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考虑复杂土壤结构模型的高压直流接地极与天然气管道耦合效应
Coupling Effect Between HVDC Grounding Electrode and Natural Gas Pipelines Considering Complex Soil Structure Model
| 作者 | Xiaobo Meng · Bo Zhang · Fangyuan Cao · Yongli Liao |
| 期刊 | IEEE Transactions on Power Delivery |
| 出版日期 | 2025年5月 |
| 技术分类 | 电动汽车驱动 |
| 技术标签 | 多物理场耦合 |
| 相关度评分 | ★★★★ 4.0 / 5.0 |
| 关键词 | 高压直流输电 双碳目标 复杂土壤结构 直流电流分布 管道保护措施 |
语言:
中文摘要
高压直流输电是新型电力系统中新能源输送的骨干技术,也是实现“双碳”目标的关键手段。当HVDC系统以大地为回路时,接地极注入的直流电流可能危及邻近天然气管道的阴极保护系统,威胁人身安全。目前尚缺乏考虑复杂土壤结构下HVDC接地极与管道耦合效应的深入研究。本文提出了一种计及土壤电阻率垂直分区与水平分层的复杂土壤结构中直流电流分布计算方法,并基于矩量法建立了复杂地质条件下长距离管道受地电流影响的仿真模型。仿真结果与实测数据高度吻合,验证了模型的有效性。利用该模型深入研究了管道防护措施对抑制直流电流影响的效果,为管道保护设计提供了理论依据。
English Abstract
The HVDC project is the backbone of new energy power transmission in the new power system and the key technology to realize the “double carbon” goal. When the HVDC system uses the earth as the loop path, DC current from the grounding electrode will be injected into the earth, possibly damaging their protective devices, thereby posing a risk to personal safety. The research work on the coupling effect between the HVDC grounding electrode and natural gas pipelines considering complex soil structure model has not been effectively carried out. In the paper, A calculation method of DC current distribution in the complex soil structure model considering the vertical partition and horizontal stratification of soil resistivity is proposed. A simulation model of the influence of the DC ground current on long-distance pipelines under complex geological conditions is established based on the method of moments. The calculation results of the simulation model, which incorporates a complex soil structure, show excellent agreement with the actual test results. The effect of pipeline measures to reduce the impact of the DC current was studied by the simulation model in depth. This provides a theoretical basis for the design and implementation of the protection measures of the pipeline.
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SunView 深度解读
该HVDC接地极与管道耦合效应研究对阳光电源大型储能系统和光伏电站接地设计具有重要参考价值。PowerTitan等MW级储能系统在直流侧故障或接地电流泄漏时,其复杂土壤结构下的电流分布特性与HVDC接地极类似,该文提出的垂直分区与水平分层土壤模型可优化储能系统接地网设计,避免对周边金属管道、电缆屏蔽层等设施的电化学腐蚀。基于矩量法的仿真模型可应用于iSolarCloud平台,实现大型光伏电站接地系统的智能诊断与安全评估,特别是在复杂地质条件下的1500V高压系统,有效提升系统安全性和运维可靠性。