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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 >BLWT, CFD and HAM modelling vs. the real world: Bridging the gaps with full-scale measurements
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BLWT, CFD and HAM modelling vs. the real world: Bridging the gaps with full-scale measurements

机译:BLWT,CFD和HAM建模与真实世界的对比:通过全面测量弥合差距

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摘要

The boundary layer wind tunnel (BLWT), which reproduces the increase of wind speed and the propagation of mechanically induced turbulence upwards from the ground, owes its development and validation to measurements of surface pressures, building motions, and other wind effects on full-scale structures. Computational fluid dynamics models are now considered useful adjuncts for some tasks in wind engineering, thanks to encouraging comparisons with BLWT and full-scale results. More recently still, researchers are turning to elaborate computer models to study the transfer of heat, air, and moisture (HAM) through the building envelope. Full-scale experiments to validate HAM computer modelling will be more complex and costly than those for wind alone, but such benchmark data are essential if we are to have confidence in our predictions of the serviceability and durability of building envelopes in the real world.
机译:边界层风洞(BLWT)重现了风速的增加以及机械引起的湍流从地面向上传播的过程,这归功于边界层风洞的开发和验证,这是由于对表面压力,建筑物运动以及其他风效应进行了全面测量结构。由于鼓励与BLWT和全尺寸结果进行比较,计算流体动力学模型现在被认为是某些风力工程中有用的辅助工具。最近,研究人员正在转向详细的计算机模型,以研究通过建筑物围护结构的热,空气和湿气(HAM)的传递。验证HAM计算机建模的全面实验将比仅针对风的实验更为复杂且成本更高,但是如果我们对真实世界中建筑围护结构的可维护性和耐用性的预测充满信心,则此类基准数据必不可少。

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