Research on the Mechanical Performance and Force Transmission Mechanism of the Hybrid Tower Joint Section in Cable-stayed Bridges Under Eccentric Loading
Sun Ying,Zheng Jialong,Zhuo Weidong,et al.Research on the mechanical performance and force transmission mechanism of the hybrid tower joint section in cable-stayed bridges under eccentric loading[J].Advanced Engineering Sciences,2025,57(3):171‒183.[孙颖,郑佳龙,卓卫东,等.偏心荷载作用下斜拉桥混合塔结合段受力性能及传力机理研究[J].工程科学与技术,2025,57(3):171‒183.]
SUN Ying, ZHENG Jialong, ZHUO Weidong, et al. Research on the Mechanical Performance and Force Transmission Mechanism of the Hybrid Tower Joint Section in Cable-stayed Bridges Under Eccentric Loading[J]. Advanced Engineering Sciences, 2025, 57(3): 171-183.
Sun Ying,Zheng Jialong,Zhuo Weidong,et al.Research on the mechanical performance and force transmission mechanism of the hybrid tower joint section in cable-stayed bridges under eccentric loading[J].Advanced Engineering Sciences,2025,57(3):171‒183.[孙颖,郑佳龙,卓卫东,等.偏心荷载作用下斜拉桥混合塔结合段受力性能及传力机理研究[J].工程科学与技术,2025,57(3):171‒183.] DOI: 10.12454/j.jsuese.202300599.
SUN Ying, ZHENG Jialong, ZHUO Weidong, et al. Research on the Mechanical Performance and Force Transmission Mechanism of the Hybrid Tower Joint Section in Cable-stayed Bridges Under Eccentric Loading[J]. Advanced Engineering Sciences, 2025, 57(3): 171-183. DOI: 10.12454/j.jsuese.202300599.