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高层建筑风激鞭效应的研究
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作者 包忠有 张友巧 《华东交通大学学报》 1998年第B12期79-83,共5页
风荷载是高层建筑的主要倾向载荷之一,当其顶部建造与高层建筑主部相比其为细小的突出构筑物时,极易发生风激剧烈振动-鞭鞘效应,本文从突出部与主部耦合振动的原理出发,根据风激结构随机振动理论导出风致鞭鞘效应系数公式,制出计... 风荷载是高层建筑的主要倾向载荷之一,当其顶部建造与高层建筑主部相比其为细小的突出构筑物时,极易发生风激剧烈振动-鞭鞘效应,本文从突出部与主部耦合振动的原理出发,根据风激结构随机振动理论导出风致鞭鞘效应系数公式,制出计算鞭鞘效应系数的计算用表,供工程上应用参考。 展开更多
关键词 鞭鞘效应 耦合振动 高层建筑 风载荷 风激结构
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Land-sea breeze circulation structure on the west coast of the Yellow Sea,China
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作者 Yongxiang Ma Jinyuan Xin +8 位作者 Xiaoling Zhang Lindong Dai Klaus Schaefer Shigong Wang Yuesi Wang Zifa Wang Fangkun Wu Xinrui Wu Guangzhou Fan 《Atmospheric and Oceanic Science Letters》 CSCD 2021年第1期14-21,共8页
Land-sea breeze(LSB)is an atmospheric mesoscale circulation that occurs in the vicinity of the coast and is caused by uneven heating resulting from the difference in specific heat capacity between the sea and land sur... Land-sea breeze(LSB)is an atmospheric mesoscale circulation that occurs in the vicinity of the coast and is caused by uneven heating resulting from the difference in specific heat capacity between the sea and land surfaces.The circulation structure of LSB was quantitatively investigated with a Doppler wind lidar Windcube100s on the west coast of the Yellow Sea for the first time.The time of observation was 31 August to 28 September 2018.It was found that the height of LSB development was 700 m to 1300 m.The duration of conversion of LSB was between 6 h and 8 h.The biggest average horizontal sea-breeze wind speed at 425 m was 5.6 m s^(-1),and at 375 m it was 4.5 m s^(-1).During the conversion process from sea breeze to land breeze,the maximum wind shear exponent was 2.84 at 1300 m altitude.During the conversion process from land breeze to sea breeze,the maximum wind shear exponent was 1.28 at 700 m altitude.The differences in wind shear exponents between sea-breeze and landbreeze systems were between 0.2 and 3.6 at the same altitude.The maximum value of the wind shear exponent can reflect the height of LSB development. 展开更多
关键词 Land-sea breeze Vertical wind speed CCirculation structure Doppler wind lidar Yellow sea
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