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Wind Tunnel Test on Local Wind Field around the Bridge Tower of a Truss Girder

机译:风隧道试验在桁架梁的桥梁塔附近

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The aerodynamic performance of vehicles on a bridge deck depends on the local wind field, especially in a region near a bridge tower. This study was carried out on a large-scale (1: 20.4) truss girder, and wind tunnel tests were performed to determine how the wind fields were affected by the bridge tower in the presence of different wind barriers. The wind barrier parameters significantly affect the wind field. Wind barriers should be sufficiently high to provide a wide protection range and have relatively small porosities to reduce the wind speed. The opening form of the wind barrier should also be considered, where a circular-holed form reduces the wind speed and turbulence more than a horizontal-slatted form. The wind field is affected by structures and bridge towers on the deck. A turning point in the wind speed occurs at a measurement point near the bridge tower, and this point gradually moves upward towards lanes on the leeward side of the bridge. The equivalent wind speed is significantly reduced over a four-meter height range because of shadowing from the bridge tower and the wind barrier.
机译:桥式甲板上车辆的空气动力学性能取决于当地风野,尤其是在桥梁附近的区域。本研究在大规模(1:20.4)桁架梁上进行,并进行风洞测试以确定风域如何受到不同风障的存在下的桥梁。风屏障参数显着影响风场。风障应足够高,以提供宽的保护范围,并且具有相对小的孔隙率来降低风速。还应考虑风屏障的开口形式,其中圆形孔形式比水平套表形式减少了风速和湍流。风场受甲板上的结构和桥塔的影响。风速中的转弯点发生在桥塔附近的测量点,并且该点在桥梁的背风侧向上朝向车道向上移动。由于桥梁塔和风障的阴影,等效风速在四米高的高度范围内显着减少。

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