小来获得瞬时流动的大小,使得平均速度的放大幅度等同于在参考点处测量的瞬时幅度。 QS模型中的缺失术语用于开发校正项以提高QS模型性能。

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