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Key Design and Dehumidification Effect Testing of a New Dry Air Protection System for Main Cables
This study introduces a new main cable protection system designed to mitigate the issue of cable corrosion by circulating dry air from within the main cable. The proposed protection system effectively addresses the limitations of traditional anticorrosion techniques. In this study, the primary focus was on the initial design of the key structure for the new main cable protection system. Moreover, a comprehensive dehumidification test was conducted on a full-scale model of the main cable to validate the radial strength of a new ventilation pipe and assess the impact of the proposed corrosion protection system. The dehumidification efficiency of the new main cable protection system was verified in comparison to the traditional main cable protection system. The results indicate that the newly designed ventilation pipe exhibited minimal radial deformation when subjected to cable clamp pressure. Therefore, the ventilation pipe meets the strength criteria for the internal utilization of the main cable. The ventilation pipe's opening hole scheme was configured at 6 × Ø4 to guarantee that the entire main cable is enveloped by the dry air supplied into it. Relative humidity at each measurement point along the main cable was observed to decrease to below 60%. Consequently, the proposed main cable dry air protection system can attain the anticipated anticorrosion outcome. Under the test conditions, the dry air utilization rate of the proposed system exceeded that of the traditional main cable anticorrosion system by approximately 15.4%. This suggests that the new system exhibits a higher dry air utilization rate and dehumidification efficiency than the traditional system. The study results validate the dehumidification effect of the new system and endorse its utilization in primary cable anticorrosion projects.
Key Design and Dehumidification Effect Testing of a New Dry Air Protection System for Main Cables
This study introduces a new main cable protection system designed to mitigate the issue of cable corrosion by circulating dry air from within the main cable. The proposed protection system effectively addresses the limitations of traditional anticorrosion techniques. In this study, the primary focus was on the initial design of the key structure for the new main cable protection system. Moreover, a comprehensive dehumidification test was conducted on a full-scale model of the main cable to validate the radial strength of a new ventilation pipe and assess the impact of the proposed corrosion protection system. The dehumidification efficiency of the new main cable protection system was verified in comparison to the traditional main cable protection system. The results indicate that the newly designed ventilation pipe exhibited minimal radial deformation when subjected to cable clamp pressure. Therefore, the ventilation pipe meets the strength criteria for the internal utilization of the main cable. The ventilation pipe's opening hole scheme was configured at 6 × Ø4 to guarantee that the entire main cable is enveloped by the dry air supplied into it. Relative humidity at each measurement point along the main cable was observed to decrease to below 60%. Consequently, the proposed main cable dry air protection system can attain the anticipated anticorrosion outcome. Under the test conditions, the dry air utilization rate of the proposed system exceeded that of the traditional main cable anticorrosion system by approximately 15.4%. This suggests that the new system exhibits a higher dry air utilization rate and dehumidification efficiency than the traditional system. The study results validate the dehumidification effect of the new system and endorse its utilization in primary cable anticorrosion projects.
Key Design and Dehumidification Effect Testing of a New Dry Air Protection System for Main Cables
J. Bridge Eng.
Chen, Wei (author) / Shen, Ruili (author) / Chen, Xinghua (author) / Qi, Dongchun (author)
2024-11-01
Article (Journal)
Electronic Resource
English
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