With rapid growth of power demand, transmission capacity is also in urgent need of upgrading. In some cases, converting existing AC transmission lines to DC lines can Improve the transmission capacity and reduce the c...With rapid growth of power demand, transmission capacity is also in urgent need of upgrading. In some cases, converting existing AC transmission lines to DC lines can Improve the transmission capacity and reduce the construction investment. In this paper, the upstream finite element method was expanded to calculate the total electric field of same tower multi-circuit DC lines converted from double-circuit AC lines, and the validity of the algorithm was confirmed by experiments. Taking a DC line converted from a typical same tower 500 kV double-circuit AC transmission line as an example, the surface electric field and the ground total electric field in different pole conductor arrangement schemes were calculated and analyzed, and the critical height of pole conductors for DC lines in residential and non-residential area were determined. Then, the corridor width of DC and AC lines at critical height in residential and non-residential areas before and after AC-DC line transformation were compared. The results indicate that for DC lines converted from common 500 kV double-circuit AC lines, the ground total electric field can meet the requirements of corresponding standard with appropriate pole conductor arrangement schemes.展开更多
目前尚无关于±800 k V与±500 k V同塔混压双回直流输电线路导线选型的可参考研究成果。为此,从电磁环境要求出发,采用电力线法、国际无线电干扰特别委员会(CISPR)和美国邦维尔电力局(BPA)经验公式法等国际公认且广泛使用的计...目前尚无关于±800 k V与±500 k V同塔混压双回直流输电线路导线选型的可参考研究成果。为此,从电磁环境要求出发,采用电力线法、国际无线电干扰特别委员会(CISPR)和美国邦维尔电力局(BPA)经验公式法等国际公认且广泛使用的计算方法,研究了4种导线布置方式下不同导线型号组合的电磁环境指标(包括导线表面电场强度、电晕损耗、地面合成电场强度和离子流密度分布、可听噪声和无线电干扰等)。研究结果表明可听噪声是不同海拔高度下导线选型的主要控制因素。经技术经济比较后选择±500 k V导线在下层的导线布置方式,基于该导线布置方式推荐海拔高度为0 m时±800 k V与±500 k V导线分别采用6×LGJ-630/45和4×LGJ-720/50型号,而海拔高度超过1 000 m时同极异侧布置方式下的±800 k V导线截面积需增大至6×720/50型号。展开更多
文摘With rapid growth of power demand, transmission capacity is also in urgent need of upgrading. In some cases, converting existing AC transmission lines to DC lines can Improve the transmission capacity and reduce the construction investment. In this paper, the upstream finite element method was expanded to calculate the total electric field of same tower multi-circuit DC lines converted from double-circuit AC lines, and the validity of the algorithm was confirmed by experiments. Taking a DC line converted from a typical same tower 500 kV double-circuit AC transmission line as an example, the surface electric field and the ground total electric field in different pole conductor arrangement schemes were calculated and analyzed, and the critical height of pole conductors for DC lines in residential and non-residential area were determined. Then, the corridor width of DC and AC lines at critical height in residential and non-residential areas before and after AC-DC line transformation were compared. The results indicate that for DC lines converted from common 500 kV double-circuit AC lines, the ground total electric field can meet the requirements of corresponding standard with appropriate pole conductor arrangement schemes.
文摘目前尚无关于±800 k V与±500 k V同塔混压双回直流输电线路导线选型的可参考研究成果。为此,从电磁环境要求出发,采用电力线法、国际无线电干扰特别委员会(CISPR)和美国邦维尔电力局(BPA)经验公式法等国际公认且广泛使用的计算方法,研究了4种导线布置方式下不同导线型号组合的电磁环境指标(包括导线表面电场强度、电晕损耗、地面合成电场强度和离子流密度分布、可听噪声和无线电干扰等)。研究结果表明可听噪声是不同海拔高度下导线选型的主要控制因素。经技术经济比较后选择±500 k V导线在下层的导线布置方式,基于该导线布置方式推荐海拔高度为0 m时±800 k V与±500 k V导线分别采用6×LGJ-630/45和4×LGJ-720/50型号,而海拔高度超过1 000 m时同极异侧布置方式下的±800 k V导线截面积需增大至6×720/50型号。