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The Numerical Simulation of the Impact on the Hangzhou Bay Bridge Offshore Platform and the Sightseeing tower

机译:杭州湾桥海上平台和观光塔对影响的数值模拟

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In this paper, the distribution of surface wind pressure and wind speed of Hangzhou bay bridge, offshore platform and sightseeing tower is numerically simulated based on Fluent. Two turbulence models, standard k ε model and Realizable k ε model, are used. The influence of the wind pressure distribution of the offshore platform and sightseeing tower by Hangzhou bay bridge is also analyzed. And the detailed comparison between numerical simulation and wind tunnel test is given. Results show that the impact of Hangzhou bay bridge on platform and sightseeing tower occurs mainly with the angle of the wind less than 45~0. When the angle of the wind is more than 45~0, the impact is little. The upper of the sightseeing tower does not almost suffer the effect of other buildings. The surface pressure of the platform changes from 5% to 15% between under bridge and under non-bridge condition. The surface pressure of sightseeing tower changes from 0.05% to 3%. The influence on the platform by the bridge is significant but not significant on the sightseeing tower. The simulation results of the tower and mast structure given by both standard k ε model and Realizable k ε model find that the windward side is ideal; the crosswind side is the best; the leeward side is less than ideal. By contrast, the Realizable k ε model is a closer correlation with wind tunnel test than standard k ε model.
机译:本文基于流利的方式模拟了杭州湾桥,海上平台和观光塔的表面风压和风速分布。使用两个湍流模型,标准kε模型和可实现的kε模型。杭州湾桥海上平台和观光塔风压分配的影响。给出了数值模拟与风洞测试的详细比较。结果表明,杭州湾桥对平台和观光塔的影响主要是风的角度小于45〜0。当风的角度超过45〜0时,影响很少。观光塔的上层几乎不会遭受其他建筑物的影响。平台的表面压力在桥梁和非桥梁条件下变为15%至15%。观光塔的表面压力从0.05%变为3%。在观光塔上,桥梁对平台对平台的影响显着,但在观光塔上不显着。标准Kε模型给出的塔和桅杆结构的仿真结果和可实现的Kε模型发现迎风侧是理想的;横越方面是最好的; Leeward侧不太理想。相比之下,可实现的Kε模型与比标准kε模型更接近风洞试验的相关性。

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