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Design and analysis of the response of elastically supported wind-break panels of two different permeabilities under wind load

机译:两种不同渗透率的弹性支撑挡风板在风荷载作用下的响应设计与分析

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摘要

The design and response of elastically supported short-length windbreak panels of different permeabilities under wind load is presented. The response of the panels was investigated through full-scale experiments and numerical simulation analysis. Two cladding materials were used: an impermeable film and a permeable net (62% porosity ratio). For the field experiments the elastic support of the panel was achieved by using extension springs which allowed it to pivot in response to wind loading through a hinge support at its base. The wind pressures developed on the panel for various equilibrium positions reached under different wind velocities were measured. The elastic support response resulted in a significant reduction of the wind pressures and the stress resultants on the windbreak for both cladding materials. A combined model coupling two-dimensional computational fluid dynamic simulation and non-linear structural analysis was used to analyse the behaviour of the elastically supported panel when interacting with the wind. The numerical results for the elastic support response under wind load, and the developed wind pressures, were found to agree with the full-scale experiments for both cladding cases. For the permeable cladding case, the wake flow of the elastically supported panel was shown to be free of large scale turbulent eddies when analysed by numerical simulations. The wake airflow for the impermeable panel case was found to be complex and extensive investigation is required. (C) 2014 IAgrE. Published by Elsevier Ltd. All rights reserved.
机译:提出了在风荷载作用下不同渗透率的弹性支撑短长度防风板的设计与响应。通过全面的实验和数值模拟分析研究了面板的响应。使用了两种包层材料:不透水膜和透水网(孔隙率62%)。对于现场实验,面板的弹性支撑是通过使用拉伸弹簧来实现的,该弹簧使面板可以响应风通过底座底部的铰链支撑而枢转。测量了在不同风速下达到的各种平衡位置在面板上产生的风压。弹性支撑响应导致两种包层材料的风压和挡风板上的应力合力显着降低。结合二维计算流体动力学模拟和非线性结构分析的组合模型来分析弹性支撑面板在与风相互作用时的行为。发现在风荷载下弹性支撑响应的数值结果以及所产生的风压与两种包壳情况的全面实验均吻合。对于渗透性包壳情况,当通过数值模拟分析时,弹性支撑板的尾流显示没有大的湍流涡流。发现不透水板箱的尾流很复杂,需要进行大量研究。 (C)2014年。由Elsevier Ltd.出版。保留所有权利。

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