城市轨道交通配电变压器节能应用

Energy Saving Application of Distribution Transformers in Urban Rail Transit

  • 摘要:
    目的 为从经济性和可靠性两方面分析城市轨道交通配电变压器的降容运行特性,针对非晶合金配电变压器的空载损耗低于硅钢片配电变压器,但仍存在一定的应用局限性现状,开展非晶合金配电变压器在城市轨道交通领域的适用性综合分析。
    方法 以杭州地铁8号线一期工程配电变压器的实际运行数据为例,分析了不同容量配电变压器的电能损耗;基于经济性、温升、抗短路能力、抗干扰能力、噪声等方面,对非晶合金配电变压器和硅钢片配电变压器进行综合比选;同时,结合城市轨道交通的实际运行工况,研究了非晶合金配电变压器在城市轨道交通场景下的适用性。
    结果及结论 现阶段,城市轨道交通配电变压器的容量选型普遍偏大,合理降低配电变压器容量,可在降低一次性设备投资的同时,减少配电变压器自身的电能损耗。非晶合金配电变压器虽相比于硅钢片配电变压器存在一些不足之处,但结合城市轨道交通的实际运行工况,其性能可满足城市轨道交通日常运行需求,且能显著降低配电变压器的空载损耗,进而有效减少配电变压器整体的电能损耗。

     

    Abstract:
    Objective To analyze the operational characteristics of capacity reduction for urban rail transit distribution transformers from the perspectives of economy and reliability, a comprehensive applicability analysis of amorphous alloy distribution transformers in urban rail transit field is conducted, addressing the current status where amorphous alloy transformers exhibit lower no-load losses than silicon steel transformers, yet still encounter certain application limitations.
    Method Taking the actual operational data of distribution transformers in Hangzhou Metro Line 8 Phase 1 Project as an example, energy losses of distribution transformers with different capacities are analyzed. Based on economy, temperature rise, short-circuit resistance, interference resistance capability and noise, a comprehensive comparison is conducted between amorphous alloy and silicon steel distribution transformers. Meanwhile, the applicability of amorphous alloy distribution transformers in urban rail transit scenarios is studied in conjunction with actual operational conditions.
    Result & Conclusion  At this stage, the capacity selection for urban rail transit distribution transformers is generally oversized. Rationally reducing the distribution transformer capacity can lower initial equipment investment while decreasing the energy loss of the transformer itself. Although amorphous alloy distribution transformers have certain disadvantages compared to silicon steel ones, their performance can meet daily operational requirements of urban rail transit under actual working conditions, and can significantly reduce no-load losses, thereby effectively lowering the overall energy consumption of distribution transformers.

     

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