Affiliation:
1. Beijing University of Posts and Telecommunications
Abstract
Up to date, there has been no complete theoretical research and no
field experimental reports on the fiber fusion strength in high
altitude environments. Therefore, we have conducted an exploratory
study on the fiber fusion strength at high altitudes, and firstly
analyzed the crack growth characteristics of splicing points, and then
considered the influence of fusion variables and parameters on fusion
strength. A mathematical model to improve the fiber fusion strength in
high altitude environment is established by pondering over the joint
effect of temperature, humidity, oxygen content, atmospheric pressure,
high wind and gravity. Furthermore, we have implemented multiple field
fusion experiments in different altitude areas (53, 2980, 4000, 4200,
4300, 5020 and 5200m). The simulation results are basically consistent
with the theoretical analysis. Ultimately, the method proposed has
been directly used in the splicing projects at high altitudes,
achieving good results.
Funder
Science and Technology Project of State
Grid Corporation of China
National Key Research and Development
Program of China
Subject
Electronic, Optical and Magnetic Materials
Cited by
2 articles.
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