De-icing Method for Coupled Transmission Tower-Line System
QU Cheng-zhong, Yuejun Liu
Abstract
QU Cheng-zhong, Yuejun Liu
Abstract
For the disaster brought by the transmission line regelation, a new de-icing method is presented in this paper. It is supposed that the ice and transmission line are combined closely when there is no external loads, the composite structure of ice-transmission line is set up, then the coupled model of the composite structure-tower is set up. The equations of motion for the coupled system are derived. The composite structure can be applied to exciting loads, the frequency of which is close to the natural frequency of ice. The natural frequency of ice is far from that of the transmission line. Based on the resonance theory, the ice occurs to deform and crush, finally the ice divorces from the conductors under the function of the exciting load, but those transmission lines are still very well, the analytical solution can be obtained and the new de-icing method for transmission line based on the theory of resonance is got. It is suitable for the transmission line to de-ice through the computation of the concrete example.
OpenAlex reports 6 citations for this work. Citation counts describe recorded attention and do not establish research quality.
A contribution statement is not available in the OpenAlex record.
Method details are not available in the OpenAlex metadata.
Findings are not separately available in the OpenAlex metadata.
Limitations are not available in the OpenAlex metadata.
Application details are not available in the OpenAlex metadata.
For the disaster brought by the transmission line regelation, a new de-icing method is presented in this paper. It is supposed that the ice and transmission line are combined closely when there is no external loads, the composite structure of ice-transmission line is set up, then the coupled model of the composite structure-tower is set up. The equations of motion for the coupled system are derived. The composite structure can be applied to exciting loads, the frequency of which is close to the natural frequency of ice. The natural frequency of ice is far from that of the transmission line. Based on the resonance theory, the ice occurs to deform and crush, finally the ice divorces from the conductors under the function of the exciting load, but those transmission lines are still very well, the analytical solution can be obtained and the new de-icing method for transmission line based on the theory of resonance is got. It is suitable for the transmission line to de-ice through the computation of the concrete example.
Key concepts: Icing, Transmission line, Electric power transmission, Transmission tower, Tower, Natural frequency, Line (geometry), Transmission (telecommunications)