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Grounding Strategies for High Voltage Shore Connection of Large Passenger Vessels

机译:大型客船高压岸线连接的接地策略

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High voltage shore connection of large passenger vessels is an important way to improve energy efficiency and reduce local and global emissions, as well as noise. However, it is shown that the vessels' steel hulls will act as sacrificial anodes for the grounding systems in the ports, hence accelerated corrosion of the hulls may occur. The required protective earth (PE) conductor between the hull and the grounding system on shore could also introduce touch voltages above 30 V in case of a fault, posing a safety hazard. Based on field measurements and analyses, a grounding strategy with galvanic separation in the low resistance PE conductor is recommended. It is further advised to use active and passive cathodic protection, and to reduce the set point of the impressed current cathodic protection (ICCP) system to approximately 100 mV versus zinc. These measures will reduce the corrosion rate of the vessels' hulls during power delivery from shore, while avoiding transferred touch voltages.
机译:大型客船的高压岸线连接是提高能源效率,减少本地和全球排放以及噪音的重要途径。然而,已表明,船的钢制船体将充当端口接地系统的牺牲阳极,因此可能会加速船体的腐蚀。在发生故障的情况下,船体与岸上接地系统之间所需的保护性接地(PE)导体也可能会引入30 V以上的接触电压,从而构成安全隐患。根据现场测量和分析,建议在低电阻PE导体中采用电隔离的接地策略。进一步建议使用主动和被动阴极保护,并将外加电流阴极保护(ICCP)系统的设定值降低至相对于锌大约100 mV。这些措施将降低岸电供电期间船体的腐蚀速率,同时避免转移接触电压。

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