Abstract:In order to study the dynamic characteristics of lattice steel pylon cable-stayed bridge, taking Baoji Lugang Bridge as the background, the dynamic characteristics of the bridge are measured by pulsation test method, and compared and analyzed with the finite element model value. On this basis, the influences of the parametric change of the main pylon stiffness, main girder stiffness, side span auxiliary piers, main pylon height and other parameters are analyzed. The results show that the measured modal vibrating shape is basically consistent with the theoretical modal vibrating shape, and the measured frequency value is slightly larger than the theoretical value. The vibrating modes of the pylon and girder of lattice steel pylon cable-stayed bridge are easy to be excited at the same time, coupled with each other and affected each other, which are not conducive to earthquake resistance. The whole torsional stiffness of bridge pylon is big enough to improve the wind resistant capability of structure. The side span auxiliary piers can greatly improve the longitudinal rigidity and vertical rigidity of the bridge, which can enhance the wind resistance of the structure and improve the driving comfort. For its dynamic characteristics, the best pylon-to-span ratio of this type of bridge is between 1/3 and 1/2.5.