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第 8 期 郝键铭,等: 广东沿海地区桥址风场特性实测研究 1847
surement of basic wind characteristics of trumpet river [16] CAO S, TAMURA Y, KIKUCHI N, et al. Wind
valley[J]. Journal of Chang’an University(Natural Sci‑ characteristics of a strong typhoon[J]. Journal of Wind
ence Edition), 2020, 40(6): 47-56. Engineering and Industrial Aerodynamics, 2009, 97
[10] 蔡向阳, 龚平, 谢鹏, 等 . 赤石特大桥山区地形桥位风 (1): 11-21.
特性现场实测[J]. 公路工程, 2017, 42(2): 1-5. [17] ISHIZAKI H. Wind profiles, turbulence intensities and
CAI Xiangyang, GONG Ping, XIE Peng, et al. Field gust factors for design in typhoon-prone region[J]. Jour‑
measurement of wind characteristics of Chishi Bridge nal of Wind Engineering and Industrial Aerodynamics,
site with mountainous terrain[J]. Highway Engineer‑ 1983, 13(1-3): 55-66.
ing, 2017, 42(2): 1-5. [18] CHOI E C C. Gradient height and velocity profile dur‑
[11] 辛亚兵, 邵旭东, 刘志文, 等 . 高墩多塔斜拉桥沿桥轴 ing typhoons[J]. Journal of Wind Engineering and In‑
向风特性实测分析[J]. 湖南大学学报(自然科学版), dustrial Aerodynamics, 1983, 13(1-3): 31-41.
2016, 43(11): 103-111. [19] 王俊 . U 形峡谷风参数空间分布特征及其对大跨径桥
XIN Yabing, SHAO Xudong, LIU Zhiwen, et al. 梁抖振响应影响研究[D]. 西安: 长安大学, 2022.
Wind characteristics along axis bridge measured at WANG Jun. Wind spatial distribution characteristics in
multi-pylon cable-stayed bridge site with high piers[J]. the U-shaped valley and its effect on buffeting response
Journal of Hunan University(Natural Science Edition), of long-span bridges[D]. Xi’an: Chang’an University,
2016, 43(11): 103-111. 2022.
[12] 陶天友, 金早, 王浩, 等 . 飑线风作用下大跨度斜拉桥 [20] RICHARDS P J, HOXEY R P, SHORT J L. Spectral
模态特性实测研究[J]. 中国公路学报, 2023, 36(7): models for the neutral atmospheric surface layer[J].
138-146. Journal of Wind Engineering and Industrial Aerodynam‑
TAO Tianyou, JIN Zao, WANG Hao, et al. Study on ics, 2000, 87(2-3): 167-185.
measured modal properties of a long-span cable-stayed [21] WEBER R O. Remarks on the definition and estimation
bridge under squall line wind actions[J]. China Journal of friction velocity[J]. Boundary-Layer Meteorology,
of Highway and Transportation, 2023, 36(7): 138- 1999, 93(2): 197-209.
146. [22] KAIMAL J, WYNGAARD J, IZUMI Y, et al. Spec‑
[13] TAO T, HE J, WANG H, et al. Efficient simulation tral characteristics of surface-layer turbulence[J]. Quar‑
of non-stationary non-homogeneous wind field: fusion terly Journal of the Royal Meteorological Society,
of multi-dimensional interpolation and NUFFT[J]. 1972, 98(417): 563-589.
Journal of Wind Engineering and Industrial Aerodynam‑ [23] VON KÁRMÁN T. Progress in the statistical theory of
ics, 2023, 236: 105394. turbulence[J]. Proceedings of the National Academy of
[14] TAO T Y, WANG H. Efficient buffeting analysis of Sciences of the United States of America, 1948, 34
long-span bridges under non-stationary winds: a 2D in‑ (11): 530-539.
terpolation enhanced approach[J]. Journal of Sound and [24] PANOFSKY H A, MCCORMICK R A. The spec‑
Vibration, 2023, 559: 117754. trum of vertical velocity near the surface[J]. Quarterly
[15] 中 华 人 民 共 和 国 交 通 运 输 部 . 公 路 桥 梁 抗 风 设 计 规 Journal of the Royal Meteorological Society, 1960, 86
范: JTG/T 3360-01―2018[S]. 北京:人民交通出版社 (370): 495-503.
股份有限公司, 2019.
第一作者: 郝键铭(1991—),男,博士,讲师。
Ministry of Transport of the People’s Republic of Chi‑
E-mail: jianminghao@chd.edu.cn
na. Wind-resistant design specification for highway
通信作者: 王 峰(1983—),男,博士,副教授。
bridges: JTG/T 3360-01―2018[S]. Beijing: China
E-mail: wf@chd.edu.cn
Communications Press Co. Ltd., 2019.

