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近海风电场外送三芯海底电力电缆载流量计算

Ampacity Calculation of Three-Core Submarine Export Cables for Offshore Wind Farms

  • 摘要:
    目的 准确计算海上风电场外送电缆载流量对海上风电场经济可靠运行具有重要意义,但现行IEC 60287标准未包含J型管敷设方式的载流量计算方法,且电缆浅沟敷设方式计算误差较大。
    方法 文章分析海底电缆在J型管段敷设方式下的传热机理,建立对应的等值热路模型,提出J型管敷设方式下考虑太阳辐照、外部空气流动等条件的载流量解析计算方法;分析未填充电缆沟段电缆的散热特性和载流量影响因素,指出环境温度变化时电缆浅沟段计算结果不准确的原因,提出该标准中未填充电缆沟内空气温升的修正计算方法。
    结果 将文章提出的计算方法与有限元法计算结果对比表明:实际工况下,文章提出的J型管内电缆载流量解析算法与有限元法计算结果误差0.8%;采用沟内温升修正计算方法后,环境温度在10~40 ℃范围内,载流量解析计算与有限元法计算结果间的误差由4.8%降至0.8%。
    结论 文章的研究内容弥补了IEC 60287标准覆盖范围不足的缺陷,提高了解析计算精度,为海上风电场外送海缆载流量计算提供了全面、精确的计算方法。

     

    Abstract:
    Objective Accurate calculation of the ampacity for export cables from offshore wind farms is crucial for their economical and reliable operation. However, the existing IEC 60287 standard lacks a calculation method for the J-tube laying configuration, and the calculation error for the shallow cable trough laying configuration is significant.
    Method The heat transfer mechanism of submarine cables in the J-tube section was analyzed, and the corresponding equivalent thermal circuit model was established. An analytical ampacity calculation method for cables in the J-tube was proposed, considering solar radiation, external air flow and other conditions. The heat dissipation characteristics and ampacity influencing factors of cables in the unfilled cable trough were analyzed. The causes of inaccurate calculation results for the shallow cable trough under varying ambient temperatures were identified, and a modified calculation method for air temperature rise in the unfilled cable trough specified in the standard was put forward.
    Result The proposed calculation methods are compared with the finite element analysis (FEA) results. The results show that under actual operating conditions, the error between the analytical algorithm and FEA results for the ampacity of cables in the J-tube is 0.8%. After using the modified calculation method for air temperature rise in the trough, the error between analytical calculation and FEA results decreases from 4.8% to 0.8% within the ambient temperature range of 10 ℃ to 40 ℃.
    Conclusion This study remedies the insufficient coverage of the IEC 60287 standard and improves the accuracy of analytical calculations. It provides a comprehensive and precise calculation method for the ampacity calculation of export submarine cables for offshore wind farms.

     

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